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Discovery of Black Dye Crystal Structure Polymorphs: Implications for Dye Conformational Variation in Dye-Sensitized Solar Cells

机译:黑染料晶体结构多晶型物的发现:对染料敏化太阳能电池中染料构象变化的影响。

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We present the discovery of a new crystal structure polymorph (1) and pseudopolymorph (2) of the Black Dye, one of the world's leading dyes for dye-sensitized solar cells, DSSCs (10.4% device performance efficiency). This reveals that Black Dye molecules can adopt multiple low-energy conformers. This is significant since it challenges existing models of the Black Dye center dot center dot center dot TiO2 adsorption process that renders a DSSC working electrode; these have assumed a single molecular conformation that refers to the previously reported Black Dye crystal structure (3). The marked structural differences observed between 1, 2, and 3 make the need for modeling multiple conformations more acute. Additionally, the ordered form of the Black Dye (1) provides a more appropriate depiction of its anionic structure, especially regarding its anchoring group and NCS bonding descriptions. The tendency toward NCS ligand isomerism, evidenced via the disordered form 2, has consequences for electron injection and electron recombination in Black Dye embedded DSSC devices. Dyes 2 and 3 differ primarily by the absence or presence of a solvent of crystallization, respectively; solvent environment effects on the dye are thereby elucidated. This discovery of multiple Black Dye conformers from diffraction, with atomic-level definition, complements recently reported nanoscopic evidence for multiple dye conformations existing at a dye center dot center dot center dot TiO2 interface, for a chemically similar DSSC dye; those results emanated from imaging and spectroscopy, but were unresolved at the submolecular level. Taken together, these findings lead to the general notion that multiple dye conformations should be explicitly considered when modeling dye TiO2 interfaces in DSSCs, at least for ruthenium-based dye complexes.
机译:我们介绍了黑染料的新晶体结构多晶型物(1)和假多晶型物(2)的发现,黑染料是染料敏化太阳能电池DSSC的世界领先染料之一(设备性能效率为10.4%)。这表明黑染料分子可以采用多个低能构象体。这很重要,因为它挑战了黑染料中心点中心点中心点TiO2吸附工艺的现有模型,该工艺可形成DSSC工作电极。这些已经假设了一个单一的分子构象,该构象是指先前报道的黑染料晶体结构(3)。在1、2和3之间观察到的明显结构差异使得对多个构象进行建模的需求更加迫切。此外,黑染料(1)的有序形式提供了对其阴离子结构的更适当描述,尤其是有关其锚定基团和NCS键的描述。通过无序形式2证明了NCS配体异构化的趋势,对Black Dye嵌入式DSSC器件中的电子注入和电子重组产生了影响。染料2和3的主要区别在于分别存在或不存在结晶溶剂。由此阐明了溶剂环境对染料的影响。这种从原子级定义的衍射中发现的多个黑染料构象异构体的发现,补充了最近报道的纳米级证据,即化学相似的DSSC染料在染料中心点中心点中心点TiO2界面处存在多个染料构象。这些结果来自成像和光谱学,但在亚分子水平上尚未解决。综上所述,这些发现导致了一个普遍的观念,即在对DSSC中的染料TiO2界面进行建模时,至少对于基于钌的染料配合物,应明确考虑多种染料构象。

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