The effect of water on colloidal quantum dot solar cells

Surface of colloidal quantum dot is sensitive to water, and the interaction could potentially alter its chemical environments. Here, Shi et al. investigate how the interaction effects the nanostructures and carrier dynamic in CQDs, and subsequently introduce meniscus-guided coating technique to miti...

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Autores principales: Guozheng Shi, Haibin Wang, Yaohong Zhang, Chen Cheng, Tianshu Zhai, Botong Chen, Xinyi Liu, Ryota Jono, Xinnan Mao, Yang Liu, Xuliang Zhang, Xufeng Ling, Yannan Zhang, Xing Meng, Yifan Chen, Steffen Duhm, Liang Zhang, Tao Li, Lu Wang, Shiyun Xiong, Takashi Sagawa, Takaya Kubo, Hiroshi Segawa, Qing Shen, Zeke Liu, Wanli Ma
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/36bbcebf24df437eaaa73d5855769252
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spelling oai:doaj.org-article:36bbcebf24df437eaaa73d58557692522021-12-02T16:26:40ZThe effect of water on colloidal quantum dot solar cells10.1038/s41467-021-24614-72041-1723https://doaj.org/article/36bbcebf24df437eaaa73d58557692522021-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24614-7https://doaj.org/toc/2041-1723Surface of colloidal quantum dot is sensitive to water, and the interaction could potentially alter its chemical environments. Here, Shi et al. investigate how the interaction effects the nanostructures and carrier dynamic in CQDs, and subsequently introduce meniscus-guided coating technique to mitigate CQD fusion triggered by water adsorption.Guozheng ShiHaibin WangYaohong ZhangChen ChengTianshu ZhaiBotong ChenXinyi LiuRyota JonoXinnan MaoYang LiuXuliang ZhangXufeng LingYannan ZhangXing MengYifan ChenSteffen DuhmLiang ZhangTao LiLu WangShiyun XiongTakashi SagawaTakaya KuboHiroshi SegawaQing ShenZeke LiuWanli MaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Guozheng Shi
Haibin Wang
Yaohong Zhang
Chen Cheng
Tianshu Zhai
Botong Chen
Xinyi Liu
Ryota Jono
Xinnan Mao
Yang Liu
Xuliang Zhang
Xufeng Ling
Yannan Zhang
Xing Meng
Yifan Chen
Steffen Duhm
Liang Zhang
Tao Li
Lu Wang
Shiyun Xiong
Takashi Sagawa
Takaya Kubo
Hiroshi Segawa
Qing Shen
Zeke Liu
Wanli Ma
The effect of water on colloidal quantum dot solar cells
description Surface of colloidal quantum dot is sensitive to water, and the interaction could potentially alter its chemical environments. Here, Shi et al. investigate how the interaction effects the nanostructures and carrier dynamic in CQDs, and subsequently introduce meniscus-guided coating technique to mitigate CQD fusion triggered by water adsorption.
format article
author Guozheng Shi
Haibin Wang
Yaohong Zhang
Chen Cheng
Tianshu Zhai
Botong Chen
Xinyi Liu
Ryota Jono
Xinnan Mao
Yang Liu
Xuliang Zhang
Xufeng Ling
Yannan Zhang
Xing Meng
Yifan Chen
Steffen Duhm
Liang Zhang
Tao Li
Lu Wang
Shiyun Xiong
Takashi Sagawa
Takaya Kubo
Hiroshi Segawa
Qing Shen
Zeke Liu
Wanli Ma
author_facet Guozheng Shi
Haibin Wang
Yaohong Zhang
Chen Cheng
Tianshu Zhai
Botong Chen
Xinyi Liu
Ryota Jono
Xinnan Mao
Yang Liu
Xuliang Zhang
Xufeng Ling
Yannan Zhang
Xing Meng
Yifan Chen
Steffen Duhm
Liang Zhang
Tao Li
Lu Wang
Shiyun Xiong
Takashi Sagawa
Takaya Kubo
Hiroshi Segawa
Qing Shen
Zeke Liu
Wanli Ma
author_sort Guozheng Shi
title The effect of water on colloidal quantum dot solar cells
title_short The effect of water on colloidal quantum dot solar cells
title_full The effect of water on colloidal quantum dot solar cells
title_fullStr The effect of water on colloidal quantum dot solar cells
title_full_unstemmed The effect of water on colloidal quantum dot solar cells
title_sort effect of water on colloidal quantum dot solar cells
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/36bbcebf24df437eaaa73d5855769252
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