An elastic organic crystal with multilevel stimuli-responsive room temperature phosphorescence
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Zhenyi He | Jinming Song | Yuhang Zhou | Xiang Ma | Zhichao Pan | He Tian | Yuhang Zhou | Ying Hu
[1] Qiong Zhou,et al. Fast and Reversibly Humidity-Responsive Fluorescence Based on AIEgen Proton Transfer. , 2022, ACS applied materials & interfaces.
[2] Dongzhi Liu,et al. Kilogram‐Scale Fabricated Organic Long‐Persistent Luminescence Materials with Multi‐Level Temperature Response , 2022, Advanced Optical Materials.
[3] Dongpeng Yan,et al. Hydrogen-bond organized 2D metal-organic microsheets: direct ultralong phosphorescence and color-tunable optical waveguides. , 2022, Science bulletin.
[4] G. Wang,et al. A Mild‐Stimuli‐Responsive Fluorescent Molecular System Enables Multilevel Anti‐Counterfeiting and Highly Adaptable Temperature Monitoring , 2022, Advanced Functional Materials.
[5] A. Kaczmarek,et al. Deformation-induced phosphorescence shift in a 2D elastically flexible organic single crystal: role of chalcogen-centered weak interactions , 2022, Chemical Science.
[6] Zhengxu Cai,et al. Dual Guests Synergistically Tune the Phosphorescence Properties of Doped Systems through Chemical Interactions with Bases , 2022, ACS Materials Letters.
[7] Hao Sun,et al. Photo-stimuli-responsive Organic Room-Temperature Phosphorescent Materials , 2022, ACS Materials Letters.
[8] Qiushui Chen,et al. Organic phosphorescent scintillation from copolymers by X-ray irradiation , 2022, Nature Communications.
[9] H. Tian,et al. Reversible Multilevel Stimuli-Responsiveness and Multicolor Room Temperature Phosphorescence Emission Based on a Single-Component System. , 2022, Angewandte Chemie.
[10] Yan Zheng,et al. Four-in-One Stimulus-Responsive Long-Lived Luminescent Systems Based on Pyrene-Doped Amorphous Polymers. , 2022, Angewandte Chemie.
[11] Y. Liu,et al. A Highly Efficient Phosphorescence/Fluorescence Supramolecular Switch Based on a Bromoisoquinoline Cascaded Assembly in Aqueous Solution , 2022, Advanced science.
[12] Zebin Lin,et al. Reversible, photoresponsive, dynamic wide-range emission color from polymer-matrixed naphthalene diimide single-luminogen , 2022, Chemical Engineering Journal.
[13] Zhen Li,et al. Stimulus-responsive room temperature phosphorescence materials with full-color tunability from pure organic amorphous polymers , 2022, Science advances.
[14] Yuping Dong,et al. Halogen Bonding: A New Platform for Achieving Multi-Stimuli-Responsive Persistent Phosphorescence. , 2022, Angewandte Chemie.
[15] B. Tang,et al. Completely aqueous processable stimulus responsive organic room temperature phosphorescence materials with tunable afterglow color , 2022, Nature communications.
[16] Xiang Ma,et al. Stimuli-Responsive Polymers with Room-Temperature Phosphorescence. , 2021, Chemistry.
[17] Xu Yu,et al. Quantifiable stretching-induced fluorescence shifts of an elastically bendable and plastically twistable organic crystal , 2021, Chemical science.
[18] Dongpeng Yan,et al. Highly tunable ultralong room-temperature phosphorescence from ionic supramolecular adhesives for multifunctional applications , 2021, Chemical Engineering Journal.
[19] Yu Liu,et al. Photooxidation-Driven Purely Organic Room-Temperature Phosphorescent Lysosome-Targeted Imaging. , 2021, Journal of the American Chemical Society.
[20] Gengzhi Sun,et al. Elastic organic crystals with ultralong phosphorescence for flexible anti-counterfeiting , 2021, npj Flexible Electronics.
[21] Xiang Ma,et al. Triboluminescence and Selective Hydrogen-Bond Responsiveness of Thiochromanone Derivative , 2021, ACS Materials Letters.
[22] Zhen Li,et al. Stimulus-Responsive Room Temperature Phosphorescence Materials: Internal Mechanism, Design Strategy, and Potential Application , 2021, Accounts of Materials Research.
[23] Zhen Li,et al. Multistage Stimulus-Responsive Room Temperature Phosphorescence Based on Host-Guest Doping Systems. , 2021, Angewandte Chemie.
[24] Xiang Ma,et al. Dual-Responsive Thermally Activated Delayed Fluorescence of Spiropyran Derivatives , 2021 .
[25] Zhen Li,et al. Different molecular conformation and packing determining mechanochromism and room-temperature phosphorescence , 2021, Science China Materials.
[26] Jie Wang,et al. Red-light excited efficient metal-free near-infrared room-temperature phosphorescent films , 2021, National science review.
[27] Yanli Zhao,et al. Ultraviolet irradiation-responsive dynamic ultralong organic phosphorescence in polymeric systems , 2021, Nature Communications.
[28] Zhen Li,et al. Force-induced turn-on persistent room temperature phosphorescence in purely organic luminogen. , 2021, Angewandte Chemie.
[29] H. Tian,et al. Room‐Temperature Phosphorescence Enabled through Nacre‐Mimetic Nanocomposite Design , 2020, Advanced materials.
[30] Zhigang Xie,et al. Colour-tunable ultralong-lifetime room temperature phosphorescence with external heavy-atom effect in boron-doped carbon dots , 2020 .
[31] Dongpeng Yan,et al. "To jump or not": manipulating light-induced dynamic macro-movement and static photonic properties within 1D isostructural hydrogen-bonded molecular crystals. , 2020, Angewandte Chemie.
[32] Yan-Fei Kang,et al. Rational design of a “dual lock-and-key” supramolecular photosensitizer based on aromatic nucleophilic substitution for specific and enhanced photodynamic therapy , 2020, Chemical science.
[33] P. K. Mandal,et al. Mechanical bending induced fluorescence enhancement in plastically flexible crystals of a GFP chromophore analogue. , 2020, Angewandte Chemie.
[34] T. Fukushima,et al. Anisotropic Poisson's Effect and Deformation-induced Fluorescence Change of Elastic 9,10-Dibromoanthrathene Single Crystals. , 2020, Angewandte Chemie.
[35] S. Takamizawa,et al. A superelastochromic crystal , 2020, Nature Communications.
[36] Zhen Li,et al. Molecular Packing: Another Key Point for the Performance of Organic and Polymeric Optoelectronic Materials. , 2020, Accounts of chemical research.
[37] Qiang Zhao,et al. Chameleon‐Like Thermochromic Luminescent Materials with Controllable Response Behaviors for Multilevel Security Printing , 2020, Advanced Optical Materials.
[38] F. Cacialli,et al. Modulating the luminance of organic light-emitting diodes via optical stimulation of a photochromic molecular monolayer at transparent oxide electrode. , 2020, Nanoscale.
[39] Hongwei Wu,et al. Color-tunable ultralong organic room temperature phosphorescence from a multicomponent copolymer , 2020, Nature Communications.
[40] Yuping Zhang,et al. Optical Waveguiding Organic Single Crystals Exhibiting Physical and Chemical Bending Features. , 2020, Angewandte Chemie.
[41] Qingyuan Yang,et al. Crystal-state Photochromism and Dual-mode Mechanochromism of an Organic Molecule with Fluorescence, RT Phosphorescence and DF. , 2019, Angewandte Chemie.
[42] Yi Luo,et al. Aggregation‐Induced Dual‐Phosphorescence from Organic Molecules for Nondoped Light‐Emitting Diodes , 2019, Advanced materials.
[43] Lili Huang,et al. An AIE molecule featuring changeable triplet emission between phosphorescence and delayed fluorescence by an external force , 2019, Materials Chemistry Frontiers.
[44] Guodong Liang,et al. Long-Lived Room-Temperature Phosphorescence for Visual and Quantitative Detection of Oxygen. , 2019, Angewandte Chemie.
[45] Zhen Li,et al. Multiple Luminescence Responses towards Mechanical Stimulus and Photo-Induction: The Key Role of the Stuck Packing Mode and Tunable Intermolecular Interactions. , 2019, Chemistry.
[46] H. Tian,et al. Assembling-Induced Emission: An Efficient Approach for Amorphous Metal-Free Organic Emitting Materials with Room-Temperature Phosphorescence. , 2019, Accounts of chemical research.
[47] Haiming Zhu,et al. Photoexcitation-controlled self-recoverable molecular aggregation for flicker phosphorescence , 2019, Proceedings of the National Academy of Sciences.
[48] S. Reineke,et al. Blue‐Light‐Absorbing Thin Films Showing Ultralong Room‐Temperature Phosphorescence , 2019, Advanced materials.
[49] L. Lan,et al. Controllably realizing elastic/plastic bending based on a room-temperature phosphorescent waveguiding organic crystal , 2018, Chemical science.
[50] N. Tohnai,et al. Conformationally-flexible and moderately electron-donating units-installed D-A-D triad enabling multicolor-changing mechanochromic luminescence, TADF and room-temperature phosphorescence. , 2018, Chemical Communications.
[51] Dongpeng Yan,et al. Tuning Light-Driven Motion and Bending in Macroscale-Flexible Molecular Crystals Based on a Cocrystal Approach. , 2018, ACS applied materials & interfaces.
[52] Yuhui Wang,et al. Conversion of Carbon Dots from Fluorescence to Ultralong Room‐Temperature Phosphorescence by Heating for Security Applications , 2018, Advanced materials.
[53] K. Seo,et al. Culture supernatant produced by Lactobacillus kefiri from kefir inhibits the growth of Cronobacter sakazakii , 2018, Journal of Dairy Research.
[54] Suning Wang,et al. Bright, Multi-responsive, Sky-Blue Platinum(II) Phosphors Based on a Tetradentate Chelating Framework. , 2017, Angewandte Chemie.
[55] S. Hayashi,et al. Elastic Organic Crystals of a Fluorescent π-Conjugated Molecule. , 2016, Angewandte Chemie.
[56] B. Tang,et al. Achieving Persistent Room Temperature Phosphorescence and Remarkable Mechanochromism from Pure Organic Luminogens , 2015, Advanced materials.
[57] H. Tian,et al. Excited-State Conformational/Electronic Responses of Saddle-Shaped N,N'-Disubstituted-Dihydrodibenzo[a,c]phenazines: Wide-Tuning Emission from Red to Deep Blue and White Light Combination. , 2015, Journal of the American Chemical Society.
[58] Jia-rui Xu,et al. Linearly tunable emission colors obtained from a fluorescent-phosphorescent dual-emission compound by mechanical stimuli. , 2015, Angewandte Chemie.
[59] G. Desiraju,et al. Designing elastic organic crystals: highly flexible polyhalogenated N-benzylideneanilines. , 2015, Angewandte Chemie.
[60] Jennifer S. Martinez,et al. A new pH sensitive fluorescent and white light emissive material through controlled intermolecular charge transfer† †Electronic supplementary information (ESI) available: Text: experiments, characterization, devices fabrication. Figures: NMR, titration curve, estimation of pK a, single quantum mode , 2014, Chemical science.
[61] S. Takamizawa,et al. Superelastic organic crystals. , 2014, Angewandte Chemie.
[62] Wei Huang,et al. Smart responsive phosphorescent materials for data recording and security protection , 2014, Nature Communications.
[63] Haiyang Li,et al. Crystallization-induced phosphorescence of benzils at room temperature , 2013, Science China Chemistry.
[64] C. M. Reddy,et al. Elastic and bendable caffeine cocrystals: implications for the design of flexible organic materials. , 2012, Angewandte Chemie.
[65] B. Tang,et al. Crystallization-Induced Phosphorescence of Pure Organic Luminogens at Room Temperature , 2010 .
[66] Yong Chen,et al. Tunable Phosphorescence Supramolecular Switch by Anthracene Photoreaction in Aqueous Solution , 2021, Journal of Materials Chemistry C.
[67] M. Annadhasan,et al. Mechanophotonic aspects of a room temperature phosphorescent flexible organic microcrystal , 2021 .
[68] S. Tunik,et al. Diversifying the luminescence of phenanthro-diimine ligands in zinc complexes , 2021, Inorganic Chemistry Frontiers.
[69] C. Adachi,et al. Afterglow Organic Light‐Emitting Diode , 2016, Advanced materials.