第 48 卷第 3 期Vol. 48 No. 3
2018 年 6 月Jun 2018

所属栏目:功能材料

粒径对纳米氧化锌颗粒电极电势和热力学性质的影响
杨 蕾,张正国*,雷青娟* (中北大学 理学院,山西 太原 030051)
摘 要:为探究纳米颗粒粒径对电极电化学热力学的影响规律,从理论上分析了纳米电极电化学热力学函数对粒径的依赖关系。以纳米氧化锌为例,通过测定不同温度下、不同粒径纳米氧化锌的电极电势,得到标准电极电势、温度系数和电极反应热力学函数随粒径的变化规律。理论和实验结果都表明,当纳米氧化锌粒径减小时,标准电极电势和相应电极反应的平衡常数增大,而温度系数、摩尔吉布斯能变、焓变和熵变减小。同时,在实验范围内,这些量都与粒径的倒数存在线性关系。
关键词:纳米氧化锌;粒径;电极电势;电化学热力学
中图分类号:O614.24  文献标识码:A  文章编号:1009-9212(2018)03-0033-07
Effect of Particle Size on Electrode Potential and Thermodynamics of Nano-ZnO Particles
YANG Lei, ZHANG Zheng-guo*, LEI Qing-juan* (School of Science, North University of China, Taiyuan 030051, China)
Abstract:In order to explore the influences of particle size on electrochemical thermodynamics of the electrodes, the size-dependent electrochemical thermodynamics has been theoretically investigated. Experimentally, taking ZnO nanoparticles electrode as an example, the standard electrode potentials, the temperature coefficients, and the thermodynamic functions of electrode reaction were obtained by determining the electrode potentials of the electrodes constructed by ZnO nanoparticles with different sizes at different temperatures. Both the theoretical and the experimental results indicated that with the particle size of nanoparticles decreasing, the standard electrode potential and the equilibrium constants of the corresponding electrode reactions increased, while the temperature coefficient, the molar reaction Gibbs energy, enthalpy and entropy decreased. Moreover, all these physical quantities were linearly related with the reciprocal of particle radius in the experimental range.
Key words:nano-zinc oxide; particle size; electrode potential; electrochemical thermodynamics
基金项目:国家自然科学基金项目(21373147)。
作者简介: 杨 蕾(1994-),女,山西忻州人,硕士研究生,研究方向:纳米材料的制备及性能研究(E-mail:yanglei19940806@163.com)
联 系 人: 张正国,副教授,研究方向:无机材料和生物材料的研究(E-mail:zbdxzzg2006@126.com);
收稿日期: 2018-05-1