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首页> 外文期刊>ACS Omega >Facet-Dependent Diol-Induced Density of States of Anatase TiO2 Crystal Surface
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Facet-Dependent Diol-Induced Density of States of Anatase TiO2 Crystal Surface

机译:面依赖二元醇诱导的锐钛矿型TiO 2 晶体表面态密度

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Owing to their fundamental importance and practical applications, anatase TiO_(2) crystals with well-defined {001} and {101} facets attracted intensive research interests. In this study, we systematically investigated solvent dependence of the photoreaction of the different coexposed crystal facets during noble metal photodeposition. By examining the deposition position in each solvent, we revealed that solvents play a pivotal role on the facet selectivity. On the basis of density functional theory calculations, the solvent molecules were found to modify both the crystal facet electronic structure and the {001}–{001} heterojunction. These modifications are not only the origin of diverse charge-carrier pathways but are also responsible for carrier accumulation at specific facets that increase their reductive power. These findings are vital for a better understanding of photocatalytic materials and an improved design for the next-generation materials.
机译:由于其基本的重要性和实际应用,具有清晰定义的{001}和{101}面的锐钛矿型TiO_(2)晶体引起了广泛的研究兴趣。在这项研究中,我们系统地研究了贵金属光沉积过程中不同共暴露晶体面的光反应的溶剂依赖性。通过检查每种溶剂中的沉积位置,我们发现溶剂对刻面选择性起着关键作用。根据密度泛函理论计算,发现溶剂分子同时改变了晶面电子结构和{001}-{001}异质结。这些修饰不仅是多种电荷载流子途径的起源,而且还导致载流子在特定面上积累,从而增加了其还原能力。这些发现对于更好地理解光催化材料和改进下一代材料的设计至关重要。

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