Host molecule enhanced aggregation induced emission of chiral silver nanoclusters for achieving highly efficient circularly polarized electroluminescence
暂无分享,去创建一个
Hao Zhang | Shuhe Hu | Yinghui Wang | Dong Yao | Xiaoyu Zhang | Hang Gao | Yanwei Xiao | Ye Tian
[1] N. Zhang,et al. Overcoming Efficiency Limitation of Cluster Light-Emitting Diodes with Asymmetrically Functionalized Biphosphine Cu4I4 Cubes. , 2022, Journal of the American Chemical Society.
[2] Dongxue Han,et al. Endowing inorganic nanomaterials with circularly polarized luminescence , 2021, Aggregate.
[3] Xi-Yan Dong,et al. Full-Color Tunable Circularly Polarized Luminescence Induced by the Crystal Defect from the Co-assembly of Chiral Silver(I) Clusters and Dyes. , 2021, Journal of the American Chemical Society.
[4] Wei Huang,et al. V-shaped triazine host featuring intramolecular non-covalent interaction for highly efficient white electroluminescent devices , 2021 .
[5] Yubing Si,et al. Symmetry Breaking of Atomically Precise Fullerene-like Metal Nanoclusters. , 2021, Journal of the American Chemical Society.
[6] Y. Zhao,et al. 3D Laser Displays Based on Circularly Polarized Lasing from Cholesteric Liquid Crystal Arrays , 2021, Advanced materials.
[7] Guozhen Zhang,et al. Chiral Phosphine-Copper Iodide Hybrid Cluster Assemblies for Circularly Polarized Luminescence. , 2021, Journal of the American Chemical Society.
[8] Xi-Yan Dong,et al. Alkynyl-Stabilized Superatomic Silver Clusters Showing Circularly Polarized Luminescence. , 2021, Journal of the American Chemical Society.
[9] Z. Tang,et al. Rational Design of Multi-color-emitting Chiral Carbonized Polymer Dots for Full-color and White Circularly Polarized Luminescence. , 2021, Angewandte Chemie.
[10] M. Eddaoudi,et al. [Cu15 (PPh3 )6 (PET)13 ]2+ : a Copper Nanocluster with Crystallization Enhanced Photoluminescence. , 2021, Small.
[11] S. Harvey,et al. Chiral-induced spin selectivity enables a room-temperature spin light-emitting diode , 2021, Science.
[12] Xiaobo Wang,et al. Polarization‐Sensitive Halide Perovskites for Polarized Luminescence and Detection: Recent Advances and Perspectives , 2021, Advanced materials.
[13] Wenjun Jiang,et al. Recent advances in stimuli‐responsive theranostic systems with aggregation‐induced emission characteristics , 2021, Aggregate.
[14] Zhong-Ning Chen,et al. Elaborate Design of Ag8Au10 Cluster [2]Catenane Phosphors for High-Efficiency Light-Emitting Devices. , 2020, ACS applied materials & interfaces.
[15] Shuangquan Zang,et al. Intercluster aurophilicity-driven aggregation lighting circularly polarized luminescence of chiral gold clusters , 2020, Nano Research.
[16] Haipeng Yu,et al. Designing Hybrid Chiral Photonic Films with Circularly Polarized Room-Temperature Phosphorescence. , 2020, ACS nano.
[17] Xi-Yan Dong,et al. Enantiomeric MOF Crystals Using Helical Channels as Palettes with Bright White Circularly Polarized Luminescence , 2020, Advanced materials.
[18] M. Fuchter,et al. Highly efficient inverted circularly polarized organic light emitting diodes. , 2020, ACS applied materials & interfaces.
[19] P. Duan,et al. Chiral Platinum‐Based Metallomesogens with Highly Efficient Circularly Polarized Electroluminescence in Solution‐Processed Organic Light‐Emitting Diodes , 2020, Advanced Optical Materials.
[20] Shuangquan Zang,et al. Progress in Atomically Precise Coinage Metal Clusters with Aggregation‐Induced Emission and Circularly Polarized Luminescence , 2020, Advanced Optical Materials.
[21] Xi-Yan Dong,et al. Ultrastable atomically precise chiral silver clusters with more than 95% quantum efficiency , 2020, Science Advances.
[22] Xi-Yan Dong,et al. AIE Triggers the Circularly Polarized Luminescence of Atomically Precise Enantiomeric Copper(I) Alkynyl Clusters. , 2019, Angewandte Chemie.
[23] L. Duan,et al. Axial TADF Enantiomers Designed for Efficient Blue Circularly Polarized Electroluminescence. , 2019, Angewandte Chemie.
[24] Ruirui Xing,et al. Nucleation and Growth of Amino-acid and Peptide Supramolecular Polymers through Liquid-liquid Phase Separation. , 2019, Angewandte Chemie.
[25] Y. Zhao,et al. Circularly Polarized Luminescence from Achiral Single Crystals of Hybrid Manganese Halides. , 2019, Journal of the American Chemical Society.
[26] Tonghan Zhao,et al. Circularly Polarized Luminescence in Nanoassemblies: Generation, Amplification, and Application , 2019, Advanced materials.
[27] Chunmiao Han,et al. Highly efficient sky blue electroluminescence from ligand-activated copper iodide clusters: Overcoming the limitations of cluster light-emitting diodes , 2019, Science Advances.
[28] Xiao-Fei Liu,et al. Synthesis of Atom‐Precise Chiral Ag14 Clusters Protected by Penicillamine Ligands , 2019, Particle & Particle Systems Characterization.
[29] Zhaoxin Wu,et al. Enhancing Molecular Aggregations by Intermolecular Hydrogen Bonds to Develop Phosphorescent Emitters for High‐Performance Near‐Infrared OLEDs , 2019, Advanced science.
[30] B. Tang,et al. Guest‐Triggered Aggregation‐Induced Emission in Silver Chalcogenolate Cluster Metal–Organic Frameworks , 2018, Advanced science.
[31] Qiang Zhao,et al. Recent Progress on Circularly Polarized Luminescent Materials for Organic Optoelectronic Devices , 2018, Advanced Optical Materials.
[32] A. Rogach,et al. Water‐Soluble Biocompatible Copolymer Hypromellose Grafted Chitosan Able to Load Exogenous Agents and Copper Nanoclusters with Aggregation‐Induced Emission , 2018, Advanced Functional Materials.
[33] Ben Zhong Tang,et al. Highly Efficient Circularly Polarized Electroluminescence from Aggregation‐Induced Emission Luminogens with Amplified Chirality and Delayed Fluorescence , 2018, Advanced Functional Materials.
[34] Nam Heon Cho,et al. Amino-acid- and peptide-directed synthesis of chiral plasmonic gold nanoparticles , 2018, Nature.
[35] L. Duan,et al. Stable Enantiomers Displaying Thermally Activated Delayed Fluorescence: Efficient OLEDs with Circularly Polarized Electroluminescence. , 2018, Angewandte Chemie.
[36] N. Niu,et al. Novel Quercetin Aggregation‐Induced Emission Luminogen (AIEgen) with Excited‐State Intramolecular Proton Transfer for In Vivo Bioimaging , 2018 .
[37] Chunmiao Han,et al. White Electroluminescent Phosphine-Chelated Copper Iodide Nanoclusters , 2017 .
[38] Yongbo Song,et al. Crystallization-induced emission enhancement: A novel fluorescent Au-Ag bimetallic nanocluster with precise atomic structure , 2017, Science Advances.
[39] R. Jin,et al. Chiral Gold Nanoclusters: Atomic Level Origins of Chirality. , 2017, Chemistry, an Asian journal.
[40] Chun‐Sing Lee,et al. Incorporating Copper Nanoclusters into Metal‐Organic Frameworks: Confinement‐Assisted Emission Enhancement and Application for Trinitrotoluene Detection , 2017 .
[41] Xu-Hua Wang,et al. Circularly Polarized Phosphorescent Electroluminescence with a High Dissymmetry Factor from PHOLEDs Based on a Platinahelicene. , 2016, Journal of the American Chemical Society.
[42] H. Tian,et al. Morphology‐Tailoring of a Red AIEgen from Microsized Rods to Nanospheres for Tumor‐Targeted Bioimaging , 2016, Advanced materials.
[43] Tianyu Wang,et al. Supramolecular Chirality in Self-Assembled Systems. , 2015, Chemical reviews.
[44] Fei Wang,et al. Tailoring Building Blocks and Their Boundary Interaction for the Creation of New, Potentially Superhard, Carbon Materials , 2015, Advanced materials.
[45] Liang Xu,et al. Phosphorescent Cationic Au4Ag2 Alkynyl Cluster Complexes for Efficient Solution‐Processed Organic Light‐Emitting Diodes , 2015 .
[46] Kyoung Soo Yook,et al. Small Molecule Host Materials for Solution Processed Phosphorescent Organic Light‐Emitting Diodes , 2014, Advanced materials.
[47] S. Ng,,et al. Metallophilicity-driven dynamic aggregation of a phosphorescent gold(I)-silver(I) cluster prepared by solution-based and mechanochemical approaches. , 2014, Journal of the American Chemical Society.
[48] Brian M. Leonard,et al. Ligand induced circular dichroism and circularly polarized luminescence in CdSe quantum dots. , 2013, ACS nano.
[49] Liguang Xu,et al. Attomolar DNA detection with chiral nanorod assemblies , 2013, Nature Communications.
[50] Quan‐Ming Wang,et al. Postclustering dynamic covalent modification for chirality control and chiral sensing. , 2013, Journal of the American Chemical Society.
[51] Alasdair J. Campbell,et al. Circularly polarized light detection by a chiral organic semiconductor transistor , 2013, Nature Photonics.
[52] M. Fuchter,et al. Induction of Circularly Polarized Electroluminescence from an Achiral Light-Emitting Polymer via a Chiral Small-Molecule Dopant , 2013, Advanced materials.
[53] Jianping Xie,et al. From aggregation-induced emission of Au(I)-thiolate complexes to ultrabright Au(0)@Au(I)-thiolate core-shell nanoclusters. , 2012, Journal of the American Chemical Society.
[54] Xuhui Huang,et al. What makes efficient circularly polarised luminescence in the condensed phase: aggregation-induced circular dichroism and light emission , 2012 .
[55] Tian Lu,et al. Multiwfn: A multifunctional wavefunction analyzer , 2012, J. Comput. Chem..
[56] T. Bürgi,et al. First enantioseparation and circular dichroism spectra of Au38 clusters protected by achiral ligands , 2012, Nature Communications.
[57] Jingui Qin,et al. Organic host materials for phosphorescent organic light-emitting diodes. , 2011, Chemical Society reviews.
[58] Tatsuya Tsukuda,et al. Chiroptical activity of BINAP-stabilized undecagold clusters. , 2006, The journal of physical chemistry. B.
[59] B. Julsgaard,et al. Quantum teleportation between light and matter , 2006, Nature.
[60] Robert L. Whetten,et al. Isolation and Selected Properties of a 10.4 kDa Gold:Glutathione Cluster Compound , 1998 .