Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction

As a source of clean energy, a reliable hydrogen evolution reaction (HER) requires robust and highly efficient catalysts. Here, by combining chemical vapor transport and Li-intercalation, we have prepared a series of 1T′-phase ReS2xSe2(1-x) (x = 0–1) nanodots to achieve high-performance HER in acid...

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Main Authors: Lai, Zhuangchai, Chaturvedi, Apoorva, Wang, Yun, Tran, Thu Ha, Liu, Xiaozhi, Tan, Chaoliang, Luo, Zhimin, Chen, Bo, Huang, Ying, Nam, Gwang-Hyeon, Zhang, Zhicheng, Chen, Ye, Hu, Zhaoning, Li, Bing, Xi, Shibo, Zhang, Qinghua, Zong, Yun, Gu, Lin, Kloc, Christian, Du, Yonghua, Zhang, Hua
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/137695
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1376952020-06-01T10:21:19Z Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction Lai, Zhuangchai Chaturvedi, Apoorva Wang, Yun Tran, Thu Ha Liu, Xiaozhi Tan, Chaoliang Luo, Zhimin Chen, Bo Huang, Ying Nam, Gwang-Hyeon Zhang, Zhicheng Chen, Ye Hu, Zhaoning Li, Bing Xi, Shibo Zhang, Qinghua Zong, Yun Gu, Lin Kloc, Christian Du, Yonghua Zhang, Hua School of Materials Science & Engineering Center for Programmable Materials Engineering::Materials Crystals Crystal Structure As a source of clean energy, a reliable hydrogen evolution reaction (HER) requires robust and highly efficient catalysts. Here, by combining chemical vapor transport and Li-intercalation, we have prepared a series of 1T′-phase ReS2xSe2(1-x) (x = 0–1) nanodots to achieve high-performance HER in acid medium. Among them, the 1T′-phase ReSSe nanodot exhibits the highest hydrogen evolution activity, with a Tafel slope of 50.1 mV dec–1 and a low overpotential of 84 mV at current density of 10 mA cm–2. The excellent hydrogen evolution activity is attributed to the optimal hydrogen absorption energy of the active site induced by the asymmetric S vacancy in the highly asymmetric 1T′ crystal structure. MOE (Min. of Education, S’pore) 2020-04-09T02:13:45Z 2020-04-09T02:13:45Z 2018 Journal Article Lai, Z., Chaturvedi, A., Wang, Y., Tran, T. H., Liu, X., Tan, C., . . . Zhang, Z. (2018). Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction. Journal of the American Chemical Society, 140(27), 8563-8568. doi:10.1021/jacs.8b04513 0002-7863 https://hdl.handle.net/10356/137695 10.1021/jacs.8b04513 29870234 2-s2.0-85048215982 27 140 8563 8568 en Journal of the American Chemical Society © 2018 American Chemical Society. All rights reserved.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Materials
Crystals
Crystal Structure
spellingShingle Engineering::Materials
Crystals
Crystal Structure
Lai, Zhuangchai
Chaturvedi, Apoorva
Wang, Yun
Tran, Thu Ha
Liu, Xiaozhi
Tan, Chaoliang
Luo, Zhimin
Chen, Bo
Huang, Ying
Nam, Gwang-Hyeon
Zhang, Zhicheng
Chen, Ye
Hu, Zhaoning
Li, Bing
Xi, Shibo
Zhang, Qinghua
Zong, Yun
Gu, Lin
Kloc, Christian
Du, Yonghua
Zhang, Hua
Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
description As a source of clean energy, a reliable hydrogen evolution reaction (HER) requires robust and highly efficient catalysts. Here, by combining chemical vapor transport and Li-intercalation, we have prepared a series of 1T′-phase ReS2xSe2(1-x) (x = 0–1) nanodots to achieve high-performance HER in acid medium. Among them, the 1T′-phase ReSSe nanodot exhibits the highest hydrogen evolution activity, with a Tafel slope of 50.1 mV dec–1 and a low overpotential of 84 mV at current density of 10 mA cm–2. The excellent hydrogen evolution activity is attributed to the optimal hydrogen absorption energy of the active site induced by the asymmetric S vacancy in the highly asymmetric 1T′ crystal structure.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Lai, Zhuangchai
Chaturvedi, Apoorva
Wang, Yun
Tran, Thu Ha
Liu, Xiaozhi
Tan, Chaoliang
Luo, Zhimin
Chen, Bo
Huang, Ying
Nam, Gwang-Hyeon
Zhang, Zhicheng
Chen, Ye
Hu, Zhaoning
Li, Bing
Xi, Shibo
Zhang, Qinghua
Zong, Yun
Gu, Lin
Kloc, Christian
Du, Yonghua
Zhang, Hua
format Article
author Lai, Zhuangchai
Chaturvedi, Apoorva
Wang, Yun
Tran, Thu Ha
Liu, Xiaozhi
Tan, Chaoliang
Luo, Zhimin
Chen, Bo
Huang, Ying
Nam, Gwang-Hyeon
Zhang, Zhicheng
Chen, Ye
Hu, Zhaoning
Li, Bing
Xi, Shibo
Zhang, Qinghua
Zong, Yun
Gu, Lin
Kloc, Christian
Du, Yonghua
Zhang, Hua
author_sort Lai, Zhuangchai
title Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
title_short Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
title_full Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
title_fullStr Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
title_full_unstemmed Preparation of 1T′-phase ReS2xSe2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
title_sort preparation of 1t′-phase res2xse2(1‑x) (x = 0−1) nanodots for highly efficient electrocatalytic hydrogen evolution reaction
publishDate 2020
url https://hdl.handle.net/10356/137695
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