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首页> 外文期刊>Analytical chemistry >Optical Determination of Differential Coverage-Potential Relations of Redox-Active Species Immobilized on Electrode Surfaces
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Optical Determination of Differential Coverage-Potential Relations of Redox-Active Species Immobilized on Electrode Surfaces

机译:光学测定固定在电极表面的氧化还原活性物质的微分覆盖-电位关系

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Single-wavelength (HeNe laser, lambda velence 633 nm), normal incidence UV-visible reflectance spectroscopy was used to monitor the optical properties of the glassy carbon (GC)|0.2 M NaOH(aq) interface as a function of the applied potential, E. Whereas the electroreflectance coefficient for bare GC was found to be small and potential independent, surface functionalization by an irreversibly adsorbed layer of tetrasulfonated cobalt phthalocyanine (CoTSPc) yielded a clearly defined sigmoidally shaped normalized reflectance change ((DELTA)R/R) vs E curve over the potential region in which the adsorbate displayed redox peaks. Assuming (DELTA)R/R is proportional to the extent of redox conversion, as has been reported for macrocycles adsorbed on other types of carbon (e.g., Kim, S.; Xu, X.; Bae, I. T.; Wang, Z.; Scherson, D. A. Anal. Chem. 1990, 62, 2647-2650), differential coverage-potential relations were determined based purely on the optical data collected. A similar optical behavior was found for irreversible adsorbed CoPc and tetraamino CoPc (CoTAPc) adsorbed on GC, for which the voltammetric peaks were ill-defined, too small for coulometric analyses to be reliably performed, or both. No detectable changes in the (DELTA)R/R vs E profiles of either bare or macrocyclic-functionalized surfaces were observed upon addition of hydrazine to the neat 0.2 M NaOH solution at potentials at which these surfaces display electrocatalytic properties for its oxidation. Possible factors responsible for this behavior are discussed.
机译:使用单波长(HeNe激光,λvelence 633 nm),法向入射紫外可见反射光谱法来监测玻璃碳(GC)| 0.2 M NaOH(aq)界面随所施加电势的变化, E.发现裸GC的电反射系数很小并且与电势无关,但是不可逆吸附的四磺化钴酞菁(CoTSPc)层的表面官能化产生了清晰定义的S形归一化反射率变化((ΔR)R / R E曲线在被吸附物显示氧化还原峰的电位区域上。假定ΔR/ R与氧化还原转化的程度成正比,正如已经报道的吸附在其他类型碳上的大环化合物(例如,Kim,S .; Xu,X .; Bae,IT; Wang,Z .; (Scherson,DA Anal.Chem.1990,62,2647-2650),仅基于收集的光学数据确定微分覆盖-电位关系。对于不可逆吸附的CoPc和吸附在GC上的四氨基CoPc(CoTAPc),发现了相似的光学行为,其伏安峰定义不清,对于库仑分析而言太小而无法可靠地执行,或两者兼而有之。在将肼添加到0.2 M NaOH纯溶液中时,在裸露的表面或大环官能化的表面上,未观察到ΔR/ R vs E曲线的可检测变化,在这些电位下,这些表面表现出对其氧化的电催化性能。讨论了可能导致这种行为的因素。

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