Shi Jing, Liu Weiqing, Yang Shuqing, Wu Zongjian, Han Baoshuo, Li Datian, Xu XiaoBo
Jiangxi Engineering Laboratory for Optoelectronics Testing Technology, Nanchang Hangkong University, Nanchang330063, P. R. China.
National Engineering Laboratory for Non-Destructive Testing and Optoelectronic Sensing Technology and Applications, Key Laboratory of Nondestructive Testing Ministry of Education, School of the Testing and Photoelectric Engineering, Nanchang Hangkong University, Nanchang330063, P. R. China.
Langmuir. 2022 Jan 11;38(1):495-503. doi: 10.1021/acs.langmuir.1c02909. Epub 2021 Dec 23.
N719 dye (-[Ru(4-carboxy-4'-carboxylate-2,2'-bipyridine)(NCS)]) contains two carboxylic acid/carboxylate groups and two isothiocyanato (NCS) ligands and exhibit different spatial adsorption orientations during adsorption on different substrate surfaces. However, the effect of spatially adsorption orientations on the adsorption process has been rarely reported. This paper presents a detailed study of the adsorption kinetics and thermodynamics of N719 molecules based on a quartz crystal microbalance under variable temperature conditions using TiO or Au substrate surfaces to induce changes in the geometrical orientation molecules. This work also reveals the adsorption properties of carboxylate groups and NCS ligands acting as anchoring groups. Research results have shown that the surface N719 molecular density of the TiO substrate is higher than that of the Au substrate. Adsorption kinetics have shown that the adsorption rate of N719 molecules on the Au substrate surface with NCS ligands as anchor groups is slightly higher than that of carboxylate as the anchor groups on the TiO substrate surface, and in the case of the former adsorption mode, the desorption is more pronounced. Under two different spatial orientation adsorption modes, both exhibit physical adsorption. The thermodynamics of molecular adsorption with different spatial orientations show that all adsorption processes are spontaneous and endothermic. This work is beneficial for understanding the mechanism of adsorption of dye molecules, dye molecule synthesis method, ligand selection, and improvement of device efficiency.
N719染料(-[Ru(4-羧基-4'-羧基-2,2'-联吡啶)(NCS)])含有两个羧酸/羧酸盐基团和两个异硫氰酸根(NCS)配体,并且在吸附于不同的基底表面时表现出不同的空间吸附取向。然而,空间吸附取向对吸附过程的影响鲜有报道。本文基于石英晶体微天平,在可变温度条件下,使用TiO或Au基底表面来诱导分子几何取向的变化,对N719分子的吸附动力学和热力学进行了详细研究。这项工作还揭示了作为锚定基团的羧酸盐基团和NCS配体的吸附特性。研究结果表明,TiO基底的表面N719分子密度高于Au基底。吸附动力学表明,以NCS配体作为锚定基团时,N719分子在Au基底表面的吸附速率略高于以羧酸盐作为锚定基团时在TiO基底表面的吸附速率,并且在前一种吸附模式下,解吸更为明显。在两种不同的空间取向吸附模式下,均表现为物理吸附。不同空间取向的分子吸附热力学表明,所有吸附过程都是自发的且吸热的。这项工作有助于理解染料分子的吸附机理、染料分子合成方法、配体选择以及器件效率的提高。