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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamic in situ spectroscopic ellipsometry of the reaction of aqueous iron(II) with 2,2 '-bipyridine in a thin Nafion film
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Dynamic in situ spectroscopic ellipsometry of the reaction of aqueous iron(II) with 2,2 '-bipyridine in a thin Nafion film

机译:Nafion薄膜中水铁(II)与2,2'-联吡啶反应的动态原位光谱椭偏

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Dynamic in situ spectroscopic ellipsometry studies of the chemical reaction between ferrous ion and 2,2'-bipyridine (bpy) in a thin Nafion film are presented. A simple prototype system composed of a thin Nafion film on a glass substrate was used throughout the work. The reaction was detected by optically monitoring the formation of the strongly absorbing complex ion, Fe(bpy)(3)(2+) (epsilon(520) = 7.70 x 10(3) M-1 cm(-1) in 0.1 M NaCl). The changes in film optical constants, n and k, and the thickness upon exposure of it to various solutions were monitored in a flow cell with the film on the backside of the substrate relative to the interrogation by light. A "step-by-step" approach was used to isolate the component parts of the system in which the film was consecutively exposed to solutions in the following order: supporting electrolyte, bpy, and, last, ferrous iron solution. The optical properties of the materials were quantitatively described before and during mass transport within the film by modeling using the appropriate multilayer optical models, i.e., the Cauchy equation for nonabsorbing media and the Urbach and Tauc-Lorentz (oscillator) functions for a film that absorbed. The experiments done allowed study of the diffusion in the film and the chemical reactions that are important in the sensing scheme for ferrous iron. Ligand (bpy) diffusion followed a two-stage diffusion mechanism described by a Berens-Hopfenberg model for incremental sorption (D-25 = 7.04 x 10(-13) cm(2) s(-1)). The stabilities of the appropriate systems, i.e., Nafion film with bpy, iron, and iron complex, were studied by exposing equilibrated films to circulating supporting electrolyte solutions. The measurements gave important insights into a set of film chemical reactions and, in turn, selective film dynamics. This work exemplifies the usefulness of spectroscopic ellipsometry in monitoring the kinetics of a chemical reaction in situ, as well as the changes in the film physical properties under dynamic conditions.
机译:提出了动态Nasion薄膜中亚铁离子与2,2'-联吡啶(bpy)之间化学反应的动态原位椭圆偏振光谱研究。在整个工作过程中,使用了一个由玻璃基板上的Nafion薄膜组成的简单原型系统。通过光学监测强吸收性复合离子Fe(bpy)(3)(2+)(ε(520)= 7.70 x 10(3)M-1 cm(-1)在0.1 M中的形成)来检测反应NaCl)。在流通池中,通过相对于光的询问,将薄膜光学常数,n和k以及其暴露于各种溶液中时的厚度在流通池中进行监测,其中薄膜在基板的背面。使用“逐步”方法来隔离系统的组成部分,在该系统中,膜按以下顺序连续暴露于溶液中:支持电解质,bpy,最后是亚铁溶液。通过使用适当的多层光学模型进行建模,即在膜内部进行质量传输之前和期间,定量描述了材料的光学特性,即,对于非吸收性介质的柯西方程以及对于吸收的膜的Urbach和Tauc-Lorentz(振荡器)函数。完成的实验可以研究薄膜中的扩散以及对亚铁检测方案至关重要的化学反应。配体(bpy)扩散遵循由Berens-Hopfenberg模型描述的用于增量吸附的两阶段扩散机制(D-25 = 7.04 x 10(-13)cm(2)s(-1))。通过将平衡的膜暴露于循环的支持电解质溶液中,研究了适当系统的稳定性,即具有bpy,铁和铁络合物的Nafion膜。这些测量结果对一组膜化学反应以及选择性的膜动力学具有重要意义。这项工作例证了椭圆偏振光谱法在监测原位化学反应动力学以及动态条件下膜物理性质变化方面的有用性。

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