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用于高效全水/海水分解的独特三明治饼干状纳米片阵列异质结双功能电催化剂。

Unique sandwich-cookie-like nanosheet array heterojunction bifunctional electrocatalyst towards efficient overall water/seawater splitting.

作者信息

Qian Long, Zhu Yao, Hu Huiting, Zheng Yunhua, Yuan Ziyu, Dai Yuting, Zhang Tao, Yang Dongya, Xue Songlin, Qiu Fengxian

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Colloid Interface Sci. 2024 Sep;669:935-943. doi: 10.1016/j.jcis.2024.05.061. Epub 2024 May 11.

Abstract

Construction of multi-component heterostructures is an effective strategy for electrocatalysts to improve both the hydrogen evolution reaction (HER) at the cathode and the oxygen evolution reaction (OER) activity at the anode. Herein, an efficient bifunctional electrocatalyst towards overall water/seawater splitting (OW/SS) is reported with strategy of heterostructure construction (ruthenium/nickel phosphorus) on nickel hydroxide (Ni(OH)). With the unique hydrolysis layer (Ni(OH)), the processes of HO hydrolysis and the adsorption/desorption of H*/O-containing intermediates (OH, O, OOH) were greatly boosted by Ru and P sites, which acted as the catalytic active centers of OER and HER, respectively. In addition, the electronic structure reconfiguration was realized through the strong interaction between multi-interfaces. For alkaline HER at the current density of 10 mA cm, the overpotential of Ru-P-Ni(OH)/NF (denoted as RNPOH/NF) was 98 mV, whereas just 230 mV of overpotential was essential to stimulate alkaline OER at the current density of 20 mA cm. Specifically, as a bifunctional electrocatalyst towards overall water splitting, RNPOH/NF deserves cell voltages of 1.7/1.92 V and 1.75/1.94 V, respectively, to activate current densities of 50/100 mA cm in alkaline water/seawater systems, together with a good durability of 12 h. This work contributes insights to the development of bifunctional electrocatalysts for overall water/seawater splitting.

摘要

构建多组分异质结构是一种提高电催化剂性能的有效策略,可同时提升阴极的析氢反应(HER)和阳极的析氧反应(OER)活性。在此,通过在氢氧化镍(Ni(OH))上构建异质结构(钌/镍磷)的策略,报道了一种用于全水/海水分解(OW/SS)的高效双功能电催化剂。凭借独特的水解层(Ni(OH)),Ru和P位点极大地促进了HO水解以及含H*/O中间体(OH、O、OOH)的吸附/解吸过程,它们分别作为OER和HER的催化活性中心。此外,通过多界面之间的强相互作用实现了电子结构的重新配置。对于碱性HER,在电流密度为10 mA cm时,Ru-P-Ni(OH)/NF(记为RNPOH/NF)的过电位为98 mV,而在电流密度为20 mA cm时,仅230 mV的过电位就足以激发碱性OER。具体而言,作为用于全水分解的双功能电催化剂,RNPOH/NF在碱性水/海水体系中分别需要1.7/1.92 V和1.75/1.94 V的电池电压来激活50/100 mA cm的电流密度,同时具有12小时的良好耐久性。这项工作为开发用于全水/海水分解的双功能电催化剂提供了见解。

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