【Advanced Energy Materials】A-site cation deficiency in antiperovskites for precisely accelerating the Volmer step of alkaline hydrogen evolution

Time:2025-09-01Source:国际前沿科学研究院Click:255

Yan ChenZuoqing LiuBin ChenWei-Hsiang HuangZheng TangMingkai XuMin-Hsin YehChih-Wen Pao,

 Mingjie Pu*Guangming YangYufeng GuoZhiwei HuYinlong Zhu

Adv. Energy Mater.(IF:24.4),First published:07 August 2025 

Abstract

The slow kinetics of alkaline hydrogen evolution reaction (HER) leads to large activity gap between acidic and alkaline electrolytes mainly owing to the extra sluggish Volmer step involving water dissociation and OH desorption. Herein, a facile and effective strategy is reported to regulate the electronic structures and interfacial water behavior through introducing A-site cation deficiency in antiperovskites for jointly accelerating the Volmer reaction and thereby improving the alkaline HER performance. As a proof-of-concept, the In-deficient In0.9NNi3 antiperovskite shows significantly enhanced HER activity than stoichiometric counterpart and outperforms various state-of-the-art non-noble metal electrocatalysts ever reported. More importantly, when applied in a practical anion exchange membrane water electrolyzer (AEMWE) device, the In0.9NNi3-based cathode attains an industrial current density of 1 A cm−2 at a low voltage of 1.92 V and steadily operates up to 100 h, superior to the commercial Raney Ni catalyst. By combined theoretical studies and comprehensive experiments, the enhanced HER performance of In0.9NNi3 is mainly originated from the Ni site-expedited Volmer step, which includes boosted water dissociation by promoting the free water adsorption and spontaneous OH desorption due to elongated Ni─N bonds. This work provides a significant inspiration to design high-performance alkaline HER electrocatalysts via defect chemistry.

https://doi.org/10.1002/aenm.202503319



Contact us

Tel:025-84896467
E-mail:IFS@nuaa.edu.cn
Address:No.29 Yudao Road,Qinhuai District,Nanjing,Jiangsu PR China,210016.

link

--校内链接--

--校外链接--

Follow us

NUAA_IFS