Advances in the Application of Perovskite Materials

[1]  Zheng Xu,et al.  Ultraviolet-Visible-Short-Wavelength Infrared Broadband and Fast-Response Photodetectors Enabled by Individual Monocrystalline Perovskite Nanoplate. , 2023, Small.

[2]  M. Cui,et al.  Manipulating Local Lattice Distortion for Spectrally Stable and Efficient Mixed-halide Blue Perovskite LEDs. , 2023, Angewandte Chemie.

[3]  Cunyun Xu,et al.  The effect of the effective electron mass on the hot electron collection , 2023, DeCarbon.

[4]  T. Shin,et al.  Controlled growth of perovskite layers with volatile alkylammonium chlorides , 2023, Nature.

[5]  Martin A. Green,et al.  Solar cell efficiency tables (Version 61) , 2022, Progress in Photovoltaics: Research and Applications.

[6]  Joo Sung Kim,et al.  Ultra-bright, efficient and stable perovskite light-emitting diodes , 2022, Nature.

[7]  Chenghao Bi,et al.  All Solution‐Processed High Performance Pure‐Blue Perovskite Quantum‐Dot Light‐Emitting Diodes , 2022, Advanced Functional Materials.

[8]  Bowen Zhu,et al.  Solution‐Processed Perovskite/Metal‐Oxide Hybrid X‐Ray Detector and Array with Decoupled Electronic and Ionic Transport Pathways , 2022, Small methods.

[9]  Zhigang Zang,et al.  Stabilizing Perovskite Precursor by Synergy of Functional Groups for NiOx-Based Inverted Solar Cells with 23.5% Efficiency. , 2022, Angewandte Chemie.

[10]  J. Guillemoles,et al.  Imaging and quantifying non-radiative losses at 23% efficient inverted perovskite solar cells interfaces , 2022, Nature Communications.

[11]  M. Kanatzidis,et al.  Perovskite CsPbBr3 Single Crystal Detector for High Flux X-Ray Photon Counting , 2022, IEEE Transactions on Medical Imaging.

[12]  Rui Zhu,et al.  Perovskite hetero-bilayer for efficient charge-transport-layer-free solar cells , 2022, Joule.

[13]  Zhen Li,et al.  Organometallic-functionalized interfaces for highly efficient inverted perovskite solar cells , 2022, Science.

[14]  Yang Liu,et al.  Single-crystalline TiO2 nanoparticles for stable and efficient perovskite modules , 2022, Nature Nanotechnology.

[15]  G. Indiveri,et al.  Reconfigurable halide perovskite nanocrystal memristors for neuromorphic computing , 2022, Nature Communications.

[16]  Tommaso Marcato,et al.  Anisotropic nanocrystal superlattices overcoming intrinsic light outcoupling efficiency limit in perovskite quantum dot light-emitting diodes , 2022, Nature communications.

[17]  D. Di,et al.  Efficient and ultra-stable perovskite light-emitting diodes , 2022, 2204.07829.

[18]  Mingzhen Liu,et al.  Pre‐Buried Additive for Cross‐Layer Modification in Flexible Perovskite Solar Cells with Efficiency Exceeding 22% , 2022, Advanced materials.

[19]  Zhibin Wang,et al.  Biuret Induced Tin-Anchoring and Crystallization-Regulating for Efficient Lead-Free Tin Halide Perovskite Light-Emitting Diodes. , 2022, Small.

[20]  G. Shen,et al.  Nanostructured perovskites for nonvolatile memory devices. , 2022, Chemical Society reviews.

[21]  Yiming Li,et al.  Temperature-Reliable Low-Dimensional Perovskites Passivated Black-phase CsPbI3 toward Stable and Efficient Photovoltaics. , 2022, Angewandte Chemie.

[22]  Zheng Xu,et al.  Hybrid Halide Perovskite‐Based Near‐Infrared Photodetectors and Imaging Arrays , 2022, Advanced Optical Materials.

[23]  Wentao Xu,et al.  An artificial visual nerve for mimicking pupil reflex , 2022, Matter.

[24]  O. Voznyy,et al.  Wide-Bandgap Perovskite Quantum Dots in Perovskite Matrix for Sky-Blue Light-Emitting Diodes. , 2022, Journal of the American Chemical Society.

[25]  Thomas G. Allen,et al.  Damp heat–stable perovskite solar cells with tailored-dimensionality 2D/3D heterojunctions , 2022, Science.

[26]  L. Chen,et al.  Emerging New‐Generation Detecting and Sensing of Metal Halide Perovskites , 2022, Advanced Electronic Materials.

[27]  Dong Suk Kim,et al.  Conformal quantum dot–SnO2 layers as electron transporters for efficient perovskite solar cells , 2022, Science.

[28]  Guangda Niu,et al.  Compact and Large‐Area Perovskite Films Achieved via Soft‐Pressing and Multi‐Functional Polymerizable Binder for Flat‐Panel X‐Ray Imager , 2022, Advanced Functional Materials.

[29]  Shi-jian Su,et al.  Perovskite/Organic Hybrid White Electroluminescent Devices with Stable Spectrum and Extended Operating Lifetime , 2022, ACS Energy Letters.

[30]  K. Catchpole,et al.  Centimetre-scale perovskite solar cells with fill factors of more than 86 per cent , 2022, Nature.

[31]  M. Kanatzidis,et al.  Detecting ionizing radiation using halide perovskite semiconductors processed through solution and alternative methods , 2021, Nature Photonics.

[32]  M. Kanatzidis,et al.  Detecting ionizing radiation using halide perovskite semiconductors processed through solution and alternative methods , 2021, Nature Photonics.

[33]  K. Sun,et al.  Simultaneous Interfacial Modification and Crystallization Control by Biguanide Hydrochloride for Stable Perovskite Solar Cells with PCE of 24.4% , 2021, Advanced materials.

[34]  H. Long,et al.  Highly Tunable Enhancement and Switching of Nonlinear Emission from All-Inorganic Lead Halide Perovskites via Electric Field. , 2021, Nano letters.

[35]  Lixin Xiao,et al.  Lead‐free Double Perovskite Cs2AgIn0.9Bi0.1Cl6 Quantum Dots for White Light‐Emitting Diodes , 2021, Advanced science.

[36]  Yue Hu,et al.  Minimizing the Voltage Loss in Hole‐Conductor‐Free Printable Mesoscopic Perovskite Solar Cells , 2021, Advanced Energy Materials.

[37]  Xue-feng Peng,et al.  Targeted Distribution of Passivator for Polycrystalline Perovskite Light-Emitting Diodes with High Efficiency , 2021, ACS Energy Letters.

[38]  Andrew H. Proppe,et al.  Distribution control enables efficient reduced-dimensional perovskite LEDs , 2021, Nature.

[39]  Bo Zou,et al.  Self-trapped exciton emission and piezochromism in conventional 3D lead bromide perovskite nanocrystals under high pressure , 2021, Chemical science.

[40]  Liming Ding,et al.  Pressure-induced emission from low-dimensional perovskites , 2021, Journal of Semiconductors.

[41]  Yue Hu,et al.  Highly oriented MAPbI3 crystals for efficient hole-conductor-free printable mesoscopic perovskite solar cells , 2021, Fundamental research.

[42]  Kwang Soo Kim,et al.  Perovskite solar cells with atomically coherent interlayers on SnO2 electrodes , 2021, Nature.

[43]  G. Liao,et al.  Boosting the Performance of Self-Powered CsPbCl3-Based UV Photodetectors by a Sequential Vapor-Deposition Strategy and Heterojunction Engineering. , 2021, ACS applied materials & interfaces.

[44]  Andrew H. Proppe,et al.  Bright and Stable Light-Emitting Diodes Based on Perovskite Quantum Dots in Perovskite Matrix. , 2021, Journal of the American Chemical Society.

[45]  Shi-jian Su,et al.  Perovskite Light‐Emitting Diodes with EQE Exceeding 28% through a Synergetic Dual‐Additive Strategy for Defect Passivation and Nanostructure Regulation , 2021, Advanced materials.

[46]  Oliver G. Schmidt,et al.  Perovskite Origami for Programmable Microtube Lasing , 2021, Advanced Functional Materials.

[47]  Zhanhua Wei,et al.  Dendritic CsSnI3 for Efficient and Flexible Near‐Infrared Perovskite Light‐Emitting Diodes , 2021, Advanced materials.

[48]  Jiang Tang,et al.  Pressure-Driven Reverse Intersystem Crossing: New Path toward Bright Deep-Blue Emission of Lead-Free Halide Double Perovskites. , 2021, Journal of the American Chemical Society.

[49]  Chunfeng Zhang,et al.  Electrical Switching of Optical Gain in Perovskite Semiconductor Nanocrystals. , 2021, Nano letters.

[50]  Jinsong Huang,et al.  Heterojunction structures for reduced noise in large-area and sensitive perovskite x-ray detectors , 2021, Science advances.

[51]  G. Garcia‐Belmonte,et al.  High-sensitivity high-resolution X-ray imaging with soft-sintered metal halide perovskites , 2021, Nature Electronics.

[52]  Xianjie Liu,et al.  Degradation and self-repairing in perovskite light-emitting diodes , 2021, Matter.

[53]  Hui Cao,et al.  Unveiling the additive-assisted oriented growth of perovskite crystallite for high performance light-emitting diodes , 2021, Nature Communications.

[54]  Wenjing Zhang,et al.  Interfacial linkage and carbon encapsulation enable full solution-printed perovskite photovoltaics with prolonged lifespan. , 2021, Angewandte Chemie.

[55]  Wei Zhou,et al.  Minimizing Optical Energy Losses for Long‐Lifetime Perovskite Light‐Emitting Diodes , 2021, Advanced Functional Materials.

[56]  Wen-Hau Zhang,et al.  Reducing carrier transport barrier in anode interface enables efficient and stable inverted mesoscopic methylammonium-free perovskite solar cells , 2021 .

[57]  H. Yip,et al.  Color‐Stable Deep‐Blue Perovskite Light‐Emitting Diodes Based on Organotrichlorosilane Post‐Treatment , 2021, Advanced Functional Materials.

[58]  Yanwei Liu,et al.  Dual-Mode Learning of Ambipolar Synaptic Phototransistor Based on 2D Perovskite/Organic Heterojunction for Flexible Color Recognizable Visual System. , 2021, Small.

[59]  Wen-Hau Zhang,et al.  Boosted charge extraction of NbOx-enveloped SnO2 nanocrystals enables 24% efficient planar perovskite solar cells , 2021, Energy & Environmental Science.

[60]  Jinsong Huang,et al.  Highly Efficient Pure‐Blue Light‐Emitting Diodes Based on Rubidium and Chlorine Alloyed Metal Halide Perovskite , 2021, Advanced materials.

[61]  Dexin Yang,et al.  Germanium-lead perovskite light-emitting diodes , 2021, Nature Communications.

[62]  D. Mcilroy,et al.  Lead-Free Halide Light-Emitting Diodes with External Quantum Efficiency Exceeding 7% Using Host–Dopant Strategy , 2021, ACS Energy Letters.

[63]  G. Fang,et al.  Bifunctional SnO2 Colloid Offers No Annealing Effect Compact Layer and Mesoporous Scaffold for Efficient Perovskite Solar Cells , 2021, Advanced Functional Materials.

[64]  Laizhi Sui,et al.  Harvesting Cool Daylight in Hybrid Organic–Inorganic Halides Microtubules through the Reservation of Pressure‐Induced Emission , 2021, Advanced materials.

[65]  Youngjune Park,et al.  Designing zero-dimensional dimer-type all-inorganic perovskites for ultra-fast switching memory , 2021, Nature Communications.

[66]  A. Hagfeldt,et al.  Copolymer‐Templated Nickel Oxide for High‐Efficiency Mesoscopic Perovskite Solar Cells in Inverted Architecture , 2021, Advanced Functional Materials.

[67]  M. Saidaminov,et al.  All-inorganic quantum dot LEDs based on phase-stabilized α-CsPbI3 perovskite. , 2021, Angewandte Chemie.

[68]  H. Zeng,et al.  Green Perovskite Light‐Emitting Diodes with 200 Hours Stability and 16% Efficiency: Cross‐Linking Strategy and Mechanism , 2021, Advanced Functional Materials.

[69]  J. Zhong,et al.  Advances in Halide Perovskite Memristor from Lead-Based to Lead-Free Materials. , 2021, ACS applied materials & interfaces.

[70]  Lixin Xiao,et al.  High Optical Gain of Solution‐Processed Mixed‐Cation CsPbBr3 Thin Films towards Enhanced Amplified Spontaneous Emission , 2021, Advanced Functional Materials.

[71]  Jun Hee Lee,et al.  Pseudo-halide anion engineering for α-FAPbI3 perovskite solar cells , 2021, Nature.

[72]  Yue Hu,et al.  Tailoring the Dimensionality of Hybrid Perovskites in Mesoporous Carbon Electrodes for Type‐II Band Alignment and Enhanced Performance of Printable Hole‐Conductor‐Free Perovskite Solar Cells , 2021, Advanced Energy Materials.

[73]  Bo Zou,et al.  Pressure-Induced Emission toward Harvesting Cold White Light from Warm White Light. , 2021, Angewandte Chemie.

[74]  M. Yuan,et al.  High-performance quasi-2D perovskite light-emitting diodes: from materials to devices , 2021, Light: Science & Applications.

[75]  H. Yip,et al.  Materials, photophysics and device engineering of perovskite light-emitting diodes , 2021, Reports on progress in physics. Physical Society.

[76]  Libai Huang,et al.  Lead-Free Organic-Perovskite Hybrid Quantum Wells for Highly Stable Light-Emitting Diodes. , 2021, ACS nano.

[77]  S. Harvey,et al.  Chiral-induced spin selectivity enables a room-temperature spin light-emitting diode , 2021, Science.

[78]  Yanfa Yan,et al.  Efficient and Stable Red Perovskite Light‐Emitting Diodes with Operational Stability >300 h , 2021, Advanced materials.

[79]  M. Johnston,et al.  Crystallization of CsPbBr3 single crystals in water for X-ray detection , 2021, Nature Communications.

[80]  H. Tian,et al.  Efficient and bright warm-white electroluminescence from lead-free metal halides , 2021, Nature Communications.

[81]  Cathy Y. Wong,et al.  Ligand-engineered bandgap stability in mixed-halide perovskite LEDs , 2021, Nature.

[82]  Chenghao Bi,et al.  Perovskite Quantum Dots with Ultralow Trap Density by Acid Etching‐Driven Ligand Exchange for High Luminance and Stable Pure‐Blue Light‐Emitting Diodes , 2021, Advanced materials.

[83]  F. Gao,et al.  Critical role of additive-induced molecular interaction on the operational stability of perovskite light-emitting diodes , 2021 .

[84]  Shi-jian Su,et al.  Utilization of Trapped Optical Modes for White Perovskite Light-Emitting Diodes with Efficiency over 12% , 2021 .

[85]  K. Catchpole,et al.  Nanoscale localized contacts for high fill factors in polymer-passivated perovskite solar cells , 2021, Science.

[86]  M. Kanatzidis,et al.  Triple‐Cation and Mixed‐Halide Perovskite Single Crystal for High‐Performance X‐ray Imaging , 2021, Advanced materials.

[87]  Yufei Zhang,et al.  Ultrathin and Conformable Lead Halide Perovskite Photodetector Arrays for Potential Application in Retina‐Like Vision Sensing , 2021, Advanced materials.

[88]  R. Friend,et al.  Mixed halide perovskites for spectrally stable and high-efficiency blue light-emitting diodes , 2021, Nature Communications.

[89]  R. Friend,et al.  Mixed halide perovskites for spectrally stable and high-efficiency blue light-emitting diodes , 2021, Nature communications.

[90]  Jiang Tang,et al.  Metal Halide Perovskites for X-Ray Detection and Imaging , 2021 .

[91]  M. Kanatzidis,et al.  CsPbBr3 perovskite detectors with 1.4% energy resolution for high-energy γ-rays , 2021 .

[92]  H. Zeng,et al.  Efficient and bright white light-emitting diodes based on single-layer heterophase halide perovskites , 2020, Nature Photonics.

[93]  X. Lü,et al.  Regulating off-centering distortion maximizes photoluminescence in halide perovskites , 2020, National science review.

[94]  S. Xiao,et al.  Achieving Circularly Polarized Surface Emitting Perovskite Microlasers with All-Dielectric Metasurfaces. , 2020, ACS nano.

[95]  R. Friend,et al.  Efficient light-emitting diodes from mixed-dimensional perovskites on a fluoride interface , 2020, Nature Electronics.

[96]  Wen-Hau Zhang,et al.  Ultrasensitive and stable X-ray detection using zero-dimensional lead-free perovskites , 2020, Journal of Energy Chemistry.

[97]  Dong Suk Kim,et al.  Stable perovskite solar cells with efficiency exceeding 24.8% and 0.3-V voltage loss , 2020, Science.

[98]  Ho Won Jang,et al.  Lead-Free Dual-Phase Halide Perovskites for Preconditioned Conducting-Bridge Memory. , 2020, Small.

[99]  R. Friend,et al.  Metal halide perovskites for light-emitting diodes , 2020, Nature Materials.

[100]  Shuo Zhang,et al.  Lateral Artificial Synapses on Hybrid Perovskite Platelets with Modulated Neuroplasticity , 2020, Advanced Functional Materials.

[101]  Atula S. D. Sandanayaka,et al.  Stable room-temperature continuous-wave lasing in quasi-2D perovskite films , 2020, Nature.

[102]  Lih Y. Lin,et al.  Effect of emitter orientation on the outcoupling efficiency of perovskite light-emitting diodes. , 2020, Optics letters.

[103]  X. Lü,et al.  Reaching 90% Photoluminescence Quantum Yield in One-Dimensional Metal Halide C4N2H14PbBr4 by Pressure-Suppressed Nonradiative Loss. , 2020, Journal of the American Chemical Society.

[104]  F. Gao,et al.  Large cation ethylammonium incorporated perovskite for efficient and spectra stable blue light-emitting diodes , 2020, Nature Communications.

[105]  H. Zeng,et al.  A bilateral interfacial passivation strategy promoting efficiency and stability of perovskite quantum dot light-emitting diodes , 2020, Nature Communications.

[106]  F. Kang,et al.  Highly Efficient Lead-Free (Bi,Ce)-Codoped Cs2Ag0.4Na0.6InCl6 Double Perovskites for White Light-Emitting Diodes , 2020 .

[107]  Jinsong Huang,et al.  Suppressing Interfacial Charge Recombination in Electron Transport Layer-Free Perovskite Solar Cells with Efficiency Exceeding 21. , 2020, Angewandte Chemie.

[108]  Wei Huang,et al.  Ultrashort laser pulse doubling by metal-halide perovskite multiple quantum wells , 2020, Nature Communications.

[109]  Baoquan Sun,et al.  High-Efficiency Perovskite Light-Emitting Diodes with Improved Interfacial Contact. , 2020, ACS applied materials & interfaces.

[110]  Wei Huang,et al.  In situ interface engineering for highly efficient electron-transport-layer-free perovskite solar cells. , 2020, Nano letters.

[111]  E. Kumacheva,et al.  Bipolar-shell resurfacing for blue LEDs based on strongly confined perovskite quantum dots , 2020, Nature Nanotechnology.

[112]  Y. Hao,et al.  Dual-Phase CsPbCl3-Cs4PbCl6 Perovskite Films for Self-Powered, Visible-Blind UV Photodetectors with Fast Response. , 2020, ACS applied materials & interfaces.

[113]  Abdullah M. Asiri,et al.  α‐CsPbI3 Bilayers via One‐Step Deposition for Efficient and Stable All‐Inorganic Perovskite Solar Cells , 2020, Advanced materials.

[114]  Chen Zhao,et al.  Modulating the optical and electrical properties of MAPbBr3 single crystals via voltage regulation engineering and application in memristors , 2020, Light: Science & Applications.

[115]  Laizhi Sui,et al.  Tunable Color Temperatures and Emission Enhancement in 1D Halide Perovskites under High Pressure , 2020, Advanced Optical Materials.

[116]  S. Xiao,et al.  Micro‐ and Nanostructured Lead Halide Perovskites: From Materials to Integrations and Devices , 2020, Advanced materials.

[117]  Yizheng Jin,et al.  Efficient light-emitting diodes based on oriented perovskite nanoplatelets , 2020, Science advances.

[118]  A. Zakhidov,et al.  Room-Temperature Lasing from Mie-Resonant Non-Plasmonic Nanoparticles. , 2020, ACS nano.

[119]  Hongwei Song,et al.  Samarium-Doped Metal Halide Perovskite Nanocrystals for Single-Component Electroluminescent White Light-Emitting Diodes , 2020, ACS Energy Letters.

[120]  Wei Huang,et al.  Microcavity top-emission perovskite light-emitting diodes , 2020, Light, science & applications.

[121]  Barry P Rand,et al.  Thermal Management Enables Bright and Stable Perovskite Light‐Emitting Diodes , 2020, Advanced materials.

[122]  M. Kanatzidis,et al.  Nucleation-controlled growth of superior lead-free perovskite Cs3Bi2I9 single-crystals for high-performance X-ray detection , 2020, Nature Communications.

[123]  Zheng Zhang,et al.  Recent advancements in using perovskite single crystals for gamma-ray detection , 2020, Journal of Materials Science: Materials in Electronics.

[124]  Yang Yang,et al.  Perovskite semiconductors for direct X-ray detection and imaging , 2020, Journal of Semiconductors.

[125]  Lih Y. Lin,et al.  Suppressing Efficiency Roll-Off at High Current Densities for Ultra-Bright Green Perovskite Light-Emitting Diodes. , 2020, ACS nano.

[126]  Lih Y. Lin,et al.  Photolithographic Patterning of Perovskite Thin Films for Multicolor Display Applications. , 2020, Nano letters.

[127]  B. Bahrami,et al.  High-Efficiency Perovskite Solar Cells Enabled by Anatase TiO2 Nanopyramid Arrays with Oriented Electric Field. , 2020, Angewandte Chemie.

[128]  C. Shan,et al.  Colloidal Synthesis of Ternary Copper Halides Nanocrystals for High-Efficiency Deep-Blue Light-Emitting Diodes with a Half-Lifetime Above 100 Hours. , 2020, Nano letters.

[129]  Bo Zou,et al.  Whether or Not Emission of Cs 4 PbBr 6 Nanocrystals: High-Pressure Experimental Evidence , 2020 .

[130]  Xiaofei Zhao,et al.  Large-area near-infrared perovskite light-emitting diodes , 2020 .

[131]  G. Mannino,et al.  Temperature-Dependent Optical Band Gap in CsPbBr3, MAPbBr3, and FAPbBr3 Single Crystals , 2020, The journal of physical chemistry letters.

[132]  P. Zhou,et al.  Photoassisted Electroforming Method for Reliable Low‐Power Organic–Inorganic Perovskite Memristors , 2020, Advanced Functional Materials.

[133]  M. Stiles,et al.  Neuromorphic spintronics , 2020, Nature Electronics.

[134]  Ho Won Jang,et al.  Quasi-2D halide perovskites for resistive switching devices with ON/OFF ratios above 109 , 2020, NPG Asia Materials.

[135]  Li Ge,et al.  Ultrafast control of vortex microlasers , 2020, Science.

[136]  Ru Huang,et al.  A comprehensive review on emerging artificial neuromorphic devices , 2020, Applied Physics Reviews.

[137]  Di Wu,et al.  Electrically-Driven Violet Light-Emitting Devices Based on Highly Stable Lead-Free Perovskite Cs3Sb2Br9 Quantum Dots , 2020 .

[138]  Zhenghong Lu,et al.  Chlorine Vacancy Passivation in Mixed Halide Perovskite Quantum Dots by Organic Pseudohalides Enables Efficient Rec. 2020 Blue Light-Emitting Diodes , 2020, ACS Energy Letters.

[139]  R. Friend,et al.  The role of photon recycling in perovskite light-emitting diodes , 2020, Nature Communications.

[140]  F. So,et al.  Operational stability of perovskite light emitting diodes , 2020, Journal of Physics: Materials.

[141]  Jiang Tang,et al.  Pressure-Induced Remarkable Enhancement of Self-Trapped Exciton Emission in One-Dimensional CsCu2I3 with Tetrahedral Unit. , 2020, Journal of the American Chemical Society.

[142]  F. Bella,et al.  Carbon-based materials for stable, cheaper and large-scale processable perovskite solar cells , 2019, Energy & Environmental Science.

[143]  Xiaofei Zhao,et al.  Large-area near-infrared perovskite light-emitting diodes , 2019, Nature Photonics.

[144]  Jinsong Huang,et al.  Efficient sky-blue perovskite light-emitting diodes via photoluminescence enhancement , 2019, Nature Communications.

[145]  Chunlai Xue,et al.  Germanium/perovskite heterostructure for high-performance and broadband photodetector from visible to infrared telecommunication band , 2019, Light: Science & Applications.

[146]  Shangfeng Yang,et al.  A wide-bandgap copolymer donor based on a phenanthridin-6(5H)-one unit , 2019, Materials Chemistry Frontiers.

[147]  Yizheng Jin,et al.  High‐Performance Quantum‐Dot Light‐Emitting Diodes Using NiOx Hole‐Injection Layers with a High and Stable Work Function , 2019, Advanced Functional Materials.

[148]  Dongyun Chen,et al.  Environmentally Robust Memristor Enabled by Lead-Free Double Perovskite for High-Performance Information Storage. , 2019, Small.

[149]  W. Choy,et al.  Achieving High-Quality Sn-Pb Perovskite Films on Complementary Metal-Oxide-Semiconductor-Compatible Metal/Silicon Substrates for Efficient Imaging Array. , 2019, ACS nano.

[150]  Jia Zhu,et al.  Monolithic all-perovskite tandem solar cells with 24.8% efficiency exploiting comproportionation to suppress Sn(ii) oxidation in precursor ink , 2019, Nature Energy.

[151]  W. Mao,et al.  Pressure-Induced Emission (PIE) and Phase Transition of a Two-dimensional Halide Double Perovskite (BA)4AgBiBr8 (BA = CH3(CH2)3NH3+). , 2019, Angewandte Chemie.

[152]  G. Fang,et al.  Space-Confined Growth of Individual Wide Bandgap Single Crystal CsPbCl3 Microplatelet for Near-Ultraviolet Photodetection. , 2019, Small.

[153]  T. Doherty,et al.  Heterogeneity at multiple length scales in halide perovskite semiconductors , 2019, Nature Reviews Materials.

[154]  Dawei Di,et al.  Efficient blue light-emitting diodes based on quantum-confined bromide perovskite nanostructures , 2019, Nature Photonics.

[155]  S. Lau,et al.  Multilayered PdSe2/Perovskite Schottky Junction for Fast, Self‐Powered, Polarization‐Sensitive, Broadband Photodetectors, and Image Sensor Application , 2019, Advanced science.

[156]  Wei Hu,et al.  Air-stable lead-free perovskite thin film based on CsBi3I10 and its application in resistive switching devices. , 2019, ACS applied materials & interfaces.

[157]  Wen-Hau Zhang,et al.  Thermally stable methylammonium-free inverted perovskite solar cells with Zn2+ doped CuGaO2 as efficient mesoporous hole-transporting layer , 2019, Nano Energy.

[158]  F. Gao,et al.  Unveiling the synergistic effect of precursor stoichiometry and interfacial reactions for perovskite light-emitting diodes , 2019, Nature Communications.

[159]  Haiming Zhu,et al.  Highly sensitive X-ray detector made of layered perovskite-like (NH4)3Bi2I9 single crystal with anisotropic response , 2019, Nature Photonics.

[160]  Xiaodong Li,et al.  Liquid metal acetate assisted preparation of high-efficiency and stable inverted perovskite solar cells , 2019, Journal of Materials Chemistry A.

[161]  Jun Chen,et al.  Spectra stable blue perovskite light-emitting diodes , 2019, Nature Communications.

[162]  Liyuan Han,et al.  Efficient and Stable CsPbI3 Solar Cells via Regulating Lattice Distortion with Surface Organic Terminal Groups , 2019, Advanced materials.

[163]  S. Xiao,et al.  All-optical control of lead halide perovskite microlasers , 2019, Nature Communications.

[164]  Bo Zou,et al.  Pressure-Induced Emission (PIE) of One-Dimensional Organic Tin Bromide Perovskites. , 2019, Journal of the American Chemical Society.

[165]  Yufei Zhang,et al.  Controllable Growth of Aligned Monocrystalline CsPbBr3 Microwire Arrays for Piezoelectric‐Induced Dynamic Modulation of Single‐Mode Lasing , 2019, Advanced materials.

[166]  Chuan Liu,et al.  Enhanced UV‐C Detection of Perovskite Photodetector Arrays via Inorganic CsPbBr3 Quantum Dot Down‐Conversion Layer , 2019, Advanced Optical Materials.

[167]  Yang Yang,et al.  Supersymmetric laser arrays , 2019, Nature Photonics.

[168]  Haotong Wei,et al.  Halide lead perovskites for ionizing radiation detection , 2019, Nature Communications.

[169]  J. Scheuer,et al.  Continuous wave amplified spontaneous emission in phase-stable lead halide perovskites , 2019, Nature Communications.

[170]  L. Manna,et al.  Metal Halide Perovskite Nanocrystals: Synthesis, Post-Synthesis Modifications, and Their Optical Properties , 2019, Chemical reviews.

[171]  A. Rogach,et al.  Trifluoroacetate induced small-grained CsPbBr3 perovskite films result in efficient and stable light-emitting devices , 2019, Nature Communications.

[172]  U. Roy,et al.  Role of selenium addition to CdZnTe matrix for room-temperature radiation detector applications , 2019, Scientific Reports.

[173]  Matthew D. Smith,et al.  Tuning the Luminescence of Layered Halide Perovskites. , 2019, Chemical reviews.

[174]  Abbas Amini,et al.  Organic Monomolecular Layers Enable Energy-Level Matching for Efficient Hole Transporting Layer Free Inverted Perovskite Solar Cells. , 2019, ACS nano.

[175]  D. Lipomi,et al.  Stretchable Conductive Polymers and Composites Based on PEDOT and PEDOT:PSS , 2019, Advanced materials.

[176]  Kenji Watanabe,et al.  Direct synthesis of high-quality perovskite nanocrystals on a flexible substrate and deterministic transfer. , 2018, Science bulletin.

[177]  T. Leijtens,et al.  Understanding Degradation Mechanisms and Improving Stability of Perovskite Photovoltaics. , 2018, Chemical reviews.

[178]  Barry P Rand,et al.  Improved Outcoupling Efficiency and Stability of Perovskite Light‐Emitting Diodes using Thin Emitting Layers , 2018, Advanced materials.

[179]  Wen-Hau Zhang,et al.  Design of an Inorganic Mesoporous Hole‐Transporting Layer for Highly Efficient and Stable Inverted Perovskite Solar Cells , 2018, Advanced materials.

[180]  Guangda Niu,et al.  Efficient and stable emission of warm-white light from lead-free halide double perovskites , 2018, Nature.

[181]  Siyu Lu,et al.  Pressure-induced emission of cesium lead halide perovskite nanocrystals , 2018, Nature Communications.

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