论文标题

多巴胺/dopac修饰TIO 2纳米颗粒的吸收机制通过时间依赖性密度功能理论计算

Absorption mechanism of dopamine/DOPAC modified TiO 2 nanoparticles by time-dependent density functional theory calculations

论文作者

Ronchi, Costanza, Soria, Federico, Ferraro, Lorenzo, Botti, Silvana, Di Valentin, Cristiana

论文摘要

供体改性TIO 2纳米颗粒是有趣的混合系统,将该半导体的吸收边缘从超紫色转移到可见光或红外光谱,这对于从光化学,光电分析,光伏,光电或光学动态治疗的几种应用都是一个好处。在这里,我们通过时间依赖性密度函数理论计算的手段固定在固定在逼真的大小(2.2 nm)的球形氧化酶TIO 2纳米2纳米2纳米2纳米粒子上时,研究了两个catechol样分子的吸收特性,即多巴胺和多巴糖配体。通过裸纳米颗粒的差异吸光度光谱,我们展示了如何确定注射机制。由于观察到了新的低能吸收峰,因此我们推断出一种直接电荷转移注入,这意外地不涉及最低的能量传导带状态。我们还发现,分子苯环越垂直于表面,吸收越强,这表明瞄准合成中的高分子堆积。通过与Flat TiO 2表面模型进行比较研究,我们既阐明曲率和覆盖效果。

Donor-modified TiO 2 nanoparticles are interesting hybrid systems shifting the absorption edge of this semiconductor from the ultra-violet to the visible or infrared light spectrum, which is a benefit for several applications ranging from photochemistry, photocatalysis, photovoltaics, or photodynamic therapy. Here, we investigate the absorption properties of two catechol-like molecules, i.e. dopamine and DOPAC ligands, when anchored to a spherical anatase TiO 2 nanoparticle of realistic size (2.2 nm), by means of time-dependent density functional theory calculations. By the differential absorbance spectra with the bare nanoparticle, we show how it is possible to determine the injection mechanism. Since new low-energy absorption peaks are observed, we infer a direct charge transfer injection, which, unexpectedly, does not involve the lowest energy conduction band states. We also find that the more perpendicular the molecular benzene ring is to the surface, the more intense is the absorption, which suggests aiming at high molecular packing in the synthesis. Through a comparative investigation with a flat TiO 2 surface model, we unravel both the curvature and coverage effects.

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