Department of Applied Chemistry , Taiyuan University of Technology , Taiyuan 030024 , China.
Langmuir. 2018 Jul 31;34(30):8792-8797. doi: 10.1021/acs.langmuir.8b01702. Epub 2018 Jul 18.
Interfacial tension plays an important role in the processes of preparation, research, and application of nanomaterials. Because the interfacial tension is fairly difficult to be determined by experiments, it is still unclear about the effect of particle size on interfacial tension. In this paper, we proposed a method to determine the interfacial tensions and its temperature coefficients by determining the electrode potential of the nanoparticle electrode. Nano-Au with different radii (from 0.9 to 37.4 nm) in an aqueous solution was taken as a research system; we determined the interfacial tension and its temperature coefficient of the interface and discussed the size dependence. At the same time, we found surprisingly that this method can also be applied to determine the Tolman length and the atomic radius. The results show that the particle size of nano-Au has remarkable influences on the interfacial tension and its temperature coefficient. As the particle size decreases, the interfacial tension and the absolute value of its temperature coefficient increase. With the decrease of radius, the influences of the particle size on the interfacial tension and its temperature coefficient become more significant, whereas the influences can be neglected when the radius exceeds 10 nm. In addition, the results also show that the Tolman length is a negative value, and temperature has little effect on the Tolman length. This research can provide a new method to conveniently and reliably determine the interfacial tension on interfaces between nanoparticles and solutions, the temperature coefficients, the Tolman lengths, and the atomic radii; and the size dependences can provide important references for preparation, research, and application of nanomaterials.
界面张力在纳米材料的制备、研究和应用过程中起着重要作用。由于界面张力相当难以通过实验来确定,因此颗粒大小对界面张力的影响仍不清楚。在本文中,我们提出了一种通过测定纳米粒子电极的电极电位来确定界面张力及其温度系数的方法。以水相中的不同半径(0.9 至 37.4nm)的纳米金(Nano-Au)为研究体系,测定了界面的界面张力及其温度系数,并讨论了其尺寸依赖性。同时,我们惊奇地发现,该方法还可用于测定托曼长度和原子半径。结果表明,纳米金的粒径对界面张力及其温度系数有显著影响。随着粒径的减小,界面张力及其温度系数的绝对值增加。随着半径的减小,粒径对界面张力及其温度系数的影响变得更加显著,而当半径超过 10nm 时,这种影响可以忽略不计。此外,结果还表明托曼长度为负值,且温度对托曼长度的影响较小。本研究可为方便可靠地测定纳米粒子与溶液之间的界面张力及其温度系数、托曼长度和原子半径提供一种新方法,尺寸依赖性可为纳米材料的制备、研究和应用提供重要参考。