Cheng Wenjing, Yang Huimin, Wang Tingjian, He Xiaoyan, Tian Lin, Li Zhao
University and College Key Lab of Natural Product Chemistry and Application in Xinjiang, School of Chemistry and Environmental Science, Yili Normal University, Yining, 835000, China.
School of Materials and Chemical Engineering, Xuzhou University of Technology, Xuzhou, 221018, PR China.
Chem Rec. 2024 Jan;24(1):e202300088. doi: 10.1002/tcr.202300088. Epub 2023 Apr 26.
CoP nanomaterials have been extensively regarded as one of the most promising electrocatalysts for overall water splitting due to their unique bifunctionality. Although the great promise for future applications, some important issues should also be addressed. Heteroatom doping has been widely acknowledged as a potential strategy for improving the electrocatalytic performance of CoP and narrowing the gap between experimental study and industrial applications. Recent years have witnessed the rapid development of heteroatom-doped CoP electrocatalysts for water splitting. Aiming to provide guidance for the future development of more effective CoP-based electrocatalysts, we herein organize a comprehensive review of this interesting field, with the special focus on the effects of heteroatom doping on the catalytic performance of CoP. Additionally, many heteroatom-doped CoP electrocatalysts for water splitting are also discussed, and the structure-activity relationship is also manifested. Finally, a systematic conclusion and outlook is well organized to provide direction for the future development of this interesting field.
由于其独特的双功能性,CoP纳米材料已被广泛认为是最有前途的用于全水解的电催化剂之一。尽管对未来应用有很大的前景,但一些重要问题也应得到解决。杂原子掺杂已被广泛认为是提高CoP电催化性能以及缩小实验研究与工业应用之间差距的潜在策略。近年来,杂原子掺杂的CoP电催化剂在水分解方面得到了快速发展。为了为未来开发更有效的CoP基电催化剂提供指导,我们在此对这一有趣的领域进行全面综述,特别关注杂原子掺杂对CoP催化性能的影响。此外,还讨论了许多用于水分解的杂原子掺杂CoP电催化剂,并阐明了结构-活性关系。最后,进行了系统的总结和展望,为这一有趣领域的未来发展提供方向。