Lin Shiquan, Zheng Mingli, Luo Jianjun, Wang Zhong Lin
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, People's Republic of China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.
ACS Nano. 2020 Aug 25;14(8):10733-10741. doi: 10.1021/acsnano.0c06075. Epub 2020 Aug 3.
Contact electrification (CE) at interfaces is sensitive to the functional groups on the solid surface, but its mechanism is poorly understood, especially for the liquid-solid cases. A core controversy is the identity of the charge carriers (electrons or/and ions) in the CE between liquids and solids. Here, the CE between SiO surfaces with different functional groups and different liquids, including DI water and organic solutions, is systematically studied, and the contribution of electron transfer is distinguished from that of ion transfer according to the charge decay behavior at surfaces at specific temperature, because electron release follows the thermionic emission theory. It is revealed that electron transfer plays an important role in the CE between liquids and functional group modified SiO. Moreover, the electron transfer between the DI water and the SiO is found highly related to the electron affinity of the functional groups on the SiO surfaces, while the electron transfer between organic solutions and the SiO is independent of the functional groups, due to the limited ability of organic solutions to donate or gain electrons. An energy band model for the electron transfer between liquids and solids is further proposed, in which the effects of functional groups are considered. The discoveries in this work support the "two-step" model about the formation of an electric double-layer (Wang model), in which the electron transfer occurs first when the liquids contact the solids for the very first time.
界面处的接触起电(CE)对固体表面的官能团敏感,但其机理尚不清楚,尤其是液-固情况。一个核心争议是液体与固体之间接触起电中电荷载流子(电子或/和离子)的身份。在此,系统研究了具有不同官能团的SiO表面与不同液体(包括去离子水和有机溶液)之间的接触起电,并根据特定温度下表面的电荷衰减行为区分了电子转移和离子转移的贡献,因为电子释放遵循热电子发射理论。结果表明,电子转移在液体与官能团修饰的SiO之间的接触起电中起重要作用。此外,发现去离子水与SiO之间的电子转移与SiO表面官能团的电子亲和力高度相关,而有机溶液与SiO之间的电子转移与官能团无关,这是由于有机溶液给予或获取电子的能力有限。进一步提出了液体与固体之间电子转移的能带模型,其中考虑了官能团的影响。这项工作中的发现支持了关于双电层形成的“两步”模型(Wang模型),即在液体首次接触固体时首先发生电子转移。