首页> 外文OA文献 >Evanescent Wave Cavity Ring-Down Spectroscopy as a Probe of Interfacial Adsorption: Interaction of Tris(2,2′-bipyridine)ruthenium(II) with Silica Surfaces and Polyelectrolyte Films
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Evanescent Wave Cavity Ring-Down Spectroscopy as a Probe of Interfacial Adsorption: Interaction of Tris(2,2′-bipyridine)ruthenium(II) with Silica Surfaces and Polyelectrolyte Films

机译:渐逝波腔倒闭光谱作为界面吸附的探针:Tris(2,2'-Biphyridine)钌(II)与二氧化硅表面和聚电解质膜的相互作用

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摘要

Evanescent wave cavity ring-down spectroscopy (EW-CRDS) has been used to study the interaction of the tris(2,2'-bipyridine)ruthenium(II) complex, [Ru(bpy)(3)](2+), at both native silica surfaces and surfaces modified with polyelectrolyte films. Both poly-l-lysine (PLL) and PLL/poly-l-glutamic acid (PGA) bilayer functionalized interfaces have been studied. Concentration isotherms exhibit Langmuir-type adsorption behavior on both silica and PGA-terminated surfaces from which equilibrium constants have been derived. The pH-dependence of the [Ru(bpy)(3)](2+) adsorption to silica and the PLL/PGA film has also been investigated. For the latter substrate, the effective surface pK(a) of the acid groups was found to be 5.5. The effect of supporting electrolyte was also investigated and was shown to have a significant effect on the extent of [Ru(bpy)(3)](2+) adsorption. A thin-layer electrochemical cell arrangement, in which a working electrode was positioned just above the substrate, was used to change the solution pH in a controlled way via the potential-pulsed chronoamperometric oxidation of water. By measuring the optical absorption using EW-CRDS during such experiments, the desorption of [Ru(bpy)(3)](2+) from the surface has been monitored in real time. Experiments were carried out at different cell thicknesses and at various pulse durations. By combining data from the EW-CRDS experiments with fluorescence confocal laser scanning microscopy (CLSM) to determine the pH at the substrate surface, the pK(a) of the PLL/PGA film could be ascertained and was found to agree with the static pH isotherm measurements. These studies provide a platform for the further use of electrochemistry combined with EW-CRDS to investigate dynamic processes at interfaces.
机译:蒸发波腔响尾光谱(EW-CRD)已被用于研究TRIS(2,2'-Bi吡啶)钌(II)复合物的相互作用,[Ru(BPY)(3)](2+),在与聚电解质膜改性的天然二氧化硅表面和表面上。已经研究了聚-L-赖氨酸(PLL)和PLL /聚-L-谷氨酸(PGA)双层官能化界面。浓度等温物在二氧化硅和PGA封端表面上表现出Langmuir型吸附行为,从而衍生平衡常数的表面。还研究了[Ru(BPY)(3)](2+)吸附对二氧化硅和PLL / PGA膜的pH依赖性。对于后一种底物,发现酸基团的有效表面PK(A)为5.5。还研究了支撑电解质的效果,并显示出对[Ru(BPY)(3)](2+)吸附的程度具有显着影响。薄层电化学电池布置,其中将工作电极定位在基板上方,通过通过脉冲脉冲的水分氧化来改变溶液pH。通过在这种实验期间测量使用EW-CRD的光学吸收,实时监测来自表面的[Ru(BPY)(3)](2+)的解吸。实验在不同的细胞厚度和各种脉冲持续时间内进行。通过将来自EW-CRD实验的数据与荧光共聚焦激光扫描显微镜(CLSM)组合以确定基板表面的pH,可以确定PLL / PGA膜的PK(A),并发现与静态pH相同等温测量。这些研究提供了一种用于进一步使用电化学的平台,所述电化学与EW-CRD一起研究界面处的动态过程。

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