Lu Yuanyuan, Li Xiuting, Compton Richard G
Department of Chemistry, Physical and Theoretical Chemistry Laboratory, Oxford University South Parks Road Oxford OX1 3QZ UK
Institute for Advanced Study, Shenzhen University Shenzhen Guangdong 518060 China.
Chem Sci. 2022 Jan 10;13(5):1355-1366. doi: 10.1039/d1sc06122d. eCollection 2022 Feb 2.
We report the electrochemistry of amino-functionalized multiwalled carbon nanotubes (MWCNTs-NH) in the pH range from 0.3 to 6.4 using quantitative cyclic voltammetry (CV) and single entity electrochemistry measurements, making comparison with non-functionalized MWCNTs. CV showed the latter to both catalyze the solvent (water) decomposition and to undergo irreversible electro-oxidation forming oxygen containing surface functionality. The MWCNTs-NH additionally undergo an irreversible oxidation to an extent which is dependent on the pH of the solution, reflecting the variable amount of deprotonated amino groups present as a function of pH. Nano-impact experiments conducted at the single particle level confirmed the oxidation of both types of MWCNTs, showing agreement with the CV. The p of the amino groups in MWCNTs was determined both electrochemical methods giving consistent values of 2.5.
我们使用定量循环伏安法(CV)和单实体电化学测量方法,报道了氨基功能化多壁碳纳米管(MWCNTs-NH)在pH值范围为0.3至6.4时的电化学情况,并与未功能化的MWCNTs进行了比较。CV表明,后者既能催化溶剂(水)分解,又会发生不可逆的电氧化反应,形成含氧化合物表面官能团。MWCNTs-NH还会发生不可逆氧化,其氧化程度取决于溶液的pH值,这反映了随pH值变化而存在的去质子化氨基数量的变化。在单颗粒水平进行的纳米撞击实验证实了两种类型的MWCNTs均发生了氧化,结果与CV一致。通过两种电化学方法测定了MWCNTs中氨基的pKa值,得到了一致的2.5。