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甲酸氧化和脱氢反应过程中单孪晶AgPdIr纳米合金的表面重构

Surface Reconstruction of Single-Twinned AgPdIr Nanoalloy during the Formate Oxidation and Dehydrogenation Reactions.

作者信息

Tang Quan, Guo Longfei, Jin Tao, Shan Shuang, Wang Qiao, Wang Junpeng, Pan Bowei, Li Zhen, Chen Fuyi

机构信息

State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072, China.

School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

ACS Omega. 2024 Nov 5;9(46):45811-45821. doi: 10.1021/acsomega.4c03637. eCollection 2024 Nov 19.

Abstract

Formate has emerged as a promising energy carrier to generate electrons via formate oxidation reaction (FOR) and hydrogen via formate dehydrogenation reaction (FDR), and it is desirable but difficult to design a novel bifunctional (electro)catalyst to improve reaction kinetics. Herein, we construct the single-twinned AgPdIr (t-AgPdIr) nanoalloy to improve the catalytic activity and stability for the formate oxidation and dehydrogenation processes. The t-AgPdIr nanoalloy, characterized by a distinctive twinned structure with strains and a downshift of the d-band center, demonstrates an improved peak current density of 4.6 A·mg , a diminished onset potential of 0.45 V, a superior activity retention of 55.7% after 600 cycles, and a current density of 0.73 A·mg following potentiostatic polarization for 3600 s. Additionally, the t-AgPdIr catalyst shows an enhanced turnover frequency value of 407.3 h, a higher volume of generated H gas up to 51.8 mL after 120 min of reaction, and an activity recovery of 90.7% after five reaction cycles. Impressively, compared with the as-prepared nanoalloy, the postreaction catalyst shows a stable strain state along the twin boundaries and a surface segregation of Pd and Ir elements after the formate oxidation and dehydrogenation reactions.

摘要

甲酸盐已成为一种有前景的能量载体,可通过甲酸盐氧化反应(FOR)产生电子,并通过甲酸盐脱氢反应(FDR)产生氢气。然而,设计一种新型双功能(电)催化剂来改善反应动力学是理想的,但却很困难。在此,我们构建了单晶孪晶AgPdIr(t-AgPdIr)纳米合金,以提高甲酸盐氧化和脱氢过程的催化活性和稳定性。t-AgPdIr纳米合金具有独特的孪晶结构,伴有应变且d带中心下移,其峰值电流密度提高到4.6 A·mg,起始电位降低至0.45 V,在600次循环后具有55.7%的优异活性保留率,在恒电位极化3600 s后电流密度为0.73 A·mg。此外,t-AgPdIr催化剂的周转频率值提高到407.3 h,反应120分钟后产生的H2气体体积高达51.8 mL,经过五个反应循环后活性恢复率为

90.7%。令人印象深刻的是,与制备的纳米合金相比,反应后的催化剂在甲酸盐氧化和脱氢反应后,沿孪晶界显示出稳定的应变状态以及Pd和Ir元素的表面偏析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab02/11579715/593a27f8c9dd/ao4c03637_0001.jpg

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