Selective photocatalytic conversion of alcohol to aldehydes by singlet oxygen over Bi-based metal-organic frameworks under UV–vis light irradiation
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Ying Dai | Zeyan Wang | Yuanyuan Liu | Peng Wang | Xiaoyan Qin | Xiaoyang Zhang | Baibiao Huang | Zhaoke Zheng | M. Whangbo | Ruoqian Zhang
[1] R. Pei,et al. Synthesis of Metal–Organic Framework Nanosheets with High Relaxation Rate and Singlet Oxygen Yield , 2018, Chemistry of Materials.
[2] Ying Dai,et al. Enhancing the Photocatalytic Hydrogen Evolution Activity of Mixed-Halide Perovskite CH3NH3PbBr3–xIx Achieved by Bandgap Funneling of Charge Carriers , 2018, ACS Catalysis.
[3] Yu Cao,et al. Metal–Organic Framework Nanoshuttle for Synergistic Photodynamic and Low‐Temperature Photothermal Therapy , 2018, Advanced Functional Materials.
[4] Shibo Wang,et al. Interfering with Lactate‐Fueled Respiration for Enhanced Photodynamic Tumor Therapy by a Porphyrinic MOF Nanoplatform , 2018, Advanced Functional Materials.
[5] P. Deria,et al. Excited-State Electronic Properties in Zr-Based Metal-Organic Frameworks as a Function of a Topological Network. , 2018, Journal of the American Chemical Society.
[6] Yi Luo,et al. Optically Switchable Photocatalysis in Ultrathin Black Phosphorus Nanosheets. , 2018, Journal of the American Chemical Society.
[7] Ying Dai,et al. Composite of CH3NH3PbI3 with Reduced Graphene Oxide as a Highly Efficient and Stable Visible‐Light Photocatalyst for Hydrogen Evolution in Aqueous HI Solution , 2018, Advanced materials.
[8] B. Pan,et al. Oxygen-Vacancy-Mediated Exciton Dissociation in BiOBr for Boosting Charge-Carrier-Involved Molecular Oxygen Activation. , 2018, Journal of the American Chemical Society.
[9] Haiquan Xie,et al. Photocatalytic Mechanism Regulation of Bismuth Oxyhalogen via Changing Atomic Assembly Method. , 2017, ACS applied materials & interfaces.
[10] Zhi‐Yuan Gu,et al. Ultrahigh adsorption and singlet-oxygen mediated degradation for efficient synergetic removal of bisphenol A by a stable zirconium-porphyrin metal-organic framework , 2017, Scientific Reports.
[11] S. Wuttke,et al. Synthesis, functionalisation and post-synthetic modification of bismuth metal-organic frameworks. , 2017, Dalton transactions.
[12] Wenjie Shi,et al. Exciton Migration and Amplified Quenching on Two-Dimensional Metal-Organic Layers. , 2017, Journal of the American Chemical Society.
[13] Yi Luo,et al. Insights into the excitonic processes in polymeric photocatalysts† †Electronic supplementary information (ESI) available: Additional figures, tables, and experimental information. See DOI: 10.1039/c7sc00307b Click here for additional data file. , 2017, Chemical science.
[14] B. Pan,et al. Giant Electron-Hole Interactions in Confined Layered Structures for Molecular Oxygen Activation. , 2017, Journal of the American Chemical Society.
[15] Ying Dai,et al. NiII Coordination to an Al-Based Metal-Organic Framework Made from 2-Aminoterephthalate for Photocatalytic Overall Water Splitting. , 2017, Angewandte Chemie.
[16] Yi Xie,et al. Boosting Hot-Electron Generation: Exciton Dissociation at the Order-Disorder Interfaces in Polymeric Photocatalysts. , 2017, Journal of the American Chemical Society.
[17] Shuhong Yu,et al. Singlet Oxygen-Engaged Selective Photo-Oxidation over Pt Nanocrystals/Porphyrinic MOF: The Roles of Photothermal Effect and Pt Electronic State. , 2017, Journal of the American Chemical Society.
[18] V. Rajagopalan,et al. A New Synergetic Nanocomposite for Dye Degradation in Dark and Light , 2016, Scientific Reports.
[19] Jiangtao Xu,et al. Photocatalysis in organic and polymer synthesis. , 2016, Chemical Society reviews.
[20] R. Weichselbaum,et al. Chlorin-Based Nanoscale Metal-Organic Framework Systemically Rejects Colorectal Cancers via Synergistic Photodynamic Therapy and Checkpoint Blockade Immunotherapy. , 2016, Journal of the American Chemical Society.
[21] Aron Walsh,et al. Electronic origins of photocatalytic activity in d0 metal organic frameworks , 2016, Scientific Reports.
[22] Ying Dai,et al. A novel metal-organic framework based on bismuth and trimesic acid: synthesis, structure and properties. , 2015, Dalton transactions.
[23] R. Asahi,et al. What Makes the Photocatalytic CO2 Reduction on N-Doped Ta2O5 Efficient: Insights from Nonadiabatic Molecular Dynamics. , 2015, Journal of the American Chemical Society.
[24] Ying Dai,et al. A bismuth-based metal-organic framework as an efficient visible-light-driven photocatalyst. , 2015, Chemistry.
[25] Wenbin Lin,et al. Nanoscale Metal–Organic Framework for Highly Effective Photodynamic Therapy of Resistant Head and Neck Cancer , 2014, Journal of the American Chemical Society.
[26] Zhenghong Lu,et al. Exciton‐Stimulated Molecular Transformation in Organic Light‐Emitting Diodes , 2014, Advanced materials.
[27] Jian‐Rong Li,et al. Photocatalytic organic pollutants degradation in metal–organic frameworks , 2014 .
[28] John L DiMeglio,et al. Efficient Reduction of CO2 to CO with High Current Density Using in Situ or ex Situ Prepared Bi-Based Materials , 2014, Journal of the American Chemical Society.
[29] A. Gupta,et al. Heavy Atom Effect Driven Organic Phosphors and Their Luminescent Lanthanide Metal-Organic Frameworks. , 2013, ChemPlusChem.
[30] G. Wiederrecht,et al. Light-harvesting and ultrafast energy migration in porphyrin-based metal-organic frameworks. , 2013, Journal of the American Chemical Society.
[31] K. Ishii. Functional singlet oxygen generators based on phthalocyanines , 2012 .
[32] Mei-Rong Ke,et al. A phthalocyanine-peptide conjugate with high in vitro photodynamic activity and enhanced in vivo tumor-retention property. , 2012, Chemistry.
[33] Wenbin Lin,et al. Amplified luminescence quenching of phosphorescent metal-organic frameworks. , 2012, Journal of the American Chemical Society.
[34] H. Yoshida,et al. Heterogeneous photocatalytic hydrogen production from water and biomass derivatives , 2011 .
[35] Yun‐Hi Kim,et al. H‐Aggregation Strategy in the Design of Molecular Semiconductors for Highly Reliable Organic Thin Film Transistors , 2011 .
[36] P. Maillard,et al. A strategy for the targeting of photosensitizers. Synthesis, characterization, and photobiological property of porphyrins bearing glycodendrimeric moieties. , 2011, The Journal of organic chemistry.
[37] B. Parkinson,et al. Multiple Exciton Collection in a Sensitized Photovoltaic System , 2010, Science.
[38] Fuyou Li,et al. Phosphorescent chemosensors based on heavy-metal complexes. , 2010, Chemical Society reviews.
[39] Peter R Ogilby,et al. Singlet oxygen: there is indeed something new under the sun. , 2010, Chemical Society reviews.
[40] E. Sargent,et al. Colloidal Quantum-Dot Photodetectors Exploiting Multiexciton Generation , 2009, Science.
[41] S. Nonell,et al. Singlet oxygen photosensitisation by the fluorescent probe Singlet Oxygen Sensor Green. , 2009, Chemical communications.
[42] Hong‐Cai Zhou,et al. Investigation of gas adsorption performances and H2 affinities of porous metal-organic frameworks with different entatic metal centers. , 2009, Inorganic chemistry.
[43] L. Rossi,et al. Protoporphyrin IX nanoparticle carrier: preparation, optical properties, and singlet oxygen generation. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[44] Arthur C. Gossard,et al. Control of Exciton Fluxes in an Excitonic Integrated Circuit , 2008, Science.
[45] T. Montagnon,et al. Using singlet oxygen to synthesize polyoxygenated natural products from furans. , 2008, Accounts of chemical research.
[46] M. Fujii,et al. Silicon Nanocrystals: Photosensitizers for Oxygen Molecules , 2005 .
[47] William M Gallagher,et al. In vitro demonstration of the heavy-atom effect for photodynamic therapy. , 2004, Journal of the American Chemical Society.
[48] M. DeRosa. Photosensitized singlet oxygen and its applications , 2002 .
[49] R. I. Personov,et al. Phosphorescence of pi-conjugated oligomers and polymers. , 2000, Physical review letters.
[50] Werner,et al. Novel optimization principles and efficiency limits for semiconductor solar cells. , 1994, Physical review letters.
[51] R. Dutta,et al. A mechanistic approach for superoxide radicals and singlet oxygen mediated enhanced photocatalytic dye degradation by selenium doped ZnS nanoparticles , 2016 .