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Nanolaminated Ternary Transition Metal Carbide (MAX Phase)-Derived Core-Shell Structure Electrocatalysts for Hydrogen Evolution and Oxygen Evolution Reactions in Alkaline Electrolytes

Li, Youbing (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Zhu, Shuairu (author)
Tianjin Univ, Peoples R China
Wu, Erxiao (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
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Ding, Haoming (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Lu, Jun (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska fakulteten
Mu, Xulin (author)
Beijing Univ Technol, Peoples R China
Chen, Lu (author)
Chinese Acad Sci, Peoples R China; Qianwan Institute of CNiTECH, Peoples R China
Zhang, Yiming (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Palisaitis, Justinas (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska fakulteten
Chen, Ke (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Li, Mian (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Yan, Pengfei (author)
Beijing Univ Technol, Peoples R China
Persson, Per O Å (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska fakulteten
Hultman, Lars (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska fakulteten
Eklund, Per (author)
Linköpings universitet,Tunnfilmsfysik,Tekniska fakulteten
Du, Shiyu (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Kuang, Yongbo (author)
Chinese Acad Sci, Peoples R China; Univ Chinese Acad Sci, Peoples R China
Chai, Zhifang (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
Huang, Qing (author)
Chinese Acad Sci, Peoples R China; Qianwan Inst CNiTECH, Peoples R China
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 (creator_code:org_t)
2023-01-10
2023
English.
In: The Journal of Physical Chemistry Letters. - : AMER CHEMICAL SOC. - 1948-7185. ; 14:2, s. 481-488
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The development of abundant, cheap, and highly active catalysts for the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) is important for hydrogen production. Nanolaminate ternary transition metal carbides (MAX phases) and their derived two-dimensional transition metal carbides (MXenes) have attracted considerable interest for electrocatalyst applications. Herein, four new MAX@MXene core-shell structures (Ta2CoC@ Ta2CTx, Ta2NiC@Ta2CTx, Nb2CoC@Nb2CTx, and Nb2NiC@Nb2CTx), in which the core region is Co/Ni-MAX phases while the edge region is MXenes, have been prepared. Under alkaline electrolyte conditions, the Ta2CoC@Ta2CTx core-shell structure showed an overpotential of 239 mV and excellent stability during the HER with MXenes as the active sites. For the OER, the Ta2CoC@Ta2CTx core- shell structure showed an overpotential of 373 mV and a small Tafel plot (56 mV dec-1), which maintained a bulk crystalline structure and generated Co-based oxyhydroxides that formed by surface reconstruction as active sites. Considering rich chemical compositions and structures of MAX phases, this work provides a new strategy for designing multifunctional electrocatalysts and also paves the way for further development of MAX phase-based materials for clean energy applications.

Subject headings

NATURVETENSKAP  -- Kemi -- Materialkemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences -- Materials Chemistry (hsv//eng)

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