Formation of 2D-Layered (CH3NH3)3Sb2I9 Lead-Free Perovskite Phase from CH3NH3I and SbSI: Photodetection Activity in Carbon Based Lateral Devices

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作者
Amit Kumar Pathak
Sudip K. Batabyal
机构
[1] Amrita Vishwa Vidyapeetham,Amrita Centre for Industrial Research & Innovation (ACIRI), Amrita School of Engineering
[2] ,Department of Science, Amrita School of Engineering
[3] Amrita Vishwa Vidyapeetham,undefined
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关键词
Lead-free perovskite; methylammonium antimony sulfur diiodide; imidazolium antimony iodide; methylammonium antimony iodide; antimony sulfoiodide; antimony sulfide; carbon; lateral device;
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摘要
The reaction between methylammonium iodide (MAI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MAI}}$$\end{document}(MA=CH3NH3+)\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$({\text{MA}} = {\text{CH}}_{3} {\text{NH}}_{3}^{ + } )$$\end{document}) and antimony sulfoiodide (SbSI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{SbSI}}$$\end{document}) in reflux conditions results in the formation of a 2D-layered perovskite phase, methylammonium antimony iodide (MA3Sb2I9\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MA}}_{3} {\text{Sb}}_{2} I_{9}$$\end{document}). X-ray diffraction XRD\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\left( {{\text{XRD}}} \right)$$\end{document} and UV-Vis\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{UV}} - {\text{Vis}}$$\end{document} spectroscopy confirm that in reflux conditions, the reaction between MAI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MAI}}$$\end{document} and SbSI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{SbSI}}$$\end{document} in a 2:7 molar ratio (MR(2:7)) obtains the 2D\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$2D$$\end{document}-layered MA3Sb2I9\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MA}}_{3} {\text{Sb}}_{2} I_{9}$$\end{document} lead-free perovskite phase as the main product. The MR(2:7) MAI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{~MAI}}$$\end{document}-SbSI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{SbSI}}$$\end{document} reaction product in a carbon matrix in lateral electrode configuration exhibits a relatively high difference between light and dark current Ilight-Idark\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$\left( {I_{{{\text{light}}}} - I_{{{\text{dark}}}} } \right)$$\end{document} of ~ 55 µA at 1 V applied bias voltage. The better photoresponse for the MR(2:7) MAI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MAI}}$$\end{document}-SbSI\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{SbSI}}$$\end{document} reaction product in the presented device configuration indicates that the lead-free 2D-layered perovskite structure (MA3Sb2I9\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${\text{MA}}_{3} {\text{Sb}}_{2} I_{9}$$\end{document}) found assistance from the carbon materials for improved photogenerated charge carrier harvesting.
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页码:5989 / 5994
页数:5
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