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伏安法测量二茂铁衍生物在高度取向热解石墨上的吸附等温线

Voltammetric Measurement of Adsorption Isotherm for Ferrocene Derivatives on Highly Oriented Pyrolytic Graphite.

作者信息

Kurapati Niraja, Pathirathna Pavithra, Chen Ran, Amemiya Shigeru

机构信息

Department of Chemistry , University of Pittsburgh , 219 Parkman Avenue , Pittsburgh , Pennsylvania 15260 , United States.

出版信息

Anal Chem. 2018 Nov 20;90(22):13632-13639. doi: 10.1021/acs.analchem.8b03883. Epub 2018 Oct 29.

Abstract

Reversible and specific adsorption of redox-active molecules from the electrolyte solution to the electrode surface is an important process and is often diagnosed by cyclic voltammetry (CV). The entire voltammogram, however, is rarely analyzed quantitatively, thereby completely missing or incorrectly extracting inherent information about the adsorption isotherm. Herein, we report CV measurements of the adsorption isotherm for ferrocene derivatives on the basal plane of highly oriented pyrolytic graphite (HOPG) to quantitatively understand the thermodynamics of ferrocene-HOPG and ferrocene-ferrocene interactions at HOPG/water interfaces. Specifically, reversible CV of (ferrocenylmethyl)trimethylammonium, ferrocenemethanol, and 1,1'-ferrocenedimethanol is obtained at 0.05-10 V/s to confirm that only reduced forms of ferrocene derivatives are adsorbed on HOPG. Finite element analysis of the entire voltammogram yields the Frumkin isotherm to separately parametrize ferrocene-HOPG and ferrocene-ferrocene interactions. Adsorption of all ferrocene derivatives is driven by similarly weak ferrocene-HOPG interactions with free energy changes of approximately -20 kJ/mol. Adsorption of ferrocenemethanol is strengthened by intermolecular hydrogen bonding, which is quantitatively represented by a free energy change of -8 kJ/mol for surface saturation and is qualitatively characterized by a pair of sharp adsorption and desorption peaks following a pair of diffusional peaks. By contrast, adsorption of (ferrocenylmethyl)trimethylammonium and 1,1'-ferrocenedimethanol remains weak because of electrostatic repulsion and weak hydrogen bonding, respectively, which correspond to the respective free energy changes of +0.7 and -3 kJ/mol for surface saturation. The unfavorable or weakly favorable intermolecular interactions broaden or narrow a diffusional peak during the forward scan, respectively, without yielding a post peak.

摘要

氧化还原活性分子从电解质溶液到电极表面的可逆且特异性吸附是一个重要过程,通常通过循环伏安法(CV)进行诊断。然而,很少对整个伏安图进行定量分析,从而完全忽略或错误提取有关吸附等温线的固有信息。在此,我们报告了在高度取向热解石墨(HOPG)基面上二茂铁衍生物吸附等温线的CV测量,以定量了解HOPG/水界面处二茂铁-HOPG和二茂铁-二茂铁相互作用的热力学。具体而言,在0.05 - 10 V/s下获得了(二茂铁基甲基)三甲基铵、二茂铁甲醇和1,1'-二茂铁二甲醇的可逆CV,以确认只有二茂铁衍生物的还原形式吸附在HOPG上。对整个伏安图进行有限元分析得出弗鲁姆金等温线,以分别参数化二茂铁-HOPG和二茂铁-二茂铁相互作用。所有二茂铁衍生物的吸附都由类似的弱二茂铁-HOPG相互作用驱动,自由能变化约为 -20 kJ/mol。二茂铁甲醇的吸附通过分子间氢键得到加强,表面饱和时自由能变化为 -8 kJ/mol定量表示了这种氢键作用,定性特征是在一对扩散峰之后有一对尖锐的吸附和解吸峰。相比之下,(二茂铁基甲基)三甲基铵和1,1'-二茂铁二甲醇的吸附分别由于静电排斥和弱氢键作用而仍然较弱,表面饱和时各自的自由能变化分别为 +0.7和 -3 kJ/mol。不利或弱有利的分子间相互作用分别在正向扫描期间使扩散峰变宽或变窄,而不会产生后峰。

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