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Polarization Modulated-Infrared Reflectance Absorbance Spectroscopy Of Orientation And Binding Mode Of Pentafluorobenzyl Acid Modifiers On Indium Zinc Oxide

机译:五氟苄基酸改性剂在氧化锌锌上的取向和结合模式的偏振调制红外反射吸收光谱

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摘要

Understanding the orientation of small organic acid modifiers on metal oxide electrodes is important in advancing the field of organic photovoltaics (OPVs). In this work, the orientation of a group of these small organic acid modifiers will be investigated on indium zinc oxide (IZO). Polarization modulation-infrared reflectance-absorbance spectroscopy (PM-IRRAS) is the primary technique used to determine these orientations. In order to determine orientations from PM-IRRAS data, other chemical and physical properties of the modifiers, such as density and surface coverage, must be experimentally determined. Neutral buoyancy is used to determine the density of the modifiers, while X-ray photoelectron spectroscopy (XPS) is used to estimate surface coverage of these modifiers on IZO. These techniques are also used to determine binding mode of these modifiers on IZO. The tilt angles (θ) were found to be 50 ± 3°, 64 ± 2°, and 43 ± 3° for F₅BnPA, F₅BnCA, and F₅BnHA, respectively, meaning that the phenyl ring in F₅BnHA is more perpendicular to the surface while the phenyl ring in F₅BnCA more parallel to the surface. All three modifiers were also found to bind to IZO in a bidentate manner. In contrast, F₅BnSA etches away significant portions of the IZO substrate.
机译:了解小型有机酸改性剂在金属氧化物电极上的取向对于推进有机光伏(OPV)领域至关重要。在这项工作中,将在铟锌氧化物(IZO)上研究一组这些小的有机酸改性剂的取向。偏振调制红外反射吸收光谱(PM-IRRAS)是用于确定这些方向的主要技术。为了从PM-IRRAS数据确定方向,必须通过实验确定改性剂的其他化学和物理性质,例如密度和表面覆盖率。中性浮力用于确定改性剂的密度,而X射线光电子能谱(XPS)用于估计这些改性剂在IZO上的表面覆盖率。这些技术还用于确定IZO上这些修饰剂的结合模式。发现F₅BnPA,F₅BnCA和F₅BnHA的倾斜角(θ)分别为50±3°,64±2°和43±3°,这意味着F₅BnHA中的苯环更垂直于表面,而F₅BnCA中的苯环更平行于表面。还发现所有三种修饰剂均以双齿方式结合至IZO。相反,F₅BnSA腐蚀掉IZO衬底的大部分。

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    Lachance Zachary Thomas;

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  • 年度 2015
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