低浓度Mn掺杂CsPbBr3纳米晶体的绿色发射和光电性能

IF 0.3 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Bhardwaj, A. Kushwaha
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引用次数: 0

摘要

铯溴化铅(CsPbBr3)钙钛矿纳米晶体的掺杂提供了对光学和光电学性质的有效控制,从而为几种新的应用提供了可能性。本文以氯化锰(MnCl2)为前驱体,在钙钛矿晶格中掺杂低浓度锰(Mn),合成了CsPbBr3钙钛矿纳米晶体。x射线衍射峰向更高角度移动表明Mn作为掺杂剂存在于CsPbBr3晶格内。当MnCl2前驱体浓度从5 mmol增加到10 mmol时,CsPbBr3晶体中Mn的原子百分率(At.%)从0.3增加到0.5%。在CsPbBr3中,低浓度Mn掺杂(0.3 At.%)可增强绿色发射,高浓度Mn掺杂(0.5 At.%)可增强蓝色发射。随着锰浓度的增加,CsPbBr3纳米晶的带隙从2.31 eV增加到2.53 eV。在低浓度(0.3 At.%) Mn掺杂的情况下,CsPbBr3纳米晶体的暗电导率和光电导率得到了改善。发现Mn掺杂CsPbBr3晶体薄膜的光电流与暗电流之比为~ 182,而未掺杂CsPbBr3晶体薄膜的光电流与暗电流之比为~ 101。低浓度的Mn掺杂提高了CsPbBr3钙钛矿纳米晶体的整体电导率和光电导率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green emission and photoelectrical properties of low concentration Mn doped CsPbBr3 nanocrystals
Doping of Cesium Lead Bromide (CsPbBr3) perovskite nanocrystals offers the effective control on the optical and optoelectrical properties leading to possibilities for several new applications. Herein, CsPbBr3 perovskite nanocrystals are synthesised with low concentration of Manganese (Mn) doping into perovskite lattice using Manganese chloride (MnCl2) precursor. A shift in x-ray diffraction peaks towards higher angles indicates that Mn as a dopant is present inside CsPbBr3 lattice. The change in the MnCl2 precursor concentration from 5 to 10 mmol, results an increment in the atomic percentage (At.%) of Mn from 0.3 to 0.5% into the CsPbBr3 crystal. Low concentration of Mn doping (0.3 At.%) in CsPbBr3 results in enhancement of green emission, while higher Mn doping (0.5 At.%) results in blue emission. The band gap of CsPbBr3 nanocrystals increases from 2.31 eV to 2.53 eV with increase in the concentration of manganese. The dark and photoelectrical conductivity of CsPbBr3 nanocrystals is improved in case of low concentration (0.3 At.%) of Mn doping. The ratio of photocurrent vs. dark current is found to be ∼182 in Mn doped CsPbBr3 crystals film as compared to ∼101 for undoped CsPbBr3 crystals film. The low concentration of Mn doping improves the overall electrical and photoelectrical conductivity of CsPbBr3 perovskite nanocrystals.
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来源期刊
Nanomaterials and Energy
Nanomaterials and Energy MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
2.10
自引率
0.00%
发文量
2
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