期刊論文

學年 111
學期 2
出版(發表)日期 2023-06-28
作品名稱 Cationic vacancies accelerate the generation of CoOOH in perovskite hydroxides for the electrooxidation of biomass
作品名稱(其他語言)
著者 Rixin Peng; Yimin Jiang; Chung-Li Dong; Ta Thi Thuy Nga; Yuxuan Lu; Shengkai Li; Yun Fan; Chao Xie; Shuangyin Wang; Yuqin Zou
單位
出版者
著錄名稱、卷期、頁數 Journal of Materials Chemistry A 11(28), p.15196-15203
摘要 The electrocatalytic oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid is an environmentally friendly strategy for enhancing biomass energy. Defect engineering has been demonstrated as a promising strategy for increasing the catalytic activity of the HMF oxidation reaction (HMFOR). However, the exact function of cationic vacancies has been rarely studied due to the higher formation energy. Herein, Co-based perovskite hydroxide [SnCo(OH)6] was used as a mode material to investigate the critical role of cationic vacancies in HMFOR. A simple plasma-engraving strategy was applied to prepare Co-based perovskite hydroxides with abundant Sn cation vacancies [SnCo(OH)6-VSn]. Compared to SnCo(OH)6, the advanced potential of SnCo(OH)6-VSn is 200 mV, indicating that cationic vacancies are a promising strategy for enhancing the performance of the HMFOR. Operando characterization and theoretical calculations revealed that the short-range ordered amorphous structure broke the periodicity of the crystalline lattice to produce a large number of cation vacancies. Subsequently, these vacancies facilitated the transfer of electrons, the oxidation of transition metal Co at the B site to a higher valence state, and the formation of deprotonated Co(OH)2 active species, thereby promoting the adsorption of HMF on the catalyst surface. Thus, the current study provided significant insights into the critical role of cationic vacancies in enhancing the electrocatalytic performance of biomass upgrading via Co-based catalysts.
關鍵字
語言 en
ISSN 2050-7488
期刊性質 國外
收錄於 SCI
產學合作
通訊作者
審稿制度
國別 GBR
公開徵稿
出版型式 ,電子版