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Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior

Organic–inorganic hybrid-based lead perovskites show inherent and unavoidable problems such as structural instability and toxicity. Therefore, developing low-cost and environment-friendly organic–inorganic hybrid materials is extremely urgent. In this study, we prepared earth-abundant and environmen...

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Autores principales: Yin, Jie, Shi, Shaozhen, Wei, Jiazhen, He, Guohang, Fan, Lin, Guo, Junxue, Zhang, Kaixuan, Xu, Wenli, Yuan, Cang, Wang, Yunying, Wang, Liwen, Pu, Xipeng, Li, Wenzhi, Zhang, Dafeng, Wang, Jie, Ren, Xiaozhen, Ma, Huiyan, Shao, Xin, Zhou, Huawei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080726/
https://www.ncbi.nlm.nih.gov/pubmed/35541684
http://dx.doi.org/10.1039/c8ra03498b
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author Yin, Jie
Shi, Shaozhen
Wei, Jiazhen
He, Guohang
Fan, Lin
Guo, Junxue
Zhang, Kaixuan
Xu, Wenli
Yuan, Cang
Wang, Yunying
Wang, Liwen
Pu, Xipeng
Li, Wenzhi
Zhang, Dafeng
Wang, Jie
Ren, Xiaozhen
Ma, Huiyan
Shao, Xin
Zhou, Huawei
author_facet Yin, Jie
Shi, Shaozhen
Wei, Jiazhen
He, Guohang
Fan, Lin
Guo, Junxue
Zhang, Kaixuan
Xu, Wenli
Yuan, Cang
Wang, Yunying
Wang, Liwen
Pu, Xipeng
Li, Wenzhi
Zhang, Dafeng
Wang, Jie
Ren, Xiaozhen
Ma, Huiyan
Shao, Xin
Zhou, Huawei
author_sort Yin, Jie
collection PubMed
description Organic–inorganic hybrid-based lead perovskites show inherent and unavoidable problems such as structural instability and toxicity. Therefore, developing low-cost and environment-friendly organic–inorganic hybrid materials is extremely urgent. In this study, we prepared earth-abundant and environment-friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4) (MAFeCl(4)) for optoelectronic applications. The single crystal diffraction data are assigned to the orthorhombic MAFeCl(4) (Pnma space group), with parameters a = 11.453 (5) Å, b = 7.332 (3) Å, c = 10.107 (5) Å, α = 90.000, β = 90.000, and γ = 90.000. The band gap of MAFeCl(4) is approximately 2.15 eV. Moreover, three-emission luminescence (398, 432 and 664 nm) was observed. To the best of our knowledge, this is the first study involving the investigation of the structure, adsorption properties and photoelectric behavior of MAFeCl(4). A low cost photodetector based on the MAFeCl(4) thin film is efficient under different monochromatic light from 330 nm to 410 nm with different chopping frequencies (1.33 Hz to 40 Hz). The photoelectric conversion efficiency based on FTO/TiO(2)/MAFeCl(4)/carbon electrode device reaches 0.054% (V(oc) = 319 mV, J(sc) = 0.375 mA cm(−2), and fill factor = 0.45) under AM1.5, 100 mW cm(−2) simulated illumination. Our findings will attract attention from the magnetic, piezoelectric and photoelectronic research fields.
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spelling pubmed-90807262022-05-09 Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior Yin, Jie Shi, Shaozhen Wei, Jiazhen He, Guohang Fan, Lin Guo, Junxue Zhang, Kaixuan Xu, Wenli Yuan, Cang Wang, Yunying Wang, Liwen Pu, Xipeng Li, Wenzhi Zhang, Dafeng Wang, Jie Ren, Xiaozhen Ma, Huiyan Shao, Xin Zhou, Huawei RSC Adv Chemistry Organic–inorganic hybrid-based lead perovskites show inherent and unavoidable problems such as structural instability and toxicity. Therefore, developing low-cost and environment-friendly organic–inorganic hybrid materials is extremely urgent. In this study, we prepared earth-abundant and environment-friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4) (MAFeCl(4)) for optoelectronic applications. The single crystal diffraction data are assigned to the orthorhombic MAFeCl(4) (Pnma space group), with parameters a = 11.453 (5) Å, b = 7.332 (3) Å, c = 10.107 (5) Å, α = 90.000, β = 90.000, and γ = 90.000. The band gap of MAFeCl(4) is approximately 2.15 eV. Moreover, three-emission luminescence (398, 432 and 664 nm) was observed. To the best of our knowledge, this is the first study involving the investigation of the structure, adsorption properties and photoelectric behavior of MAFeCl(4). A low cost photodetector based on the MAFeCl(4) thin film is efficient under different monochromatic light from 330 nm to 410 nm with different chopping frequencies (1.33 Hz to 40 Hz). The photoelectric conversion efficiency based on FTO/TiO(2)/MAFeCl(4)/carbon electrode device reaches 0.054% (V(oc) = 319 mV, J(sc) = 0.375 mA cm(−2), and fill factor = 0.45) under AM1.5, 100 mW cm(−2) simulated illumination. Our findings will attract attention from the magnetic, piezoelectric and photoelectronic research fields. The Royal Society of Chemistry 2018-05-30 /pmc/articles/PMC9080726/ /pubmed/35541684 http://dx.doi.org/10.1039/c8ra03498b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yin, Jie
Shi, Shaozhen
Wei, Jiazhen
He, Guohang
Fan, Lin
Guo, Junxue
Zhang, Kaixuan
Xu, Wenli
Yuan, Cang
Wang, Yunying
Wang, Liwen
Pu, Xipeng
Li, Wenzhi
Zhang, Dafeng
Wang, Jie
Ren, Xiaozhen
Ma, Huiyan
Shao, Xin
Zhou, Huawei
Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title_full Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title_fullStr Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title_full_unstemmed Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title_short Earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt CH(3)NH(3)FeCl(4): structure, adsorption properties and photoelectric behavior
title_sort earth-abundant and environment friendly organic–inorganic hybrid tetrachloroferrate salt ch(3)nh(3)fecl(4): structure, adsorption properties and photoelectric behavior
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080726/
https://www.ncbi.nlm.nih.gov/pubmed/35541684
http://dx.doi.org/10.1039/c8ra03498b
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