Literature DB >> 26457861

Determination of Thermal Expansion Coefficients and Locating the Temperature-Induced Phase Transition in Methylammonium Lead Perovskites Using X-ray Diffraction.

T Jesper Jacobsson1, L Josef Schwan2, Mikael Ottosson2, Anders Hagfeldt1,2, Tomas Edvinsson2.   

Abstract

Lead halogen perovskites, and particularly methylammonium lead iodine, CH3NH3PbI3, have recently attracted considerable interest as alternative solar cell materials, and record solar cell efficiencies have now surpassed 20%. Concerns have, however, been raised about the thermal stability of methylammonium lead iodine, and a phase transformation from a tetragonal to a cubic phase has been reported at elevated temperature. Here, this phase transition has been investigated in detail using temperature-dependent X-ray diffraction measurements. The phase transformation is pinpointed to 54 °C, which is well within the normal operating range of a typical solar cell. The cell parameters were extracted as a function of the temperature, from which the thermal expansion coefficient was calculated. The latter was found to be rather high (αv = 1.57 × 10(-4) K(-1)) for both the tetragonal and cubic phases. This is 6 times higher than the thermal expansion coefficient for soda lime glass and CIGS and 11 times larger than that of CdTe. This could potentially be of importance for the mechanical stability of perovskite solar cells in the temperature cycling experienced under normal day-night operation. The experimental knowledge of the thermal expansion coefficients and precise determination of the cell parameters can potentially also be valuable while conducting density functional theory simulations on these systems in order to deliver more accurate band structure calculations.

Entities:  

Year:  2015        PMID: 26457861     DOI: 10.1021/acs.inorgchem.5b01481

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  11 in total

1.  Optical analysis of CH3NH3Sn x Pb1-x I3 absorbers: a roadmap for perovskite-on-perovskite tandem solar cells.

Authors:  Miguel Anaya; Juan P Correa-Baena; Gabriel Lozano; Michael Saliba; Pablo Anguita; Bart Roose; Antonio Abate; Ullrich Steiner; Michael Grätzel; Mauricio E Calvo; Anders Hagfeldt; Hernán Míguez
Journal:  J Mater Chem A Mater       Date:  2016-06-29

2.  Light-induced picosecond rotational disordering of the inorganic sublattice in hybrid perovskites.

Authors:  Xiaoxi Wu; Liang Z Tan; Xiaozhe Shen; Te Hu; Kiyoshi Miyata; M Tuan Trinh; Renkai Li; Ryan Coffee; Shi Liu; David A Egger; Igor Makasyuk; Qiang Zheng; Alan Fry; Joseph S Robinson; Matthew D Smith; Burak Guzelturk; Hemamala I Karunadasa; Xijie Wang; Xiaoyang Zhu; Leeor Kronik; Andrew M Rappe; Aaron M Lindenberg
Journal:  Sci Adv       Date:  2017-07-26       Impact factor: 14.136

3.  Revealing the detailed path of sequential deposition for metal halide perovskite formation.

Authors:  Amita Ummadisingu; Michael Grätzel
Journal:  Sci Adv       Date:  2018-02-02       Impact factor: 14.136

4.  Low-Temperature Plasma-Assisted Atomic-Layer-Deposited SnO2 as an Electron Transport Layer in Planar Perovskite Solar Cells.

Authors:  Yinghuan Kuang; Valerio Zardetto; Roderick van Gils; Saurabh Karwal; Dibyashree Koushik; Marcel A Verheijen; Lachlan E Black; Christ Weijtens; Sjoerd Veenstra; Ronn Andriessen; Wilhelmus M M Kessels; Mariadriana Creatore
Journal:  ACS Appl Mater Interfaces       Date:  2018-08-28       Impact factor: 9.229

5.  Toward Highly Thermal Stable Perovskite Solar Cells by Rational Design of Interfacial Layer.

Authors:  Weitao Yang; Danming Zhong; Minmin Shi; Shaoxing Qu; Hongzheng Chen
Journal:  iScience       Date:  2019-11-09

6.  Regulating strain in perovskite thin films through charge-transport layers.

Authors:  Ding-Jiang Xue; Yi Hou; Shun-Chang Liu; Mingyang Wei; Bin Chen; Ziru Huang; Zongbao Li; Bin Sun; Andrew H Proppe; Yitong Dong; Makhsud I Saidaminov; Shana O Kelley; Jin-Song Hu; Edward H Sargent
Journal:  Nat Commun       Date:  2020-03-23       Impact factor: 14.919

Review 7.  Dynamic structural property of organic-inorganic metal halide perovskite.

Authors:  Jin-Wook Lee; Seongrok Seo; Pronoy Nandi; Hyun Suk Jung; Nam-Gyu Park; Hyunjung Shin
Journal:  iScience       Date:  2020-12-24

8.  Triple-cation perovskite solar cells fabricated by a hybrid PVD/blade coating process using green solvents.

Authors:  Severin Siegrist; Shih-Chi Yang; Evgeniia Gilshtein; Xiaoxiao Sun; Ayodhya N Tiwari; Fan Fu
Journal:  J Mater Chem A Mater       Date:  2021-10-18

9.  Strained hybrid perovskite thin films and their impact on the intrinsic stability of perovskite solar cells.

Authors:  Jingjing Zhao; Yehao Deng; Haotong Wei; Xiaopeng Zheng; Zhenhua Yu; Yuchuan Shao; Jeffrey E Shield; Jinsong Huang
Journal:  Sci Adv       Date:  2017-11-17       Impact factor: 14.136

10.  CH3NH3PbI3 perovskites: Ferroelasticity revealed.

Authors:  Evgheni Strelcov; Qingfeng Dong; Tao Li; Jungseok Chae; Yuchuan Shao; Yehao Deng; Alexei Gruverman; Jinsong Huang; Andrea Centrone
Journal:  Sci Adv       Date:  2017-04-14       Impact factor: 14.136

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