Layered Double Hydroxides: A Toolbox for Chemistry and Biology
暂无分享,去创建一个
E. Martinelli | G. Prestopino | B. Pignataro | G. Arrabito | A. Bonasera | A. Orsini | P. Medaglia | A. Mattoccia | Giuseppe Prestopino | Alessio Mattoccia | Pier Medaglia | Aurelio Bonasera
[1] J. Trommer,et al. BLENDS , 2021, English Words from Latin and Greek Elements.
[2] O. Crosby. transesterification , 2020, Catalysis from A to Z.
[3] F. G. Cirujano,et al. Engineered MOFs and Enzymes for the Synthesis of Active Pharmaceutical Ingredients , 2019, ChemCatChem.
[4] D. Hansora,et al. Layered double hydroxide based bionanocomposites , 2019, Applied Clay Science.
[5] K. Mansouri,et al. Antiproliferative effects of new magnetic pH-responsive drug delivery system composed of Fe3O4, CaAl layered double hydroxide and levodopa on melanoma cancer cells. , 2019, Materials science & engineering. C, Materials for biological applications.
[6] R. Karcz,et al. Effect of grinding on the physico-chemical properties of Mg-Al hydrotalcite and its performance as a catalyst for Baeyer-Villiger oxidation of cyclohexanone , 2019, Catalysis Today.
[7] A. Bhattacharjee,et al. Intercalation of shRNA-plasmid in Mg–Al layered double hydroxide nanoparticles and its cellular internalization for possible treatment of neurodegenerative diseases , 2019, Journal of Drug Delivery Science and Technology.
[8] H. Abdolmohammad-Zadeh,et al. A turn-on/off fluorescent sensor based on nano-structured Mg-Al layered double hydroxide intercalated with salicylic acid for monitoring of ferric ion in human serum samples. , 2019, Analytica chimica acta.
[9] V. Constantino,et al. Layered Double Hydroxides Are Promising Nanomaterials for Tissue Bioengineering Application , 2019, Advanced biosystems.
[10] Jun Lu,et al. Fluorescence enhancement strategy for evaluation of the minor groove binder DAPI to complementary ssDNA sequence including telomere mimics in (ssDNA@DAPI/LDH) ultrathin films , 2019, Dyes and Pigments.
[11] Aizheng Chen,et al. Engineered pH-responsive hydrazone-carboxylate complexes-encapsulated 2D matrices for cathepsin-mediated apoptosis in cancer. , 2019, Journal of biomedical materials research. Part A.
[12] Y. Yamini,et al. Synthesis and characterization of a novel biocompatible pseudo-hexagonal NaCa-layered double metal hydroxides for smart pH-responsive drug release of dacarbazine and enhanced anticancer activity in malignant melanoma. , 2019, Materials science & engineering. C, Materials for biological applications.
[13] A. Bhattacharjee,et al. shRNA intercalation in CaAl-LDH nanoparticle synthesized at two different pH conditions and its comparative evaluation , 2019, Applied Clay Science.
[14] J. Yao,et al. A fluorometric displacement assay for adenosine triphosphate using layered cobalt(II) double hydroxide nanosheets , 2019, Microchimica Acta.
[15] E. Breynaert,et al. Luminescent Layered Double Hydroxides Intercalated with an Anionic Photosensitizer via the Memory Effect , 2019, Crystals.
[16] Chris Bakal,et al. Nanoneedle-Mediated Stimulation of Cell Mechanotransduction Machinery , 2019, ACS nano.
[17] Shiguo Sun,et al. In Situ Formation of Homogeneous Tellurium Nanodots in Paclitaxel-Loaded MgAl Layered Double Hydroxide Gated Mesoporous Silica Nanoparticles for Synergistic Chemo/PDT/PTT Trimode Combinatorial Therapy. , 2019, Inorganic chemistry.
[18] A. Zamanian,et al. Synthesis and characterization of ZnAl-NO3(-CO3) layered double hydroxide: A novel structure for intercalation and release of simvastatin , 2019, Applied Surface Science.
[19] Zhengyun Wang,et al. Hierarchical CNTs@CuMn Layered Double Hydroxide Nanohybrid with Enhanced Electrochemical Performance in H2S Detection from Live Cells. , 2019, Analytical chemistry.
[20] V. Constantino,et al. Sonic hedgehog drives layered double hydroxides-induced acute inflammatory landscape. , 2019, Colloids and surfaces. B, Biointerfaces.
[21] M. Hejazi,et al. Layered double hydroxide nanoparticles as an appealing nanoparticle in gene/plasmid and drug delivery system in C2C12 myoblast cells , 2019, Artificial cells, nanomedicine, and biotechnology.
[22] Liang Yan,et al. Photoluminescence enhancement of silver nanoclusters assembled on the layered double hydroxides and their application to guanine detection. , 2019, Talanta.
[23] Chia-Ying Chiang,et al. Multifunctional ternary hydrotalcite-like nanosheet arrays as an efficient co-catalyst for vastly improved water splitting performance on bismuth vanadate photoanode , 2019, Journal of Catalysis.
[24] A. Bhattacharjee,et al. Determination of half maximal inhibitory concentration of CaAl layered double hydroxide on cancer cells and its role in the apoptotic pathway , 2019, Applied Clay Science.
[25] Rui Wang,et al. Advances in Therapeutic Implications of Inorganic Drug Delivery Nano-Platforms for Cancer , 2019, International journal of molecular sciences.
[26] S. Mallakpour,et al. Fabrication and characterization of pH-sensitive bio-nanocomposite beads havening folic acid intercalated LDH and chitosan: Drug release and mechanism evaluation. , 2019, International journal of biological macromolecules.
[27] W. Gu,et al. Enhancing PD-1 Gene Silence in T Lymphocytes by Comparing the Delivery Performance of Two Inorganic Nanoparticle Platforms , 2019, Nanomaterials.
[28] J. Choy,et al. Alendronate-Anionic Clay Nanohybrid for Enhanced Osteogenic Proliferation and Differentiation , 2019, Journal of Korean medical science.
[29] Zhengyun Wang,et al. Self-stacking of exfoliated charged nanosheets of LDHs and graphene as biosensor with real-time tracking of dopamine from live cells. , 2019, Analytica chimica acta.
[30] Mingfei Shao,et al. A bifunctional nonenzymatic flexible glucose microsensor based on CoFe-Layered double hydroxide , 2019, Nanoscale advances.
[31] M. Ajmal,et al. Superlattice stacking by hybridizing layered double hydroxide nanosheets with layers of reduced graphene oxide for electrochemical simultaneous determination of dopamine, uric acid and ascorbic acid , 2019, Microchimica Acta.
[32] Xiaoqing Li,et al. Enhanced photoluminescence emission and surface fluorescence response of morphology controllable nano porous anodize alumina Zn-Al LDH film , 2019, Journal of Alloys and Compounds.
[33] Zhiqin Yuan,et al. Sensitive and Selective Carmine Acid Detection Based on Chemiluminescence Quenching of Layer Doubled Hydroxide–Luminol–H2O2 System , 2018, ACS omega.
[34] Mostafa R. Abukhadra,et al. Removal of safranin dye from water using polypyrrole nanofiber/Zn-Fe layered double hydroxide nanocomposite (Ppy NF/Zn-Fe LDH) of enhanced adsorption and photocatalytic properties. , 2018, The Science of the total environment.
[35] R. Hosseinzadeh,et al. Photodynamic treatment with anionic nanoclays containing curcumin on human triple‐negative breast cancer cells: Cellular and biochemical studies , 2018, Journal of cellular biochemistry.
[36] Min Wei,et al. Layered Double Hydroxide‐Based Catalysts: Recent Advances in Preparation, Structure, and Applications , 2018, Advanced Functional Materials.
[37] S. J. Fatemi,et al. Synthesis of α- and β-CoNi binary hydroxides nanostructures and luminol chemiluminescence study for H2O2 detection , 2018, Journal of Photochemistry and Photobiology A: Chemistry.
[38] L. Soussan,et al. Dual role of layered double hydroxide nanocomposites on antibacterial activity and degradation of tetracycline and oxytetracyline. , 2018, Chemosphere.
[39] Stephen Mann,et al. Enzyme-powered motility in buoyant organoclay/DNA protocells , 2018, Nature Chemistry.
[40] R. Gómez,et al. Photocatalytic CO 2 conversion by MgAl layered double hydroxides: Effect of Mg 2+ precursor and microwave irradiation time , 2018, Journal of Photochemistry and Photobiology A: Chemistry.
[41] Xiaolin Zhu,et al. Plasmon-Enhanced Layered Double Hydroxide Composite BiVO4 Photoanodes: Layering-Dependent Modulation of the Water-Oxidation Reaction , 2018, ACS Applied Energy Materials.
[42] Zhongmin Liu,et al. Etoposide loaded layered double hydroxide nanoparticles reversing chemoresistance and eradicating human glioma stem cells in vitro and in vivo. , 2018, Nanoscale.
[43] S. Agnello,et al. Inkjet printing Ag nanoparticles for SERS hot spots , 2018 .
[44] F. Leroux,et al. Tailoring Hybrid Layered Double Hydroxides for the Development of Innovative Applications , 2018 .
[45] Chenghua Sun,et al. Confinement of carbon dots localizing to the ultrathin layered double hydroxides toward simultaneous triple-mode bioimaging and photothermal therapy. , 2018, Talanta.
[46] F. Bruna,et al. Interactions between Biological Cells and Layered Double Hydroxides: Towards Functional Materials. , 2018, Chemical record.
[47] Y. Lvov,et al. Halloysite clay nanotubes for life sciences applications: From drug encapsulation to bioscaffold. , 2018, Advances in colloid and interface science.
[48] Jin-Ho Choy,et al. 2D Nanostructured Metal Hydroxides with Gene Delivery and Theranostic Functions; A Comprehensive Review. , 2018, Chemical record.
[49] Hongwei Zhang,et al. Optimized photoreduction of CO2 exclusively into methanol utilizing liberated reaction space in layered double hydroxides comprising zinc, copper, and gallium , 2018, Applied Surface Science.
[50] Donghui Wang,et al. Layered double hydroxide/poly-dopamine composite coating with surface heparinization on Mg alloys: improved anticorrosion, endothelialization and hemocompatibility. , 2018, Biomaterials science.
[51] Gino Giusi,et al. Amperometric Biosensor and Front-End Electronics for Remote Glucose Monitoring by Crosslinked PEDOT-Glucose Oxidase , 2018, IEEE Sensors Journal.
[52] Bozhi Tian,et al. Texturing Silicon Nanowires for Highly Localized Optical Modulation of Cellular Dynamics. , 2018, Nano letters.
[53] G. Cavallaro,et al. Chemical modification of halloysite nanotubes for controlled loading and release. , 2018, Journal of materials chemistry. B.
[54] Yasuaki Tokudome,et al. A nanoLDH catalyst with high CO2 adsorption capability for photo-catalytic reduction , 2018 .
[55] W. Gu,et al. Optimization of Formulations Consisting of Layered Double Hydroxide Nanoparticles and Small Interfering RNA for Efficient Knockdown of the Target Gene , 2018, ACS omega.
[56] C. Falconi,et al. High-Density ZnO Nanowires as a Reversible Myogenic-Differentiation Switch. , 2018, ACS applied materials & interfaces.
[57] Michael K Danquah,et al. Review on nanoparticles and nanostructured materials: history, sources, toxicity and regulations , 2018, Beilstein journal of nanotechnology.
[58] Yuan Zhao,et al. Amine-functionalized MgAl LDH nanosheets as efficient solid base catalysts for Knoevenagel condensation , 2018 .
[59] Vito Errico,et al. Nanotransducers on printed circuit boards by rational design of high-density, long, thin and untapered ZnO nanowires , 2018 .
[60] Liguo Gao,et al. A novel La3+–Zn2+–Al3+–MoO42− layered double hydroxides photocatalyst for the decomposition of dibenzothiophene in diesel oil , 2018 .
[61] R. Karcz,et al. Effect of MgAl hydrotalcite crystallinity on catalytic Baeyer-Villiger oxidation of cyclohexanone with H2O2/acetonitrile , 2018 .
[62] B. Dash,et al. Layered double hydroxides: A brief review from fundamentals to application as evolving biomaterials , 2018 .
[63] Mona Elfiky,et al. Fabrication of Electrochemical Sensor Based on Layered Double Hydroxide/Polypyrrole/Carbon Paste for Determination of an Alpha‐adrenergic Blocking Agent Terazosin , 2018 .
[64] Yu‐Fei Song,et al. Layered double hydroxide anchored ionic liquids as amphiphilic heterogeneous catalysts for the Knoevenagel condensation reaction. , 2018, Dalton transactions.
[65] N. Kwon,et al. Intercalative hybridization of layered double hydroxide nanocrystals with mesoporous g-C3N4 for enhancing visible light-induced H2 production efficiency. , 2018, Dalton transactions.
[66] M. Cannas,et al. β-C3N4 Nanocrystals: Carbon Dots with Extraordinary Morphological, Structural, and Optical Homogeneity , 2018 .
[67] Huijun Zhao,et al. NiFe-Layered Double Hydroxide Nanosheet Arrays Supported on Carbon Cloth for Highly Sensitive Detection of Nitrite. , 2018, ACS applied materials & interfaces.
[68] V. Constantino,et al. Mg–Al and Zn–Al Layered Double Hydroxides Promote Dynamic Expression of Marker Genes in Osteogenic Differentiation by Modulating Mitogen‐Activated Protein Kinases , 2018, Advanced healthcare materials.
[69] Panpan Li,et al. Two-Dimensional Layered Double Hydroxides for Reactions of Methanation and Methane Reforming in C1 Chemistry , 2018, Materials.
[70] Satishchandra Ogale,et al. g-C3N4/NiAl-LDH 2D/2D Hybrid Heterojunction for High-Performance Photocatalytic Reduction of CO2 into Renewable Fuels. , 2018, ACS applied materials & interfaces.
[71] Hyun-Yong Lee,et al. Layered Double Hydroxide and Polypeptide Thermogel Nanocomposite System for Chondrogenic Differentiation of Stem Cells. , 2017, ACS applied materials & interfaces.
[72] G. Cârją,et al. A family of solar light responsive photocatalysts obtained using Zn2+ Me3+ (Me = Al/Ga) LDHs doped with Ga2O3 and In2O3 and their derived mixed oxides: a case study of phenol/4-nitrophenol decomposition , 2017 .
[73] J. Lauwaert,et al. Recent advances on the utilization of layered double hydroxides (LDHs) and related heterogeneous catalysts in a lignocellulosic-feedstock biorefinery scheme , 2017 .
[74] Lirong Zheng,et al. Layered‐Double‐Hydroxide Nanosheets as Efficient Visible‐Light‐Driven Photocatalysts for Dinitrogen Fixation , 2017, Advanced materials.
[75] Qun Chen,et al. Bifunctional NiGa Layered Double Hydroxide for the Aerobic Oxidation/ Condensation Tandem Reaction between Aromatic Alcohols and Active Methylene Compounds , 2017 .
[76] D. Lončarević,et al. Photo-induced properties of photocatalysts: A study on the modified structural, optical and textural properties of TiO2–ZnAl layered double hydroxide based materials , 2017 .
[77] J. Chakraborty,et al. One-pot synthesis of CaAl-layered double hydroxide–methotrexate nanohybrid for anticancer application , 2017, Bulletin of Materials Science.
[78] R. Karcz,et al. Baeyer-Villiger oxidation of cyclohexanone with H2O2/acetonitrile over hydrotalcite-like catalysts: Effect of Mg/Al ratio on the ε-caprolactone yield , 2017 .
[79] Zhi Ping Xu,et al. Manganese‐Based Layered Double Hydroxide Nanoparticles as a T1‐MRI Contrast Agent with Ultrasensitive pH Response and High Relaxivity , 2017, Advanced materials.
[80] L. Soussan,et al. Adsorption of nisin into layered double hydroxide nanohybrids and in-vitro controlled release. , 2017, Materials science & engineering. C, Materials for biological applications.
[81] W. Gu,et al. Mannose-conjugated layered double hydroxide nanocomposite for targeted siRNA delivery to enhance cancer therapy. , 2017, Nanomedicine : nanotechnology, biology, and medicine.
[82] I. Pálinkó,et al. Design of nucleic acid-layered double hydroxide nanohybrids , 2017, Colloid and Polymer Science.
[83] I. Pálinkó,et al. Synthesis, characterization and photocatalytic activity of crystalline Mn(II)Cr(III)-layered double hydroxide , 2017 .
[84] D. Cao,et al. Delaminated layered double hydroxide delivers DNA molecules as sandwich nanostructure into cells via a non-endocytic pathway. , 2017, Science bulletin.
[85] K. Oakes,et al. Adsorption of Oligo-DNA on Magnesium Aluminum-Layered Double-Hydroxide Nanoparticle Surfaces: Mechanistic Implication in Gene Delivery. , 2017, Langmuir : the ACS journal of surfaces and colloids.
[86] S. Kondawar,et al. Solvent-Free Glycerol Transesterification with Propylene Carbonate to Glycerol Carbonate over a Solid Base Catalyst , 2017 .
[87] Donghui Wang,et al. Enhanced Corrosion Resistance and Biocompatibility of Magnesium Alloy by Mg-Al-Layered Double Hydroxide. , 2016, ACS applied materials & interfaces.
[88] M. Leone,et al. Monitoring few molecular binding events in scalable confined aqueous compartments by raster image correlation spectroscopy (CADRICS). , 2016, Lab on a chip.
[89] Xia Wu,et al. Visible-light-driven photodegradation of Methyl Orange using Cu2O/ZnAl calcined layered double hydroxides as photocatalysts , 2016 .
[90] Patrick Da Costa,et al. La-promoted Ni-hydrotalcite-derived catalysts for dry reforming of methane at low temperatures , 2016 .
[91] Tsunehiro Tanaka,et al. Preparation of transition metal-containing layered double hydroxides and application to the photocatalytic conversion of CO2 in water , 2016 .
[92] Lianjun Liu,et al. CO2 photoreduction with water vapor by Ti-embedded MgAl layered double hydroxides , 2016 .
[93] V. Constantino,et al. Accessing the biocompatibility of layered double hydroxide by intramuscular implantation: histological and microcirculation evaluation , 2016, Scientific Reports.
[94] L. Lartundo-Rojas,et al. Photodegradation of phenol using reconstructed Ce doped Zn/Al layered double hydroxides as photocatalysts , 2016 .
[95] Peifang Wang,et al. Enhanced photocatalytic properties of the 3D flower-like Mg-Al layered double hydroxides decorated with Ag2CO3 under visible light illumination , 2016 .
[96] Kulamani Parida,et al. A review on the recent progress, challenges and perspective of layered double hydroxides as promising photocatalysts , 2016 .
[97] Tsunehiro Tanaka,et al. Photocatalytic conversion of CO2 in water using fluorinated layered double hydroxides as photocatalysts , 2016 .
[98] M. Richetta,et al. Surface spectroscopy and structural analysis of nanostructured multifunctional (Zn, Al) layered double hydroxides , 2016 .
[99] Y. Ghayeb,et al. Photodegradation of organic dye by ZnCrLa-layered double hydroxide as visible-light photocatalysts , 2016, Journal of Materials Science: Materials in Electronics.
[100] Junya Wang,et al. Layered Double Hydroxide Nanotransporter for Molecule Delivery to Intact Plant Cells , 2016, Scientific Reports.
[101] C. Yun,et al. Biodegradable Inorganic Nanovector: Passive versus Active Tumor Targeting in siRNA Transportation. , 2016, Angewandte Chemie.
[102] K. Oakes,et al. Chemisorption Mechanism of DNA on Mg/Fe Layered Double Hydroxide Nanoparticles: Insights into Engineering Effective SiRNA Delivery Systems. , 2016, Langmuir : the ACS journal of surfaces and colloids.
[103] Mingfei Shao,et al. Terbium doped ZnCr-layered double hydroxides with largely enhanced visible light photocatalytic performance , 2016 .
[104] Maor F. Baruch,et al. Light-Driven Heterogeneous Reduction of Carbon Dioxide: Photocatalysts and Photoelectrodes. , 2015, Chemical reviews.
[105] Yihe Zhang,et al. Layered Double Hydroxide Assemblies with Controllable Drug Loading Capacity and Release Behavior as well as Stabilized Layer-by-Layer Polymer Multilayers. , 2015, ACS applied materials & interfaces.
[106] C. Falconi,et al. Chromium inhibition and size-selected Au nanocluster catalysis for the solution growth of low-density ZnO nanowires , 2015, Scientific Reports.
[107] Dianqing Li,et al. Supported catalysts based on layered double hydroxides for catalytic oxidation and hydrogenation: general functionality and promising application prospects. , 2015, Chemical Society reviews.
[108] B. Martin,et al. One-step direct synthesis of layered double hydroxide single-layer nanosheets. , 2015, Nanoscale.
[109] Li Li,et al. Pre-coating layered double hydroxide nanoparticles with albumin to improve colloidal stability and cellular uptake. , 2015, Journal of materials chemistry. B.
[110] C. Moro,et al. One pot domino reaction accessing γ-nitroesters: synthesis of GABA derivatives , 2015 .
[111] Fei Meng,et al. Hydrothermal continuous flow synthesis and exfoliation of NiCo layered double hydroxide nanosheets for enhanced oxygen evolution catalysis. , 2015, Nano letters.
[112] Feng Li,et al. Non-enzymatic glucose sensor based on Au nanoparticles decorated ternary Ni-Al layered double hydroxide/single-walled carbon nanotubes/graphene nanocomposite , 2015 .
[113] Mohammad Khaja Nazeeruddin,et al. Water photolysis at 12.3% efficiency via perovskite photovoltaics and Earth-abundant catalysts , 2014, Science.
[114] David G. Evans,et al. Catalytic applications of layered double hydroxides: recent advances and perspectives. , 2014, Chemical Society reviews.
[115] M. Hussein,et al. Layered double hydroxide nanocomposite for drug delivery systems; bio-distribution, toxicity and drug activity enhancement , 2014, Chemistry Central Journal.
[116] Xiaobo Chen,et al. Titanium dioxide-based nanomaterials for photocatalytic fuel generations. , 2014, Chemical reviews.
[117] Yong Zhou,et al. Photocatalytic Conversion of CO2 into Renewable Hydrocarbon Fuels: State‐of‐the‐Art Accomplishment, Challenges, and Prospects , 2014, Advanced materials.
[118] Zhi Ping Xu,et al. Co-delivery of siRNAs and anti-cancer drugs using layered double hydroxide nanoparticles. , 2014, Biomaterials.
[119] M. Hussein,et al. Antituberculosis nanodelivery system with controlled-release properties based on para-amino salicylate–zinc aluminum-layered double-hydroxide nanocomposites , 2013, Drug design, development and therapy.
[120] Hannes G. Leisch,et al. Correction to Baeyer–Villiger Monooxygenases: More Than Just Green Chemistry , 2013 .
[121] Bruno Pignataro,et al. Luminometric sub-nanoliter droplet-to-droplet array (LUMDA) and its application to drug screening by phase I metabolism enzymes. , 2013, Lab on a chip.
[122] Chao Lu,et al. Chemiluminescence flow biosensor for glucose using Mg-Al carbonate layered double hydroxides as catalysts and buffer solutions. , 2012, Biosensors & bioelectronics.
[123] R. Manzo,et al. Modeling drug release from a layered double hydroxide-ibuprofen complex , 2012 .
[124] C. Grey,et al. Identification of Cation Clustering in Mg–Al Layered Double Hydroxides Using Multinuclear Solid State Nuclear Magnetic Resonance Spectroscopy , 2012 .
[125] R. Pandey,et al. Role of mixed metal oxides in catalysis science—versatile applications in organic synthesis , 2012 .
[126] Kwang S. Kim,et al. Zero-dimensional, one-dimensional, two-dimensional and three-dimensional nanostructured materials for advanced electrochemical energy devices , 2012 .
[127] Dermot O'Hare,et al. Recent advances in the synthesis and application of layered double hydroxide (LDH) nanosheets. , 2012, Chemical reviews.
[128] Bruno Pignataro,et al. Carbon nanotubes and organic solar cells , 2012 .
[129] Jiaqi Huang,et al. Hierarchical Nanocomposites Derived from Nanocarbons and Layered Double Hydroxides ‐ Properties, Synthesis, and Applications , 2012 .
[130] Z. Xu,et al. Catalytic applications of layered double hydroxides and derivatives , 2011 .
[131] J. Choy,et al. Layered double hydroxide nanoparticles as target-specific delivery carriers: uptake mechanism and toxicity. , 2011, Nanomedicine.
[132] P. Kamath,et al. Structure and Composition of the Layered Double Hydroxides of Mg and Fe: Implications for Anion‐Exchange Reactions , 2011 .
[133] Michaël Deschamps,et al. Identification and Quantification of Defects in the Cation Ordering in Mg/Al Layered Double Hydroxides , 2011 .
[134] Gurnos Jones. The Knoevenagel Condensation , 2011 .
[135] Ernst D. Bergmann,et al. The Michael Reaction , 2011 .
[136] M. Hirama,et al. Total synthesis of cortistatins A and J. , 2011, The Journal of organic chemistry.
[137] Y. B. Choy,et al. Inorganic-polymer nanohybrid carrier for delivery of a poorly-soluble drug, ursodeoxycholic acid. , 2010, International journal of pharmaceutics.
[138] H. Zhu,et al. New TiO2/MgAl-LDH nanocomposites for the photocatalytic degradation of dyes. , 2010, Journal of nanoscience and nanotechnology.
[139] P. Bartlett,et al. Efficient delivery of siRNA to cortical neurons using layered double hydroxide nanoparticles. , 2010, Biomaterials.
[140] Richard G. Compton,et al. Electrochemical Non-enzymatic Glucose Sensors: A Perspective and an Evaluation , 2010, International Journal of Electrochemical Science.
[141] X. Duan,et al. Layered double hydroxide films: synthesis, properties and applications. , 2010, Chemical communications.
[142] Min Wei,et al. Antioxidant drugs intercalated into layered double hydroxide: Structure and in vitro release , 2010 .
[143] Jian Jiang,et al. Ni/Al layered double hydroxide nanosheet film grown directly on Ti substrate and its application for a nonenzymatic glucose sensor , 2010 .
[144] H. García,et al. Layered double hydroxides as highly efficient photocatalysts for visible light oxygen generation from water. , 2009, Journal of the American Chemical Society.
[145] Suhas,et al. Application of low-cost adsorbents for dye removal--a review. , 2009, Journal of environmental management.
[146] Dennis G Hall,et al. Natural product synthesis using multicomponent reaction strategies. , 2009, Chemical reviews.
[147] P. Kamath,et al. Anion-Exchange Reactions of Layered Double Hydroxides: Interplay between Coulombic and H-Bonding Interactions , 2009 .
[148] Sailong Xu,et al. One-step hydrothermal crystallization of a layered double hydroxide/alumina bilayer film on aluminum and its corrosion resistance properties. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[149] E. Gaigneaux,et al. Exploring, tuning, and exploiting the basicity of hydrotalcites for applications in heterogeneous catalysis. , 2009, Chemistry.
[150] Kwang S. Kim,et al. Large-scale pattern growth of graphene films for stretchable transparent electrodes , 2009, Nature.
[151] Jinping Liu,et al. A novel glucose sensor based on monodispersed Ni/Al layered double hydroxide and chitosan. , 2008, Biosensors & bioelectronics.
[152] R. Grieken,et al. SnIV-containing layered double hydroxides as precursors for nano-sized ZnO/SnO2 photocatalysts , 2008 .
[153] Ulka Sharma,et al. Synthesis and Characterization of Mg-Al-CO3 Layered Double Hydroxide for CO2 Adsorption , 2008 .
[154] Xin Deng,et al. Activation of Mg-Al hydrotalcite catalysts for transesterification of rape oil , 2008 .
[155] W. Winiwarter,et al. How a century of ammonia synthesis changed the world , 2008 .
[156] G. Tendeloo,et al. Zn–Al layered double hydroxides: Synthesis, characterization and photocatalytic application , 2008 .
[157] Sailong Xu,et al. In situ growth of layered double hydroxide films on anodic aluminum oxide/aluminum and its catalytic feature in aldol condensation of acetone , 2008 .
[158] C. Grey,et al. Mg/Al Ordering in Layered Double Hydroxides Revealed by Multinuclear NMR Spectroscopy , 2008, Science.
[159] A. Dhakshinamoorthy,et al. l-Proline anchored hydrotalcite clays: An efficient catalyst for asymmetric Michael addition , 2008 .
[160] Jinping Liu,et al. Layered Double Hydroxide Nano‐ and Microstructures Grown Directly on Metal Substrates and Their Calcined Products for Application as Li‐Ion Battery Electrodes , 2008 .
[161] Zoran S. Petrović,et al. Polyurethanes from Vegetable Oils , 2008 .
[162] Joseph Wang. Electrochemical glucose biosensors. , 2008, Chemical reviews.
[163] K. Leung,et al. Vertical Growth of Two-Dimensional Zinc Oxide Nanostructures on ITO-Coated Glass: Effects of Deposition Temperature and Deposition Time , 2008 .
[164] M. Appl. Chemical Reactions and Uses of Ammonia , 2007 .
[165] Dilek Kazan,et al. Biodiesel production from waste oils by using lipase immobilized on hydrotalcite and zeolites , 2007 .
[166] David G. Evans,et al. Highly crystalline activated layered double hydroxides as solid acid‐base catalysts , 2007 .
[167] De Chen,et al. Effect of supports and Ni crystal size on carbon formation and sintering during steam methane reforming , 2006 .
[168] J. Choy,et al. Cellular uptake mechanism of an inorganic nanovehicle and its drug conjugates: Enhanced efficacy due to clathrin-mediated endocytosis. , 2006, Bioconjugate chemistry.
[169] Jinping Liu,et al. Facile and large-scale production of ZnO/Zn-Al layered double hydroxide hierarchical heterostructures. , 2006, The journal of physical chemistry. B.
[170] J. Ruiz,et al. Baeyer–Villiger oxidation of cyclohexanone with hydrogen peroxide/benzonitrile over hydrotalcites as catalysts , 2006 .
[171] T. Sano,et al. Improved Fe/Mg-Al hydrotalcite catalyst for Baeyer–Villiger oxidation of ketones with molecular oxygen and benzaldehyde , 2006 .
[172] Ken Motokura,et al. Reconstructed hydrotalcite as a highly active heterogeneous base catalyst for carbon-carbon bond formations in the presence of water. , 2006, The Journal of organic chemistry.
[173] Timothy E. Long,et al. Michael addition reactions in macromolecular design for emerging technologies , 2006 .
[174] Ligong Chen,et al. Calcined Mg–Al hydrotalcites as solid base catalysts for methanolysis of soybean oil , 2006 .
[175] M. Reetz,et al. Microbial Baeyer-Villiger oxidation: stereopreference and substrate acceptance of cyclohexanone monooxygenase mutants prepared by directed evolution. , 2006, Organic letters.
[176] E. R. Jayaratne,et al. Influence of diesel fuel sulfur on nanoparticle emissions from city buses. , 2006, Environmental science & technology.
[177] Fabrice Leroux,et al. Self-assembly and characterization of layered double hydroxide/DNA hybrids. , 2006, Nano letters.
[178] M. Kantam,et al. A recyclable protocol for aza-Michael addition of amines to α,β-unsaturated compounds using Cu-Al hydrotalcite , 2005 .
[179] P. Kamath,et al. Mechanism of the anion exchange reactions of the layered double hydroxides (LDHs) of Ca and Mg with Al , 2005 .
[180] F. Leroux,et al. Fine tuning between organic and inorganic host structure: new trends in layered double hydroxide hybrid assemblies , 2005 .
[181] E. Kemnitz,et al. Application of calcined Mg-Al hydrotalcites for Michael additions : an investigation of catalytic activity and acid-base properties , 2005 .
[182] Karen Wilson,et al. Structure-reactivity correlations in MgAl hydrotalcite catalysts for biodiesel synthesis , 2005 .
[183] U. Banerjee,et al. Removal of Dyes from the Effluent of Textile and Dyestuff Manufacturing Industry: A Review of Emerging Techniques With Reference to Biological Treatment , 2005 .
[184] R. Frost,et al. A study of structural memory effects in synthetic hydrotalcites using Environmental SEM , 2005 .
[185] G. Krow. The Baeyer–Villiger Oxidation of Ketones and Aldehydes , 2004 .
[186] R. Sheldon,et al. The Baeyer-Villiger reaction: new developments toward greener procedures. , 2004, Chemical reviews.
[187] F. Khan,et al. Hydrotalcite catalysis in ionic liquid medium: a recyclable reaction system for heterogeneous Knoevenagel and nitroaldol condensation , 2004 .
[188] S. Kang,et al. Hydrotalcite-type catalysts for narrow-range oxyethylation of 1-dodecanol using ethyleneoxide , 2003 .
[189] M. Curini,et al. Hydrotalcite-like compounds as catalysts in liquid phase organic synthesis: I. Knoevenagel condensation promoted by [Ni0.73Al0.27(OH)2](CO3)0.135 , 2003 .
[190] U. R. Pillai,et al. Sn-exchanged hydrotalcites as catalysts for clean and selective Baeyer–Villiger oxidation of ketones using hydrogen peroxide , 2003 .
[191] N. Jaffrezic‐Renault,et al. Urea biosensors based on immobilization of urease into two oppositely charged clays (laponite and Zn-Al layered double hydroxides). , 2002, Analytical chemistry.
[192] V. Rives. Characterisation of layered double hydroxides and their decomposition products , 2002 .
[193] D. D. De Vos,et al. Hydrotalcite-like anionic clays in catalytic organic reactions , 2001 .
[194] L. Delmotte,et al. Layered double hydroxide fluoride: a novel solid base catalyst for C–C bond formation , 2001 .
[195] T. Stanimirova,et al. Mechanism of hydrotalcite regeneration , 2001 .
[196] F. Figueras,et al. Catalytic CC Bond Formation Promoted by MgAlO t-Bu Hydrotalcite , 2000 .
[197] Jin-Ho Choy,et al. Inorganic Layered Double Hydroxides as Nonviral Vectors , 2000 .
[198] P. C. Pavan,et al. Comparative study of the coprecipitation methods for the preparation of Layered Double Hydroxides , 2000 .
[199] K. K. Rao,et al. The first example of Michael addition catalysed by modified Mg–Al hydrotalcite , 1999 .
[200] M. Hanna,et al. Role of miR-10b in breast cancer metastasis , 2010, Breast Cancer Research.
[201] J. Besse,et al. Synthesis and characterization of mixed Ga/Al-containing layered double hydroxides: study of their basic properties through the Knoevenagel condensation of benzaldehyde and ethyl cyanoacetate, and comparison to other LDHs , 1999 .
[202] B. Meunier,et al. 100 Years of Baeyer—Villiger Oxidations , 1999 .
[203] A. Baiker,et al. Synthesis of methylamines from CO2, H2 and NH3 over Cu–Mg–Al mixed oxides , 1999 .
[204] V. Rives,et al. Layered double hydroxides (LDH) intercalated with metal coordination compounds and oxometalates , 1999 .
[205] Michael Renz,et al. 100 Years of Baeyer–Villiger Oxidations , 1999 .
[206] Jin-Ho Choy,et al. Intercalative nanohybrids of nucleoside monophosphates and DNA in layered metal hydroxide , 1999 .
[207] C. Apesteguía,et al. Impregnation-induced memory effect of thermally activated layered double hydroxides , 1998 .
[208] A. Noomen. Applications of Michael addition chemistry in coatings technology , 1997 .
[209] K. Kaneda,et al. Heterogeneous Baeyer-Villiger oxidation of ketones using m-chloroperbenzoic acid catalyzed by hydrotalcites , 1996 .
[210] T. Imanaka,et al. Catalysis of transition metal-functionalized hydrotalcites for the Baeyer-Villiger oxidation of ketones in the presence of molecular oxygen and benzaldehyde , 1995 .
[211] T. Pinnavaia,et al. Basic Properties of Mg2+1-xAl3+x Layered Double Hydroxides Intercalated by Carbonate, Hydroxide, Chloride, and Sulfate Anions , 1995 .
[212] W. Kuo,et al. Decolorizing dye wastewater with Fenton's reagent , 1992 .
[213] G. Lagaly,et al. Anion-exchange reactions of layered double hydroxides , 1990 .
[214] T. Pinnavaia,et al. Pillaring of layered double hydroxides (LDH's) by polyoxometalate anions , 1988 .
[215] T. Pinnavaia,et al. Layered double hydroxides as supported anionic reagents. Halide-ion reactivity in zinc chromium hexahydroxide halide hydrates [Zn2Cr(OH)6X.nH2O] (X = Cl, I). , 1986, Journal of the American Chemical Society.
[216] W. T. Reichle. Catalytic reactions by thermally activated, synthetic, anionic clay minerals , 1985 .
[217] J. Postgate. Biological nitrogen fixation: fundamentals , 1982 .
[218] J. Fried,et al. OXIDATION OF STEROIDS BY MICRO ÖRGANISMS. III. SIDE CHAIN DEGRADATION, RING D-CLEAVAGE AND DEHYDROGENATION IN RING A , 1953 .
[219] A. Baeyer,et al. Ueber die Einwirkung des Caro'schen Reagens auf Ketone , 1902 .
[220] A. Michael. Ueber die Addition von Natriumacetessig‐ und Natriummalonsäureäthern zu den Aethern ungesättigter Säuren , 1887 .
[221] M. Bukhtiyarova. A review on effect of synthesis conditions on the formation of layered double hydroxides , 2019, Journal of Solid State Chemistry.
[222] F. J. Echave,et al. Outstanding performance of rehydrated Mg-Al hydrotalcites as heterogeneous methanolysis catalysts for the synthesis of biodiesel , 2018 .
[223] Giriprasath Ramanathan,et al. Fabrication of 3D dual-layered nanofibrous graft loaded with layered double hydroxides and their effects in osteoblastic behavior for bone tissue engineering , 2018 .
[224] Suman Saha,et al. Magnesium, zinc and calcium aluminium layered double hydroxide-drug nanohybrids: A comprehensive study , 2017 .
[225] E. Srasra,et al. Synthesis and characterization of [Zn–Al] LDH: Study of the effect of calcination on the photocatalytic activity , 2016 .
[226] D. Polese,et al. Layered Double Hydroxides Intercalated with Chlorine Used as Low Temperature Gas Sensors , 2015 .
[227] C. Falconi,et al. Solution-Grown Zn/Al layered double hydroxide nanoplatelets onto Al thin films: fine control of position and lateral thickness , 2015 .
[228] S. Omwoma,et al. Recent advances on polyoxometalates intercalated layered double hydroxides: From synthetic approaches to functional material applications , 2014 .
[229] K. Parida,et al. Carbonate intercalated Zn/Fe layered double hydroxide: A novel photocatalyst for the enhanced photo degradation of azo dyes , 2012 .
[230] Yijun Liu,et al. Transesterification of poultry fat with methanol using Mg–Al hydrotalcite derived catalysts , 2007 .
[231] P. Gregory. 3 – Toxicology of textile dyes , 2007 .
[232] X. Duan,et al. Structure and Basicity of Mesoporous Materials from Mg/Al/In Layered Double Hydroxides Prepared by Separate Nucleation and Aging Steps Method , 2005 .
[233] V. Rives,et al. Reconstruction of layered double hydroxides from calcined precursors: a powder XRD and 27Al MAS NMR study , 1999 .
[234] H. Maibach,et al. DYES AS CONTACT ALLERGENS : A COMPREHENSIVE RECORD , 1999 .
[235] W. Jones,et al. Synthesis, characterization and applications of layered double hydroxides containing organic guests , 1998 .
[236] J. C. Greene,et al. EFFECTS OF 46 DYES ON POPULATION GROWTH OF FRESHWATER GREEN ALGA SELENASTRUM CAPRICORNUTUM , 1996 .
[237] T. Imanaka,et al. Heterogeneous Baeyer–Villiger oxidation of ketones using an oxidant consisting of molecular oxygen and aldehydes in the presence of hydrotalcite catalysts , 1994 .
[238] Li-Hui Wang,et al. Compatibility and transesterification in binary polymer blends , 1992 .
[239] E. Giannelis,et al. Anionic photocatalysts supported in layered double hydroxides: intercalation and photophysical properties of a ruthenium complex anion in synthetic hydrotalcite , 1987 .
[240] I. Tkatchenko. 50.3 – Synthesis with Carbon Monoxide and a Petroleum Product , 1982 .
[241] L. L. V. Reijen,et al. Coprecipitated nickel–alumina catalysts for methanation at high temperature. Part 1.—Chemical composition and structure of the precipitates , 1981 .