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基于复合钴硫硼化物设计用于高电流密度碱性水电解的双功能电催化剂

Designing Bifunctional Electrocatalysts Based on Complex Cobalt-Sulfo-Boride Compound for High-Current-Density Alkaline Water Electrolysis.

作者信息

Suryawanshi Akash, John Riya Alice B, Bhide Aniruddha, Gupta Suraj, Spreitzer Matjaž, Patel Rupali, Fernandes Rohan, Patel Nainesh

机构信息

Department of Physics and Electronics, Christ University, Bengaluru 560029, India.

Advanced Materials Department, Jožef Stefan Institute, Jamova 39, 1000 Ljubljana, Slovenia.

出版信息

Energy Fuels. 2024 Sep 25;38(19):18965-18975. doi: 10.1021/acs.energyfuels.4c03171. eCollection 2024 Oct 3.

Abstract

In the quest to harness renewable energy sources for green hydrogen production, alkaline water electrolysis has emerged as a pivotal technology. Enhancing the reaction rates of overall water electrolysis and streamlining electrode manufacturing necessitate the development of bifunctional and cost-effective electrocatalysts. With this aim, a complex compound electrocatalyst in the form of cobalt-sulfo-boride (Co-S-B) was fabricated using a simple chemical reduction method and tested for overall alkaline water electrolysis. A nanocrystalline form of Co-S-B displayed a combination of porous and nanoflake-like morphology with a high surface area. In comparison to Co-B and Co-S, the Co-S-B electrocatalyst exhibits better bifunctional characteristics requiring lower overpotentials of 144 mV for hydrogen evolution reaction and 280 mV for oxygen evolution reaction to achieve 10 mA/cm in an alkaline electrolyte. The improved Co-S-B performance is attributed to the synergistic effect of sulfur and boron on cobalt, which was experimentally confirmed through various material characterization tools. Tafel slope, electrochemical surface area, turnover frequency, and charge transfer resistance further endorse the active nature of the Co-S-B electrocatalyst. The robustness of the developed electrocatalyst was validated through a 50 h chronoamperometric stability test, along with a recyclability test involving 10,000 cycles of linear sweep voltammetry. Furthermore, Co-S-B was tested in an alkaline zero-gap water electrolyzer, reaching 1 A/cm at 2.06 V and 60 °C. The significant activity and stability demonstrated by the cobalt-sulfo-boride compound render it as a promising and cost-effective electrode material for commercial alkaline water electrolyzers.

摘要

在寻求利用可再生能源生产绿色氢气的过程中,碱性水电解已成为一项关键技术。提高整体水电解的反应速率并简化电极制造需要开发双功能且具有成本效益的电催化剂。为此,采用简单的化学还原方法制备了钴硫硼(Co-S-B)形式的复合化合物电催化剂,并对其进行了整体碱性水电解测试。纳米晶形式的Co-S-B呈现出多孔和纳米片状形态的组合,具有高表面积。与Co-B和Co-S相比,Co-S-B电催化剂表现出更好的双功能特性,在碱性电解质中,析氢反应需要144 mV的较低过电位,析氧反应需要280 mV的较低过电位才能达到10 mA/cm²。Co-S-B性能的提高归因于硫和硼对钴的协同作用,这通过各种材料表征工具得到了实验证实。塔菲尔斜率、电化学表面积、周转频率和电荷转移电阻进一步证明了Co-S-B电催化剂的活性本质。通过50小时的计时电流稳定性测试以及涉及10000次线性扫描伏安循环的可回收性测试验证了所开发电催化剂的稳健性。此外,Co-S-B在碱性零间隙水电解槽中进行了测试,在2.06 V和60°C下达到了1 A/cm² 的电流密度。钴硫硼化合物所表现出的显著活性和稳定性使其成为商业碱性水电解槽中一种有前景且具有成本效益的电极材料

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac0/11460019/803e1f69ee7a/ef4c03171_0001.jpg

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