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用于增强CO电还原的具有不饱和Ni-N配位的碳空心纤维穿透电极

Carbon Hollow Fiber Penetration Electrode with Unsaturated Ni-N Coordination for Enhanced CO Electroreduction.

作者信息

Wang Xiaotong, Wei Yiheng, Song Yanfang, Mao Jianing, Liu Xiaohu, Li Shoujie, Li Guihua, Zhu Huanyi, Xia Jiayu, Luo Cheng, Chen Aohui, Dong Xiao, Wei Wei, Chen Wei

机构信息

Low-Carbon Conversion Science and Engineering Center, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai, 201210, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Aug;12(29):e02947. doi: 10.1002/advs.202502947. Epub 2025 May 20.

Abstract

Hollow fiber gas penetration electrodes with a compact hierarchical pore structure have emerged as promising platforms for CO electroreduction. However, developing carbon hollow fiber electrodes with efficient CO electrocatalytic performance remains unexplored and challenging. Herein, a straightforward strategy is presented to fabricate robust, self-standing carbon hollow fiber electrodes modified with an unsaturated Ni-N coordination structure. This unique hollow fiber electrode configuration effectively enhances the kinetics of CO electro-conversion to CO. Both density functional theory (DFT) calculations and experimental studies reveal that the Ni-N structure significantly boosts electrocatalytic activity for CO reduction by reducing the energy barrier for the key intermediate COOH* formation. Consequently, the electrode with unsaturated Ni-N coordination realizes a high CO Faradaic efficiency (FE) (>90%) as well as a partial current density of 61 mA cm, much superior to those of saturated Ni-N coordination. In particular, this high performance maintains an exceptional durability for over 100 h, outperforming previously reported carbon supporting electrodes featuring Ni-N-C sites. This work opens new avenues for designing advanced carbon electrode structures with enhanced selectivity and activity for CO reduction.

摘要

具有紧凑分级孔结构的中空纤维气体渗透电极已成为用于CO电还原的有前景的平台。然而,开发具有高效CO电催化性能的碳中空纤维电极仍然未被探索且具有挑战性。在此,提出了一种直接的策略来制备用不饱和Ni-N配位结构修饰的坚固、自立的碳中空纤维电极。这种独特的中空纤维电极结构有效地增强了CO电转化为CO的动力学。密度泛函理论(DFT)计算和实验研究均表明,Ni-N结构通过降低关键中间体COOH*形成的能垒,显著提高了CO还原的电催化活性。因此,具有不饱和Ni-N配位的电极实现了高CO法拉第效率(FE)(>90%)以及61 mA cm的分电流密度,远优于饱和Ni-N配位的电极。特别是,这种高性能在超过100小时内保持了出色的耐久性,优于先前报道的具有Ni-N-C位点的碳支撑电极。这项工作为设计具有增强的CO还原选择性和活性的先进碳电极结构开辟了新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2728/12362814/d0703b2bc21e/ADVS-12-e02947-g002.jpg

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