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Computational Study of Cresyl Violet Covalently Attached to the Silane Coupling Agents: Application to TiO

机译:与硅烷偶联剂共价附着的羰基紫的计算研究:TiO的应用

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摘要

The covalent attachment of photosensitizing dyes to TiO2 using silane coupling agents (SCAs) is a promising strategy for enhancing the photocatalytic activity of TiO2-based photocatalysts and the photovoltaic conversion of dye-sensitized solar cells (DSSCs). This approach can control the geometry and orientation of the photosensitizing dye on the TiO2 surface. In this study, a density functional theory (DFT) and time-dependent DFT (TD-DFT) investigation was carried out on cresyl violet (CV) covalently attached to SCAs with a terminal oxirane group (OTES–Cn) to reveal the influence of OTES–Cn on the geometry of the photosensitizing dyes. The potential of CV covalently attached to OTES–Cn (CV–OTES–Cn) to act as a photosensitizing dye was also analyzed. The hydroxyl group formed by the epoxy-opening reaction between CV and OTES–Cn strongly influenced the geometry of CV–OTES–Cn, which was attributed to a CH–O interaction. Additionally, TD-DFT, frontier molecular orbital and molecular electrostatic potential calculations revealed that CV–OTES–Cn has excellent optical properties and electron injection ability. In particular, the characteristics of the unbent conformation of CV–OTES–Cn are expected to contribute significantly to the photocurrent in TiO2-based photocatalysts and DSSCs. These findings enhance the understanding of the covalent attachment strategy using SCAs and contribute to improving TiO2-based photocatalysts and DSSCs.
机译:使用硅烷偶联剂(SCA)的光敏化染料至TiO 2的共价附着是提高TiO 2的光催化剂的光催化活性的有希望的策略和染料敏化太阳能电池(DSSCs)的光伏转化。该方法可以控制TiO2表面上光敏染料的几何形状和取向。在本研究中,密度函数理论(DFT)和时间依赖性DFT(TD-DFT)研究在与末端氧化乙烷基团(OTES-CN)共价附加到SCA的甲酚紫(CV)上进行,以揭示OTES-CN在光敏染料的几何形状上。还分析了CV与OTES-CN(CV-OTES-CN)相同用作光敏染料的电位。通过CV和OTES-CN之间的环氧开口反应形成的羟基强烈影响CV-OTES-CN的几何形状,其归因于CH-O相互作用。另外,TD-DFT,前部分子轨道和分子静电电位计算显示CV-OTES-CN具有优异的光学性质和电子注入能力。特别地,预期CV-OTES-CN的不注实构象的特征预期在基于TiO 2的光催化剂和DSSC中的光电流显着贡献。这些发现可以增强使用SCA的共价附着策略的理解,并有助于改善基于TiO2的光催化剂和DSSCs。

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