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      Quasi-2D Ruddlesden-Popper 할라이드 페로브스카이트의 형성 메커니즘의 이해 = Understanding on the formation mechanisms of quasi-2D Ruddlesden-Popper halide perovskites

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      https://www.riss.kr/link?id=A108294682

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      다국어 초록 (Multilingual Abstract)

      Two dimensional (2D) or quasi-2D halide perovskites have attracted intense interest in recent years for the replacement of three dimensional(3D) perovskites, owing to their stability and structural/optoelectronic tunability. However, the control of their composition and orientation is challenging when solution processed for thin films, because of the similarity in formation energy for different layer numbers. In this review, we discuss the factors affecting formation of 2D and quasi 2D perovskites, especially Ruddlesden-Popper perovskites, in solution-processed thin films. All the factors are associated with nucleation and growth kinetics, which affect their phase distribution and orientation. Furthermore, the performances of the photovoltaics and light-emitting diodes based on the controlled quasi-2D perovskites are briefly discussed.
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      Two dimensional (2D) or quasi-2D halide perovskites have attracted intense interest in recent years for the replacement of three dimensional(3D) perovskites, owing to their stability and structural/optoelectronic tunability. However, the control of th...

      Two dimensional (2D) or quasi-2D halide perovskites have attracted intense interest in recent years for the replacement of three dimensional(3D) perovskites, owing to their stability and structural/optoelectronic tunability. However, the control of their composition and orientation is challenging when solution processed for thin films, because of the similarity in formation energy for different layer numbers. In this review, we discuss the factors affecting formation of 2D and quasi 2D perovskites, especially Ruddlesden-Popper perovskites, in solution-processed thin films. All the factors are associated with nucleation and growth kinetics, which affect their phase distribution and orientation. Furthermore, the performances of the photovoltaics and light-emitting diodes based on the controlled quasi-2D perovskites are briefly discussed.

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      참고문헌 (Reference) 논문관계도

      1 D. B. Mitzi, 1-121, 1999

      2 H. L. Wells, "Über die Cäsium- und Kalium-Bleihalogenide" 3 : 195-210, 1893

      3 L. Li, "Unraveling the Growth of Hierarchical Quasi-2D/3D Perovskite and Carrier Dynamics" 9 : 1124-1132, 2018

      4 A. Z. Chen, "Understanding the Formation of Vertical Orientation in Two-dimensional Metal Halide Perovskite Thin Films" 31 : 1336-1343, 2019

      5 K. Wang, "Twodimensional halide perovskite quantum-well emitters:A critical review" 3 : e12104-, 2021

      6 M. A. Green, "The emergence of perovskite solar cells" 8 : 506-514, 2014

      7 T. Liu, "Tailoring vertical phase distribution of quasi-two-dimensional perovskite films via surface modification of hole-transporting layer" 10 : 878-, 2019

      8 L. N. Quan, "Tailoring the Energy Landscape in Quasi-2D Halide Perovskites Enables Efficient Green-Light Emission" 17 : 3701-3709, 2017

      9 D. B. Mitzi, "Synthesis, Crystal Structure, and Optical and Thermal Properties of (C4H9NH3)2MI4 (M =Ge, Sn, Pb)" 8 : 791-800, 1996

      10 T. Cheng, "Stoichiometry Control for the Tuning of Grain Passivation and Domain Distribution in Green Quasi-2D Metal Halide Perovskite Films and Light-Emitting Diodes" 30 : 2001816-, 2020

      1 D. B. Mitzi, 1-121, 1999

      2 H. L. Wells, "Über die Cäsium- und Kalium-Bleihalogenide" 3 : 195-210, 1893

      3 L. Li, "Unraveling the Growth of Hierarchical Quasi-2D/3D Perovskite and Carrier Dynamics" 9 : 1124-1132, 2018

      4 A. Z. Chen, "Understanding the Formation of Vertical Orientation in Two-dimensional Metal Halide Perovskite Thin Films" 31 : 1336-1343, 2019

      5 K. Wang, "Twodimensional halide perovskite quantum-well emitters:A critical review" 3 : e12104-, 2021

      6 M. A. Green, "The emergence of perovskite solar cells" 8 : 506-514, 2014

      7 T. Liu, "Tailoring vertical phase distribution of quasi-two-dimensional perovskite films via surface modification of hole-transporting layer" 10 : 878-, 2019

      8 L. N. Quan, "Tailoring the Energy Landscape in Quasi-2D Halide Perovskites Enables Efficient Green-Light Emission" 17 : 3701-3709, 2017

      9 D. B. Mitzi, "Synthesis, Crystal Structure, and Optical and Thermal Properties of (C4H9NH3)2MI4 (M =Ge, Sn, Pb)" 8 : 791-800, 1996

      10 T. Cheng, "Stoichiometry Control for the Tuning of Grain Passivation and Domain Distribution in Green Quasi-2D Metal Halide Perovskite Films and Light-Emitting Diodes" 30 : 2001816-, 2020

      11 Y. Han, "Significance of Ambient Temperature Control for Highly Reproducible Layered Perovskite Light-Emitting Diodes" 7 : 2489-2497, 2020

      12 J. C. Blancon, "Scaling law for excitons in 2D perovskite quantum wells" 9 : 2254-, 2018

      13 C. C. Stoumpos, "Ruddlesden–Popper Hybrid Lead Iodide Perovskite 2D Homologous Semiconductors" 28 : 2852-2867, 2016

      14 P. Vashishtha, "Recent Advancements in Near-Infrared Perovskite Light-Emitting Diodes" 2 : 3470-3490, 2020

      15 W. Xu, "Rational molecular passivation for highperformance perovskite light-emitting diodes" 13 : 418-424, 2019

      16 G. S. Kumar, "Quasi-2D perovskite emitters: a boon for efficient blue lightemitting diodes" 8 : 14334-14347, 2020

      17 L. Yang, "Pure Red Light-Emitting Diodes Based on Quantum Confined Quasi-Two-Dimensional Perovskites with Cospacer Cations" 6 : 2386-2394, 2021

      18 J. Jeong, "Pseudo-halide anion engineering for α-FAPbI3 perovskite solar cells" 592 : 381-385, 2021

      19 N. Liu, "Probing Phase Distribution in 2D Perovskites for Efficient Device Design" 12 : 3127-3133, 2020

      20 Y. Han, "Phase control of quasi-2D perovskites and improved light-emitting performance by excess organic cations and nanoparticle intercalation" 11 : 3546-3556, 2019

      21 M. Worku, "Phase Control and In Situ Passivation of Quasi-2D Metal Halide Perovskites for Spectrally Stable Blue Light-Emitting Diodes" 12 : 45056-45063, 2020

      22 K. Lin, "Perovskite light-emitting diodes with external quantum efficiency exceeding 20 per cent" 562 : 245-248, 2018

      23 M. Shao, "Over 21% Efficiency Stable 2D Perovskite Solar Cells" 34 : 2107211-, 2022

      24 A. Z. Chen, "Origin of vertical orientation in twodimensional metal halide perovskites and its effect on photovoltaic performance" 9 : 1336-, 2018

      25 A. Kojima, "Organometal Halide Perovskites as Visible-Light Sensitizers for Photovoltaic Cells" 131 : 6050-6051, 2009

      26 H. Lai, "Organic-Salt-Assisted Crystal Growth and Orientation of Quasi-2D Ruddlesden–Popper Perovskites for Solar Cells with Efficiency over 19%" 32 : 2001470-, 2020

      27 J. Liu, "Observation of Internal Photoinduced Electron and Hole Separation in Hybrid Two-Dimentional Perovskite Films" 139 : 1432-1435, 2017

      28 A. Kojima, "Novel Photoelectrochemical Cell with Mesoscopic Electrodes Sensitized by Lead-halide Compounds (5)" 352-352, 2007

      29 A. Kojima, "Novel Photoelectrochemical Cell with Mesoscopic Electrodes Sensitized by Lead-Halide Compounds (2)" 397-397, 2006

      30 Y. Nah, "Narrowing the Phase Distribution of Quasi-2D Perovskites for Stable Deep-Blue Electroluminescence" 2022

      31 L. Protesescu, "Nanocrystals of Cesium Lead Halide Perovskites (CsPbX3, X = Cl, Br, and I): Novel Optoelectronic Materials Showing Bright Emission with Wide Color Gamut" 15 : 3692-3696, 2015

      32 J. Gong, "Layered 2D Halide Perovskites beyond the Ruddlesden–Popper Phase: Tailored Interlayer Chemistries for High-Performance Solar Cells" 61 : e202112022-, 2022

      33 Z. Chu, "Large cation ethylammonium incorporated perovskite for efficient and spectra stable blue light-emitting diodes" 11 : 4165-, 2020

      34 L. Mao, "Hybrid Dion–Jacobson 2D Lead Iodide Perovskites" 140 : 3775-3783, 2018

      35 L. Zhang, "High-performance quasi-2D perovskite light-emitting diodes: from materials to devices" 10 : 61-, 2021

      36 C. Sun, "High-performance large-area quasi-2D perovskite light-emitting diodes" 12 : 2207-, 2021

      37 Z. Ren, "High-Performance Blue Perovskite Light-Emitting Diodes Enabled by Efficient Energy Transfer between Coupled Quasi-2D Perovskite Layers" 33 : 2005570-, 2021

      38 R. Arai, "Factors determining the vertical orientation of two-dimensional perovskites" 21 : 4529-4533, 2019

      39 S. Yuan, "Efficient and Spectrally Stable Blue Perovskite Light-Emitting Diodes Employing a Cationic π-Conjugated Polymer" 33 : 2103640-, 2021

      40 J. Byun, "Efficient Visible Quasi-2D Perovskite Light-Emitting Diodes" 28 : 7515-7520, 2016

      41 S. Ahmad, "Dion-Jacobson Phase 2D Layered Perovskites for Solar Cells with Ultrahigh Stability" 3 : 794-806, 2019

      42 D. B. Mitzi, "Conducting tin halides with a layered organicbased perovskite structure" 369 : 467-469, 1994

      43 D. B. Mitzi, "Conducting Layered Organic-inorganic Halides Containing <110>-Oriented Perovskite Sheets" 267 : 1473-1476, 1995

      44 R. Quintero-Bermudez, "Compositional and orientational control in metal halide perovskites of reduced dimensionality" 17 : 900-907, 2018

      45 J. Xing, "Color-stable highly luminescent skyblue perovskite light-emitting diodes" 9 : 3541-, 2018

      46 F. Yuan, "Color-pure red light-emitting diodes based on two-dimensional lead-free perovskites" 6 : 2020

      47 G. W. P. Adhyaksa, "Carrier Diffusion Lengths in Hybrid Perovskites: Processing, Composition, Aging, and Surface Passivation Effects" 28 : 5259-5263, 2016

      48 D. Weber, "CH3NH3SnBrxI3-x (x = 0-3), ein Sn(II)-System mit kubischer Perowskitstruktur" 33 : 862-865, 1978

      49 D. Weber, "CH3NH3PbX3, ein Pb(II)-System mit kubischer Perowskitstruktur" 33 : 1443-1445, 1978

      50 Z.-K. Tan, "Bright light-emitting diodes based on organometal halide perovskite" 9 : 687-692, 2014

      51 D. H. Cao, "2D Homologous Perovskites as Light-Absorbing Materials for Solar Cell Applications" 137 : 7843-7850, 2015

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