financially supported by National Natural Science Foundation of China(Nos.52301011,52231008,52142304,52177220,U23A200767,52302236,and 22369005);Hainan Provincial Natural Science Foundation of China(Nos.524QN226 and 524QN222);the Key Research and Development Program of Hainan Province(No.ZDYF2022GXJS006);Starting Research Fund from the Hainan University(No.KYQD(ZR)23026);International Science&Technology Cooperation Program of Hainan Province(No.GHYF2023007).
The alkaline hydrogen evolution reaction(HER)is a crucial process for sustainable hydrogen production,yet it requires efficient and stable electrocatalysts to overcome the high activation energy barrier.The article di...
supported by the National Key Technology R&D Program of China(Nos.2021YFB3500801,2022YFB3504302 and 2022YFC3901503);the Natural Science Foundation and Overseas Talent Projects of Jiangxi Province(Nos.0232BAB214025 and 20232BCJ25044);the Double Thousand Plan of Jiangxi Province(No.jxsq2023201002).
The development of cost-effective and highly stable electrocatalysts for oxygen evolution reactions holds paramount importance in practical hydrogen production.Herein,we present a novel self-supported electrode compri...
support from the National Key Technology R&D Program of China(2021YFB3500801,2022YFC3901503,2022YFB3504302);the Natural Science Foundation and Overseas Talent Projects of Jiangxi Province(20232BAB214025,20232BCJ25044).
Balancing electron transfer and intermediate adsorption ability of bifunctional catalysts via tailoring electronic structures is crucial for green hydrogen production,while it still remains challenging due to lacking ...