期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Electrochemically reduced graphene oxide with enhanced electrocatalytic activity toward tetracycline detection 被引量:4
1
作者 胥燕燕 高明明 +4 位作者 张国辉 王新华 李佳佳 王曙光 桑元华 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2015年第11期1936-1942,共7页
An electrochemically reduced graphene oxide sample, ERGO_0.8v, was prepared by electrochemical reduction of graphene oxide (GO) at -0.8 V, which shows unique electrocatalytic activity toward tetracycline (TTC) det... An electrochemically reduced graphene oxide sample, ERGO_0.8v, was prepared by electrochemical reduction of graphene oxide (GO) at -0.8 V, which shows unique electrocatalytic activity toward tetracycline (TTC) detection compared to the ERGO-12v (GO applied to a negative potential of-1.2 V), GO, chemically reduced GO (CRGO)-modified glassy carbon electrode (GC) and bare GC electrodes. The redox peaks of TTC on an ERGO-0.8v-modifled glass carbon electrode (GC/ERGO-0.8v) were within 0-0.5 V in a pH 3.0 buffer solution with the oxidation peak current correlating well with TTC concentration over a wide range from 0.1 to 160 mg/L Physical characterizations with Fourier transform infrared (FT-IR), Raman, and X-ray photoelectron spectroscopies (XPS) demonstrated that the oxygen-containing functional groups on GO diminished after the electrochemical reduction at -0.8 V, yet still existed in large amounts, and the defect density changed as new sp2 domains were formed. These changes demonstrated that this adjustment in the number of oxygen-containing groups might be the main factor affecting the electrocatalytic behavior of ERGO. Additionally, the defect density and sp2 domains also exert a profound influence on this behavior. A possible mechanism for the TTC redox reaction at the GC/ERGO-0.8v electrode is also presented. This work suggests that the electrochemical reduction is an effective method to establish new catalytic activities of GO by setting appropriate parameters. 展开更多
关键词 Electrochemically reduced graphene oxide Electrochemical detection Tetracycline Electrocatalytic activity Oxygen-containing functional groups
在线阅读 下载PDF
Bond metathesis reactions between a cyclic(alkyl)(amino)aluminum hydride and boranes
2
作者 Kaifeng Cai Penglong Wang +1 位作者 Chenting Yan Rei Kinjo 《Science China Chemistry》 2025年第7期2948-2952,共5页
Since the initial discovery of alane AlH3in 1942 by Stecher and Wiberg[1],as well as lithium aluminum hydride LiAlH4in 1947 by Finholt,Bond and Schlesinger[2],aluminum hydrides have been ubiquitously utilized in diver... Since the initial discovery of alane AlH3in 1942 by Stecher and Wiberg[1],as well as lithium aluminum hydride LiAlH4in 1947 by Finholt,Bond and Schlesinger[2],aluminum hydrides have been ubiquitously utilized in diverse chemical reactions.They serve as the powerful functional group-reducing reagents,hydrogen sources,and bases[3]. 展开更多
关键词 chemical reactionsthey alane alh functional group reducing reagents bond metathesis reactions cyclic alkyl amino aluminum hydride BORANES ALANE lithium aluminum hydride
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部