New Type of 2D Perovskites with Alternating Cations in the Interlayer Space, (C(NH2)3)(CH3NH3)nPbnI3n+1: Structure, Properties, and Photovoltaic Performance.
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Claudine Katan | Jacky Even | Tobin J. Marks | Mercouri G. Kanatzidis | Aditya D. Mohite | Ram Seshadri | Binghao Wang | Constantinos C. Stoumpos | Hsinhan Tsai | Boubacar Traore | Wanyi Nie | M. Kanatzidis | M. Képénekian | T. Marks | J. Even | C. Katan | B. Traoré | A. Mohite | R. Seshadri | C. Stoumpos | Binghao Wang | W. Nie | H. Tsai | Chan Myae Myae Soe | Mikael̈ Kepenekian | C. Soe
[1] Ishihara,et al. Dielectric confinement effect on excitons in PbI4-based layered semiconductors. , 1992, Physical review. B, Condensed matter.
[2] D. Mitzi,et al. Conducting Layered Organic-inorganic Halides Containing <110>-Oriented Perovskite Sheets , 1995, Science.
[3] Anthony L. Spek,et al. Structure validation in chemical crystallography , 2009, Acta crystallographica. Section D, Biological crystallography.
[4] M. Kanatzidis,et al. Room Temperature Phase Transition in Methylammonium Lead Iodide Perovskite Thin Films Induced by Hydrohalic Acid Additives. , 2016, ChemSusChem.
[5] Leone Spiccia,et al. A fast deposition-crystallization procedure for highly efficient lead iodide perovskite thin-film solar cells. , 2014, Angewandte Chemie.
[6] S. N. Ruddlesden,et al. New compounds of the K2NIF4 type , 1957 .
[7] Emilio Artacho,et al. LINEAR-SCALING AB-INITIO CALCULATIONS FOR LARGE AND COMPLEX SYSTEMS , 1999 .
[8] S. Tretiak,et al. Extremely efficient internal exciton dissociation through edge states in layered 2D perovskites , 2017, Science.
[9] J. Even,et al. Understanding quantum confinement of charge carriers in layered 2D hybrid perovskites. , 2014, Chemphyschem : a European journal of chemical physics and physical chemistry.
[10] D. Mitzi,et al. Synthesis and Characterization of [NH2C(I)NH2]2ASnI5 with A = Iodoformamidinium or Formamidinium: The Chemistry of Cyanamide and Tin(II) Iodide in Concentrated Aqueous Hydriodic Acid Solutions , 1998 .
[11] Mercouri G Kanatzidis,et al. Semiconducting tin and lead iodide perovskites with organic cations: phase transitions, high mobilities, and near-infrared photoluminescent properties. , 2013, Inorganic chemistry.
[12] A. Jacobson,et al. Interlayer chemistry between thick transition-metal oxide layers: synthesis and intercalation reactions of K[Ca2Nan-3NbnO3n+1] (3 .ltoreq. n .ltoreq. 7) , 1985 .
[13] Richard L. Harlow,et al. Preparation and characterization of layered lead halide compounds , 1991 .
[14] L F Gate. Comparison of the photon diffusion model and kubelka-munk equation with the exact solution of the radiative transport equation. , 1974, Applied optics.
[15] M. Wasielewski,et al. Role of Organic Counterion in Lead- and Tin-Based Two-Dimensional Semiconducting Iodide Perovskites and Application in Planar Solar Cells , 2016 .
[16] A. M. Glazer,et al. The classification of tilted octahedra in perovskites , 1972 .
[17] Ishihara,et al. Optical properties due to electronic transitions in two-dimensional semiconductors (CnH2n+1NH3)2PbI4. , 1990, Physical review. B, Condensed matter.
[18] M. Kanatzidis,et al. Structure-Band Gap Relationships in Hexagonal Polytypes and Low-Dimensional Structures of Hybrid Tin Iodide Perovskites. , 2017, Inorganic chemistry.
[19] H. Loye,et al. Recent developments in oxide ion conductors: Aurivillius phases , 1996 .
[20] Y. Kubo,et al. Crystal structure and ferroelectric properties of A Bi 2 Ta 2 O 9 ( A = Ca , Sr, and Ba) , 2000 .
[21] D. J. Clark,et al. Ruddlesden-Popper Hybrid Lead Iodide Perovskite 2D Homologous Semiconductors , 2016 .
[22] G. Papavassiliou,et al. Structural, optical and related properties of some natural three- and lower-dimensional semiconductor systems , 1995 .
[23] W. C. Hamilton. Significance tests on the crystallographic R factor , 1965 .
[24] J. Ferrer,et al. On-site approximation for spin–orbit coupling in linear combination of atomic orbitals density functional methods , 2006, cond-mat/0601093.
[25] D. Mitzi,et al. Organic-inorganic perovskites containing trivalent metal halide layers: the templating influence of the organic cation layer. , 2000, Inorganic chemistry.
[26] M. Kanatzidis,et al. The Renaissance of Halide Perovskites and Their Evolution as Emerging Semiconductors. , 2015, Accounts of chemical research.
[27] M. Képénekian,et al. Electronic surface states and dielectric self-energy profiles in colloidal nanoscale platelets of CdSe. , 2014, Physical chemistry chemical physics : PCCP.
[28] M. Szafrański,et al. Phase transitions in the layered structure of diguanidinium tetraiodoplumbate , 2000 .
[29] Thomas Steiner,et al. The Hydrogen Bond in the Solid State , 2002 .
[30] Omar K Farha,et al. 2D Homologous Perovskites as Light-Absorbing Materials for Solar Cell Applications. , 2015, Journal of the American Chemical Society.
[31] T. Mallouk,et al. Perovskites by Design: A Toolbox of Solid-State Reactions , 2002 .
[32] M. Szafrański,et al. Mechanism of Pressure-Induced Phase Transitions, Amorphization, and Absorption-Edge Shift in Photovoltaic Methylammonium Lead Iodide. , 2016, The journal of physical chemistry letters.
[33] Mineo Sato,et al. Structure determination of KLaNb2O7 exhibiting ion exchange ability by X-ray powder diffraction , 1992 .
[34] P. Lightfoot,et al. Understanding ferroelectricity in layered perovskites: new ideas and insights from theory and experiments. , 2015, Dalton transactions.
[35] P. Lightfoot,et al. A Variable-Temperature Powder Neutron Diffraction Study of Ferroelectric Bi4Ti3O12 , 1999 .
[36] I. Parkin,et al. The reaction of tin(IV) iodide with phosphines: formation of new halotin anions. , 2009, Dalton transactions.
[37] M. Képénekian,et al. Quantum confinement and dielectric profiles of colloidal nanoplatelets of halide inorganic and hybrid organic-inorganic perovskites. , 2016, Nanoscale.
[38] M. Képénekian,et al. Advances and Promises of Layered Halide Hybrid Perovskite Semiconductors. , 2016, ACS nano.
[39] Michael Daub,et al. Synthesis, Crystal Structures, Optical Properties, and Phase Transitions of the Layered Guanidinium‐Based Hybrid Perovskites [C(NH2)3]2MI4; M = Sn, Pb , 2017 .
[40] Burke,et al. Generalized Gradient Approximation Made Simple. , 1996, Physical review letters.
[41] M. Dion,et al. Nouvelles familles de phases MIMII2Nb3O10 a feuillets “perovskites” , 1981 .
[42] D. Billing,et al. Inorganic–organic hybrid materials incorporating primary cyclic ammonium cations: The lead iodide series , 2007 .
[43] D. Sánchez-Portal,et al. The SIESTA method for ab initio order-N materials simulation , 2001, cond-mat/0111138.
[44] Anthony K. Cheetham,et al. Solid-state principles applied to organic–inorganic perovskites: new tricks for an old dog , 2014 .
[45] Sang Il Seok,et al. Solvent engineering for high-performance inorganic-organic hybrid perovskite solar cells. , 2014, Nature materials.
[46] M. Kovalenko,et al. Luminescent and Photoconductive Layered Lead Halide Perovskite Compounds Comprising Mixtures of Cesium and Guanidinium Cations. , 2017, Inorganic chemistry.
[47] M. Kanatzidis,et al. Chemistry in Molten Alkali Metal Polyselenophosphate Fluxes. Influence of Flux Composition on Dimensionality. Layers and Chains in APbPSe(4), A(4)Pb(PSe(4))(2) (A = Rb, Cs), and K(4)Eu(PSe(4))(2). , 1996, Inorganic chemistry.
[48] N. Louvain,et al. Reduced Band Gap Hybrid Perovskites Resulting from Combined Hydrogen and Halogen Bonding at the Organic−Inorganic Interface , 2007 .
[49] N. Benedek. Origin of ferroelectricity in a family of polar oxides: the Dion-Jacobson phases. , 2014, Inorganic chemistry.
[50] T. Heinz,et al. Excitons in ultrathin organic-inorganic perovskite crystals , 2015 .
[51] V. Petříček,et al. Crystallographic Computing System JANA2006: General features , 2014 .
[52] M. Kanatzidis,et al. Synthesis in Molten Alkali Metal Polyselenophosphate Fluxes: A New Family of Transition Metal Selenophosphate Compounds, A2MP2Se6 (A = K, Rb, Cs; M = Mn, Fe) and A2M′2P2Se6 (A = K, Cs; M′ = Cu, Ag) , 1995 .
[53] S. N. Ruddlesden,et al. The compound Sr3Ti2O7 and its structure , 1958 .
[54] V. Gopalan,et al. Emergent Noncentrosymmetry and Piezoelectricity Driven by Oxygen Octahedral Rotations in n = 2 Dion–Jacobson Phase Layer Perovskites , 2016 .
[55] Eric T. Hoke,et al. A layered hybrid perovskite solar-cell absorber with enhanced moisture stability. , 2014, Angewandte Chemie.
[56] Sergei Tretiak,et al. High-efficiency two-dimensional Ruddlesden–Popper perovskite solar cells , 2016, Nature.
[57] Tony D. Keene,et al. Crystal structures of isotypic poly[bis(benzimidazolium) [tetra-μ-iodido-stannate(II)]] and poly[bis(5,6-difluorobenzimidazolium) [tetra-μ-iodido-stannate(II)]] , 2014, Acta crystallographica. Section E, Structure reports online.
[58] M. Kanatzidis,et al. High Members of the 2D Ruddlesden-Popper Halide Perovskites: Synthesis, Optical Properties, and Solar Cells of (CH3(CH2)3NH3)2(CH3NH3)4Pb5I16 , 2017 .
[59] N. Mercier. (HO2C(CH2)3NH3)2(CH3NH3)Pb2I7: a predicted non-centrosymmetrical structure built up from carboxylic acid supramolecular synthons and bilayer perovskite sheets , 2005 .
[60] 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.
[61] Yang Yang,et al. Guanidinium: A Route to Enhanced Carrier Lifetime and Open-Circuit Voltage in Hybrid Perovskite Solar Cells. , 2016, Nano letters.
[62] V. Gionis,et al. Preparation, structure and optical properties of [CH3SC(NH2)NH2]3PbI5, [CH3SC(NH2)NH2]4Pb2Br8and [CH3SC(NH2)NH2]3PbCl5·CH3SC(NH2)NH2Cl , 1998 .
[63] D. Rogers,et al. On the application of Hamilton's ratio test to the assignment of absolute configuration and an alternative test , 1981 .
[64] Martins,et al. Efficient pseudopotentials for plane-wave calculations. , 1991, Physical review. B, Condensed matter.
[65] H. Fukuoka,et al. Crystal Structure of a Layered Perovskite Niobate KCa2Nb3O10 , 2000 .
[66] David B. Mitzi,et al. Synthesis and Characterization of [NH2C(I):NH2]3MI5 (M = Sn, Pb): Stereochemical Activity in Divalent Tin and Lead Halides Containing Single .ltbbrac.110.rtbbrac. Perovskite Sheets , 1995 .