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Scanning probe microscopy studies on the adsorption of selected molecular dyes on titania

机译:扫描探针显微镜研究特定分子染料在二氧化钛上的吸附

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摘要

Titanium dioxide, or titania, sensitized with organic dyes is a very attractive platform for photovoltaic applications. In this context, the knowledge of properties of the titania–sensitizer junction is essential for designing efficient devices. Consequently, studies on the adsorption of organic dyes on titania surfaces and on the influence of the adsorption geometry on the energy level alignment between the substrate and an organic adsorbate are necessary. The method of choice for investigating the local environment of a single dye molecule is high-resolution scanning probe microscopy. Microscopic results combined with the outcome of common spectroscopic methods provide a better understanding of the mechanism taking place at the titania–sensitizer interface. In the following paper, we review the recent scanning probe microscopic research of a certain group of molecular assemblies on rutile titania surfaces as it pertains to dye-sensitized solar cell applications. We focus on experiments on adsorption of three types of prototypical dye molecules, i.e., perylene-3,4,9,10-tetracarboxylic dianhydride (PTCDA), phtalocyanines and porphyrins. Two interesting heteromolecular systems comprising molecules that are aligned with the given review are discussed as well.
机译:用有机染料敏化的二氧化钛或二氧化钛对于光伏应用而言是非常有吸引力的平台。在这种情况下,二氧化钛-敏化剂接面的性能知识对于设计高效器件至关重要。因此,需要研究有机染料在二氧化钛表面上的吸附以及吸附几何形状对基材与有机被吸附物之间能级排列的影响。调查单个染料分子局部环境的首选方法是高分辨率扫描探针显微镜。微观结果与常用光谱方法的结果相结合,可以更好地了解二氧化钛-敏化剂界面发生的机理。在下面的文章中,我们将对金红石型二氧化钛表面上的某些分子组装体的近期扫描探针显微镜研究进行回顾,因为它与染料敏化太阳能电池应用有关。我们专注于吸附三种原型染料分子的实验,即per 3,4,9,10-四羧酸二酐(PTCDA),酞菁和卟啉。还讨论了两个有趣的包含与给定综述对齐的分子的异分子系统。

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