Large-scale facile-synthesis and bistable emissions of one-dimensional organic–inorganic C4H14N2PbBr4 metal halide crystals with bipolaronic states
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B. Zou | H. Peng | Li-jie Shi | Xinxin Wang | Tao Huang | S. Yao | Ye Tian | Y. Guo | Li-jie Shi
[1] Tiantian Dong,et al. Water-Stable Zero-Dimensional (C4H9)4NCuCl2 Single Crystal with Highly Efficient Broadband Green Emission. , 2021, Journal of Physical Chemistry Letters.
[2] Q. Yao,et al. Highly Efficient Cool-White Photoluminescence of (Gua)3Cu2I5 Single Crystals: Formation and Optical Properties. , 2021, ACS applied materials & interfaces.
[3] Mohamad S. Kodaimati,et al. Recent advances in persistent luminescence based on molecular hybrid materials. , 2021, Chemical Society reviews.
[4] Dongpeng Yan,et al. Boosting Wide‐Range Tunable Long‐Afterglow in 1D Metal–Organic Halide Micro/Nanocrystals for Space/Time‐Resolved Information Photonics , 2021, Advanced materials.
[5] Guangda Niu,et al. Lead‐Free Perovskite Variant Solid Solutions Cs2Sn1–xTexCl6: Bright Luminescence and High Anti‐Water Stability , 2020, Advanced materials.
[6] Sasa Wang,et al. A one-dimensional dual emissive hybrid perovskite with flexibly tunable white-light emission , 2020 .
[7] Muhammad Imran Saleem,et al. A facile method to synthesize two-dimensional CsPb2Br5 nano-/micro-sheets for high-performance solution-processed photodetectors , 2020 .
[8] B. Zou,et al. High Efficient Self-trapped Exciton Emission of A (MA)4Cu2Br6 Single Crystal. , 2020, The journal of physical chemistry letters.
[9] Chenyang Zhou,et al. Mechanism for tunable broadband white photoluminescence of one-dimensional (C4N2H14)2Pb1-xMnxBr4 perovskite microcrystals , 2020 .
[10] A. Lusson,et al. White Light Emission from a Zero-Dimensional Lead Chloride Hybrid Material , 2020, ACS Photonics.
[11] Yonggang Wang,et al. Broadband Photoluminescence in 2D Organic-Inorganic Hybrid Perovskites: (C7H18N2)PbBr4 and (C9H22N2)PbBr4. , 2020, The journal of physical chemistry letters.
[12] Shufeng Wang,et al. Spin-related optical behaviors of dilute magnetic semiconductor ZnSe:Ni(II) nanobelts , 2020, Nanotechnology.
[13] Yan Du,et al. [DMEDA]PbCl4: a one-dimensional organic lead halide perovskite with efficient yellow emission , 2020 .
[14] Duan Zhao,et al. Bosonic Lasing of Collective Exciton Magnetic Polarons in CuCl2-Doped CdS Nanoribbons: Implications for Quantum Light Sources , 2020 .
[15] M. Jung. Broadband white light emission from one-dimensional zigzag edge-sharing perovskite , 2020 .
[16] Z. Xia,et al. Homo/Hetero-Valent Doping Mediated Self-Trapped Excitons Emission and Energy Transfer in Mn-doped Cs2Na1-xAgxBiCl6 Double Perovskites. , 2019, The journal of physical chemistry letters.
[17] Biwu Ma,et al. Bulk Assembly of Zero-Dimensional Organic Lead Bromide Hybrid with Efficient Blue Emission , 2019, ACS Materials Letters.
[18] Dongpeng Yan,et al. Simultaneous Long-Persistent Blue Luminescence and High Quantum Yield within 2D Organic-Metal Halide Perovskite Micro/Nanosheets. , 2019, Angewandte Chemie.
[19] S. Ghosh,et al. A hybrid blue perovskite@metal–organic gel (MOG) nanocomposite: simultaneous improvement of luminescence and stability , 2019, Chemical science.
[20] D. Tang,et al. Simultaneous Triplet Exciton–Phonon and Exciton–Photon Photoluminescence in the Individual Weak Confinement CsPbBr3 Micro/Nanowires , 2019, The Journal of Physical Chemistry C.
[21] Q. Khan,et al. Organic–inorganic hybrid perovskites based on methylamine lead halide solar cell , 2019, Solar Energy.
[22] Biwu Ma,et al. Low dimensional metal halide perovskites and hybrids , 2019, Materials Science and Engineering: R: Reports.
[23] X. Lü,et al. Green Emitting Single-Crystalline Bulk Assembly of Metal Halide Clusters with Near-Unity Photoluminescence Quantum Efficiency , 2019, ACS Energy Letters.
[24] Q. Gong,et al. Spintronics of Hybrid Organic–Inorganic Perovskites: Miraculous Basis of Integrated Optoelectronic Devices , 2019, Advanced Optical Materials.
[25] Feng Gao,et al. Bright Free Exciton Electroluminescence from Mn-Doped Two-Dimensional Layered Perovskites. , 2019, The journal of physical chemistry letters.
[26] Z. Yin,et al. Effects of Organic Cations on the Structure and Performance of Quasi-Two-Dimensional Perovskite-Based Light-Emitting Diodes. , 2019, The journal of physical chemistry letters.
[27] Jiang Tang,et al. Self-Trapped Excitons in All-Inorganic Halide Perovskites: Fundamentals, Status, and Potential Applications. , 2019, The journal of physical chemistry letters.
[28] T. M. McWhorter,et al. Hybrid Organic–Inorganic Halides (C5H7N2)2MBr4 (M = Hg, Zn) with High Color Rendering Index and High-Efficiency White-Light Emission , 2019, Chemistry of Materials.
[29] Dongpeng Yan,et al. Facile synthesis of 1D organic–inorganic perovskite micro-belts with high water stability for sensing and photonic applications† †Electronic supplementary information (ESI) available. CCDC 1862717. For ESI and crystallographic data in CIF or other electronic format see DOI: 10.1039/c9sc00162j , 2019, Chemical science.
[30] Y. Abid,et al. Resonantly Enhanced White-Light Emission Involving Energy and Charge Transfer in One-Dimensional Hybrid Material: (ABT)2[PbBr3] , 2019, The Journal of Physical Chemistry C.
[31] S. Liu,et al. Two-dimensional (PEA)2PbBr4 perovskite single crystals for a high performance UV-detector , 2019, Journal of Materials Chemistry C.
[32] Biwu Ma,et al. Bulk Assembly of Corrugated 1D Metal Halides with Broadband Yellow Emission , 2019, Advanced Optical Materials.
[33] Yanfa Yan,et al. Atomistic Mechanism of Broadband Emission in Metal Halide Perovskites. , 2019, The journal of physical chemistry letters.
[34] Christoph Wolf,et al. Fine Control of Perovskite Crystallization and Reducing Luminescence Quenching Using Self‐Doped Polyaniline Hole Injection Layer for Efficient Perovskite Light‐Emitting Diodes , 2018, Advanced Functional Materials.
[35] Guangda Niu,et al. Efficient and stable emission of warm-white light from lead-free halide double perovskites , 2018, Nature.
[36] Hongwei Hu,et al. Molecular engineering of two-dimensional hybrid perovskites with broadband emission for white light-emitting diodes , 2018 .
[37] K. Boukheddaden,et al. Yellowish White-Light Emission Involving Resonant Energy Transfer in a New One-Dimensional Hybrid Material: (C9H10N2)PbCl4 , 2018, The Journal of Physical Chemistry C.
[38] Biwu Ma,et al. Blue Emitting Single Crystalline Assembly of Metal Halide Clusters. , 2018, Journal of the American Chemical Society.
[39] Y. Zhan,et al. Temperature-dependent photoluminescence spectra and decay dynamics of MAPbBr3 and MAPbI3 thin films , 2018, AIP Advances.
[40] G. Rainò,et al. Highly Emissive Self‐Trapped Excitons in Fully Inorganic Zero‐Dimensional Tin Halides , 2018, Angewandte Chemie.
[41] Sasa Wang,et al. White-light emission in a chiral one-dimensional organic-inorganic hybrid perovskite , 2018 .
[42] Minqiang Wang,et al. Luminescence and thermal behaviors of free and trapped excitons in cesium lead halide perovskite nanosheets. , 2018, Nanoscale.
[43] Biwu Ma,et al. A One-Dimensional Organic Lead Chloride Hybrid with Excitation-Dependent Broadband Emissions , 2018 .
[44] Jian Zhang,et al. High Color Rendering Index White-Light Emission from UV-Driven LEDs Based on Single Luminescent Materials: Two-Dimensional Perovskites (C6H5C2H4NH3)2PbBr xCl4- x. , 2018, ACS applied materials & interfaces.
[45] Sasa Wang,et al. Highly efficient white-light emission in a polar two-dimensional hybrid perovskite. , 2018, Chemical communications.
[46] Chunxiang Xu,et al. Crystal structure and electron transition underlying photoluminescence of methylammonium lead bromide perovskites , 2017 .
[47] M. Kanatzidis,et al. Strong Electron–Phonon Coupling and Self-Trapped Excitons in the Defect Halide Perovskites A3M2I9 (A = Cs, Rb; M = Bi, Sb) , 2017 .
[48] M. Wasielewski,et al. White-Light Emission and Structural Distortion in New Corrugated Two-Dimensional Lead Bromide Perovskites. , 2017, Journal of the American Chemical Society.
[49] Theo Siegrist,et al. One-dimensional organic lead halide perovskites with efficient bluish white-light emission , 2017, Nature Communications.
[50] J. Devreese,et al. Fröhlich polaron and bipolaron: recent developments , 2009, 0904.3682.
[51] V. Plekhanov. Lead halides: electronic properties and applications , 2004 .
[52] H. Kalt,et al. Energy-dependent Huang-Rhys factor of free excitons , 2003 .
[53] K. Potje-Kamloth. CONDUCTING POLYMER-BASED SCHOTTKY BARRIER AND HETEROJUNCTION DIODES AND THEIR SENSOR APPLICATION , 2001 .
[54] R. Steingruber,et al. Effect of random field fluctuations on excitonic transitions of individual CdSe quantum dots , 2000 .
[55] P. B. Allen,et al. Polaron and bipolaron formation in a cubic perovskite lattice , 1996, cond-mat/9607116.
[56] D. Emin,et al. Optical properties of large and small polarons and bipolarons. , 1993, Physical review. B, Condensed matter.