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In situ construction of Co-Ni catalysts on nickel foam for electrocatalytic 5-Hydroxymethylfurfural conversion in Alkaline Media
In situ construction of Co-Ni catalysts on nickel foam for electrocatalytic 5-Hydroxymethylfurfural conversion in Alkaline Media

 Xiaojing Yang*, Zhuofan Wu, Hengjia Jia, Yaning Song, Zhao Ran, Zhao Xv, Yanjuan Yu, Weixuan Nie*, submitted

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26
2025-02
Heterogenous Electrocatalytic CO₂ Reduction by Supported Molecular Catalysts Well Dispersed on Electrode Surface
Heterogenous Electrocatalytic CO₂ Reduction by Supported Molecular Catalysts Well Dispersed on Electrode Surface

Ke Ma†, Shiyu Zhang† and Weixuan Nie*, ChemElectroChem, Submitted

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24
2025-02
Cooperative Effects Associated with High Electrolyte Concentrations in Driving the Conversion of CO₂ to C₂H₄ on Copper
Cooperative Effects Associated with High Electrolyte Concentrations in Driving the Conversion of CO₂ to C₂H₄ on Copper

Shaoyang Lin,† Yuval Fishler,† Soonho Kwon, † Annette Böhme, Weixuan Nie, Moon Young Yang, Jesse Matthews, Zachery W. B. Iton, Brian C. Lee, Thomas Jaramillo, Harry A. Atwater, William A. Goddard III*, Wilson A. Smith*, Kimberly A. See*, Chem. Catalysis, 2025, accepted.

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06
2024-12
Bifunctional RhIII-complex catalyzed CO₂ reduction and NADH regeneration for direct bioelectrochemical synthesis of C₃ and C₄
Bifunctional RhIII-complex catalyzed CO₂ reduction and NADH regeneration for direct bioelectrochemical synthesis of C₃ and C₄

Hailong Li, Yizhou Wu, Yuxuan Wang, Kai Zhang, Jin Zhu, Yuan Ji, Tao Gu, Weixuan Nie, Licheng Sun*, and Yajie Wang*, ACS Catal. 14, 22, 17201-17208.

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07
2024-11
Electrochemical CO₂ Reduction in Acidic Electrolytes: Spectroscopic Evidence for Local pH Gradients
Electrochemical CO₂ Reduction in Acidic Electrolytes: Spectroscopic Evidence for Local pH Gradients

Madeline H. Hicks, † Weixuan Nie,† Annette E. Boehme, Harry A. Atwater*, Theodor Agapie* and Jonas C. Peters*, J. Am. Chem. Soc., 2024, 36, 25282-25289.

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31
2024-08
Co-Co and Co-Zn Bimetallic Complexes for Electrocatalytic CO₂ Reduction: The Role of Interrelated Intramolecular Effects on Activity
Co-Co and Co-Zn Bimetallic Complexes for Electrocatalytic CO₂ Reduction: The Role of Interrelated Intramolecular Effects on Activity

Jukai Zhou†, Weixuan Nie†, Drew E. Tarnopol, and Charles C.L. McCrory*, Chem. Catalysis, 2024, 4, 101006.

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20
2024-06
Polymer-encapsulated metal complex catalysts: An emerging and efficient platform for electrochemical CO₂ reduction
Polymer-encapsulated metal complex catalysts: An emerging and efficient platform for electrochemical CO₂ reduction

Yingshuo Liu, Shuaishuai Lyu, Fuli Wen, Weixuan Nie* and Shuqing Wang*, J. Mater. Sci. Technol., 2024, 172, 33-50.

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10
2024-02