Suppr超能文献

用于高效电催化响应的二氧化钌-三氧化铼复合纳米纤维

RuO2-ReO3 composite nanofibers for efficient electrocatalytic responses.

作者信息

Kim Yu Lim, Choi Hyun-A, Lee Nam-Suk, Son Byungrak, Kim Hee Jun, Baik Jeong Min, Lee Youngmi, Lee Chongmok, Kim Myung Hwa

机构信息

Department of Chemistry & Nano Science, Ewha Womans University, Seoul, 120-750, Korea.

出版信息

Phys Chem Chem Phys. 2015 Mar 21;17(11):7435-42. doi: 10.1039/c4cp05615a.

Abstract

We present a facile synthetic route to ruthenium dioxide (RuO2)-rhenium oxide (ReO3) electrospun composite nanofibers and their electrocatalytic responses for capacitance and H2O2 sensing. The contents of rhenium oxide of electrospun ruthenium dioxide (RuO2) were carefully controlled by an electrospinning process with the preparation of the precursor solutions followed by the thermal annealing process in air. The electrochemical applications of RuO2-ReO3 electrospun composite nanofibers were then investigated by modifying these materials on the surface of glassy carbon (GC) electrodes, RuO2-ReO3(n)/GC (n = 0.0, 0.07, 0.11, and 0.13), where n denotes the relative atomic ratio of Re to the sum of Ru and Re. Specific capacitance and H2O2 reduction sensitivity were remarkably enhanced depending on the amount of ReO3 increased. Among the four compositions of RuO2-ReO3(n), RuO2-ReO3(0.11)/GC showed the highest performances, i.e., a 20.9-fold higher specific capacitance (205 F g(-1) at a potential scan rate (v) of 10 mV s(-1); a capacity loss of 19% from v = 10 to 2000 mV s(-1)) and a 7.6-fold higher H2O2 reduction sensitivity (668 μA mM(-1) cm(-2), normalized by GC disk area), respectively, compared to only RuO2/GC.

摘要

我们展示了一种简便的合成路线,用于制备二氧化钌(RuO₂)-氧化铼(ReO₃)电纺复合纳米纤维及其对电容和H₂O₂传感的电催化响应。通过静电纺丝过程,精心控制电纺二氧化钌(RuO₂)中氧化铼的含量,即先制备前驱体溶液,然后在空气中进行热退火处理。通过将这些材料修饰在玻碳(GC)电极表面,即RuO₂-ReO₃(n)/GC(n = 0.0、0.07、0.11和0.13),其中n表示Re与Ru和Re总和的相对原子比,进而研究了RuO₂-ReO₃电纺复合纳米纤维的电化学应用。随着ReO₃含量的增加,比电容和H₂O₂还原灵敏度显著提高。在RuO₂-ReO₃(n)的四种组成中,RuO₂-ReO₃(0.11)/GC表现出最高的性能,即比电容提高了20.9倍(在10 mV s⁻¹的电位扫描速率(v)下为205 F g⁻¹;从v = 10到2000 mV s⁻¹的容量损失为19%),与仅RuO₂/GC相比,H₂O₂还原灵敏度提高了7.6倍(668 μA mM⁻¹ cm⁻²,以GC圆盘面积归一化)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验