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Cu 2 ZnSnS 4 –CdS heterostructured nanocrystals for enhanced photocatalytic hydrogen production

The CZTS–CdS heterostructured nanocrystals were designed and synthesized via a wet chemistry approach for the first time. The p–n heterojunction between CZTS core and CdS layer facilitates a effective charge separation and a rapid charge transfer. As expected, these CZTS–CdS-heterostructured nanocry...

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Published in:Catalysis science & technology 2017, Vol.7 (18), p.3980-3984
Main Authors: Yuan, Meng, Wang, Ji-Lei, Zhou, Wen-Hui, Chang, Zhi-Xian, Kou, Dong-Xing, Zhou, Zheng-Ji, Tian, Qing-Wen, Meng, Yue-Na, Zhou, Yan-Mei, Wu, Si-Xin
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cited_by cdi_FETCH-LOGICAL-c76D-975bf8443bfa4943839fca8bdb6dc6edb3ca4531273eb8a5d936c4394de556b03
cites cdi_FETCH-LOGICAL-c76D-975bf8443bfa4943839fca8bdb6dc6edb3ca4531273eb8a5d936c4394de556b03
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container_title Catalysis science & technology
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creator Yuan, Meng
Wang, Ji-Lei
Zhou, Wen-Hui
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Zhou, Yan-Mei
Wu, Si-Xin
description The CZTS–CdS heterostructured nanocrystals were designed and synthesized via a wet chemistry approach for the first time. The p–n heterojunction between CZTS core and CdS layer facilitates a effective charge separation and a rapid charge transfer. As expected, these CZTS–CdS-heterostructured nanocrystals show enhanced photocatalytic activities for hydrogen evolution when compared with CZTS and CdS.
doi_str_mv 10.1039/C7CY01360D
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title Cu 2 ZnSnS 4 –CdS heterostructured nanocrystals for enhanced photocatalytic hydrogen production
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