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Thioacetamide-ligand-mediated synthesis of CsPbBr-CsPbBr homostructured nanocrystals with enhanced stability

Cesium lead halide perovskite nanocrystals (NCs) have compelling photoelectric properties while their poor stability severely impedes their practical applications. Herein, we demonstrate novel CsPbBr 3 -CsPbBr 3 homostructured NCs induced by a thioacetamide-oleylamine (TAA-OAm) ligand system via a f...

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Published in:Journal of materials chemistry. C, Materials for optical and electronic devices Materials for optical and electronic devices, 2021-09, Vol.9 (34), p.11349-11357
Main Authors: He, Haiyang, Mei, Shiliang, Chen, Zhihao, Liu, Siyu, Wen, Zhuoqi, Cui, Zhongjie, Yang, Dan, Zhang, Wanlu, Xie, Fengxian, Yang, Bobo, Guo, Ruiqian, Xing, Guichuan
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container_issue 34
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container_title Journal of materials chemistry. C, Materials for optical and electronic devices
container_volume 9
creator He, Haiyang
Mei, Shiliang
Chen, Zhihao
Liu, Siyu
Wen, Zhuoqi
Cui, Zhongjie
Yang, Dan
Zhang, Wanlu
Xie, Fengxian
Yang, Bobo
Guo, Ruiqian
Xing, Guichuan
description Cesium lead halide perovskite nanocrystals (NCs) have compelling photoelectric properties while their poor stability severely impedes their practical applications. Herein, we demonstrate novel CsPbBr 3 -CsPbBr 3 homostructured NCs induced by a thioacetamide-oleylamine (TAA-OAm) ligand system via a facile room temperature re-precipitation method. The TAA-OAm ligand system could form long-chain N-substituted thioamides and short-chain S 2− ligands, resulting in two different growth rates of CsPbBr 3 NCs and finally forming CsPbBr 3 -CsPbBr 3 homostructured NCs. The performed structural and compositional characterizations corroborate the existence of CsPbBr 3 -CsPbBr 3 homostructured NCs. The obtained CsPbBr 3 -CsPbBr 3 homostructures exhibit green emission of 510 nm and superior stability at room temperature in air. Our study provides a new approach to improve the stability of halide perovskite NCs, which may pave the way for future optoelectronic applications. Novel CsPbBr 3 -CsPbBr 3 homostructured NCs with enhanced stability have been achieved by a thioacetamide-oleylamine (TAA-OAm) ligand system.
doi_str_mv 10.1039/d1tc02118d
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Herein, we demonstrate novel CsPbBr 3 -CsPbBr 3 homostructured NCs induced by a thioacetamide-oleylamine (TAA-OAm) ligand system via a facile room temperature re-precipitation method. The TAA-OAm ligand system could form long-chain N-substituted thioamides and short-chain S 2− ligands, resulting in two different growth rates of CsPbBr 3 NCs and finally forming CsPbBr 3 -CsPbBr 3 homostructured NCs. The performed structural and compositional characterizations corroborate the existence of CsPbBr 3 -CsPbBr 3 homostructured NCs. The obtained CsPbBr 3 -CsPbBr 3 homostructures exhibit green emission of 510 nm and superior stability at room temperature in air. Our study provides a new approach to improve the stability of halide perovskite NCs, which may pave the way for future optoelectronic applications. 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title Thioacetamide-ligand-mediated synthesis of CsPbBr-CsPbBr homostructured nanocrystals with enhanced stability
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