Re, Ru, and Rh (RRR) catalysts in sustainable hydrogen production via urea-assisted water electrolysis
學年 114
學期 1
出版(發表)日期 2025-10-15
作品名稱 Re, Ru, and Rh (RRR) catalysts in sustainable hydrogen production via urea-assisted water electrolysis
作品名稱(其他語言)
著者 Santhosh Kumar Ramasamy; Pandian Mannu; S. Susanna Victoria Backiyaleela; S. Sinthika; Milan Babu Poudel; Ta Thi Thuy Nga; Ae Rhan Kim; R. Nimma Elizabeth; Chung-Li Dong; Dong Jin Yoo
單位
出版者
著錄名稱、卷期、頁數 Chemical Engineering Journal 522, 167201
摘要 Green hydrogen generation uses less energy when the anodic urea oxidation process (UOR) is used instead of the oxygen evolution reaction (OER), but there is need for analysis of electrocatalytic urea splitting. In this study, we present the synthesis of Re, Ru, and Rh nanoparticles on carbon nanotubes (RRR NPs@CNT) to achieve remarkable catalytic activity for both UOR and HER (hydrogen evolution reaction) with an alkaline electrolyte. To achieve a current density of 20 mA cm−2 across a urea electrolyzer, Ru NPs@CNT electrocatalyst required just 1.532 V. By incorporating RRR nanoparticles into CNT, higher oxygen vacancies improved the overall magnetization and involved many spin-polarized electrons through the reaction, accelerating the kinetics of the UOR. Density functional theory (DFT) calculations provided important information on the relationship between the catalyst and OER intermediates by exposing their improved density of states, charge transfer properties, and adsorption capacities. Ru NPs@CNT is a successful electrocatalyst for both UOR/OER and HER, and this type of oxygen vacancy-induced spin-polarized electron offers a reliable benchmark for the investigation of sophisticated electrocatalysts.
關鍵字 Transition metal Re, Ru, and Rh catalysts; Electronegativity; Hydrogen evolution reaction; Urea oxidation reaction; Density functional theory
語言 en
ISSN 1385-8947; 1873-3212
期刊性質 國外
收錄於 SCI
產學合作
通訊作者
審稿制度
國別 NLD
公開徵稿
出版型式 ,電子版,紙本