Fernández-Ibáñez P, Malato S
Department of Applied Physics, University of Almería, Almería, 04120, Spain
J Colloid Interface Sci. 2000 Jul 15;227(2):510-516. doi: 10.1006/jcis.2000.6917.
Electron transfer between a titanium dioxide/electrolyte solution interface has been studied. As found by other researchers of similar interfaces (TiO(2)- and ZnO-electrolyte solution), a slow consumption of OH(-) ions takes place in this type of interface. A theoretical model has been developed for calculating the change in the Fermi energy of both electrolyte solution and semiconductor, showing that ion consumption from the solution is favoured by the decrease of the difference between their Fermi energies. A kinetic constant (upsilon) is found to characterise the consumption process, its value increasing with electrolyte and semiconductor mass concentrations. Furthermore, this process may be used to estimate the point of zero charge of a titanium dioxide colloidal dispersion. Copyright 2000 Academic Press.
已经对二氧化钛/电解质溶液界面之间的电子转移进行了研究。正如其他研究类似界面(TiO(2)-和ZnO-电解质溶液)的研究人员所发现的那样,在这种类型的界面中会发生OH(-)离子的缓慢消耗。已经开发了一个理论模型来计算电解质溶液和半导体的费米能变化,结果表明,溶液中离子的消耗受到它们费米能之差减小的促进。发现一个动力学常数(υ)来表征消耗过程,其值随电解质和半导体质量浓度的增加而增加。此外,这个过程可用于估计二氧化钛胶体分散体的零电荷点。版权所有2000年学术出版社。