Highly efficient and durable water electrolysis via ligand modulated interfacial assembly

Xuxin Li, Mingyue Zhang, Yijiang Liu, Xiong Sun, Dan Li, Bei Liu, Mei Yang, Hongbiao Chen, Shujiang Ding, Zhiqun Lin
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Abstract

Herein, we report a robust ligand-modulated interfacial assembly strategy for controllable metal doping to yield high-efficiency and durable bifunctional electrocatalysts of FeCoS-embedded hollow N-doped carbon (denoted H-FeCoS/NC) for electrocatalytic overall water splitting (EOWS). Specifically, the hollow Co-based layered double hydroxide (Co-LDH) is employed to render interfacial assembly of CoFe-PBA with tunable composition, morphology, and interface on Co-LDH, regulated by inorganic ligand. Subsequent sulfidation produces H-FeCoS/NC, manifesting outstanding OER/HER activities owing to favourable ligand-modulated Fe-doping, large specific surface area, well-dispersed FeCoS nanoparticles. DFT calculation reveals that ligand-modulated Fe-doping effectively promotes charge transfer, optimizes the intermediates/electrocatalyst interaction, and reduces OER/HER energy barriers, thus boosting the EOWS performance. The H-FeCoS/NC-assembled electrolyzer delivers a low cell voltage of 1.52 V and stably operates for 1000 h in alkaline medium, surpassing most non-noble-metal-based electrocatalysts. This work highlights a facile interfacial assembly route to engineer highly active electrocatalysts for high-performance and durable energy conversion and storage.
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通过配体调制界面组装实现高效持久的水电解
在此,我们报告了一种用于可控金属掺杂的稳健配体调控界面组装策略,该策略可产生用于电催化整体水分离(EOWS)的高效、耐用的嵌入式中空掺杂 N 的 FeCoS 双功能电催化剂(称为 H-FeCoS/NC)。具体来说,在无机配体的调节下,利用中空钴基双层氢氧化物(Co-LDH)在 Co-LDH 上形成具有可调成分、形态和界面的 CoFe-PBA 的界面组装。由于配体调节的铁掺杂、大比表面积和分散良好的 FeCoS 纳米颗粒,随后硫化产生的 H-FeCoS/NC 具有出色的 OER/HER 活性。DFT 计算表明,配体调节的铁掺杂能有效促进电荷转移,优化中间产物/电催化剂的相互作用,降低 OER/HER 能垒,从而提高 EOWS 性能。H-FeCoS/NC 组装的电解槽可提供 1.52 V 的低电池电压,并可在碱性介质中稳定运行 1000 小时,超过了大多数非贵金属电催化剂。这项工作强调了一种简便的界面组装途径,可用于设计高活性电催化剂,以实现高性能和持久的能量转换和储存。
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