Dipartimento di Scienza dei Materiali, Università di Milano-Bicocca , via R. Cozzi 55, I-20125 Milano, Italy.
ACS Appl Mater Interfaces. 2018 Feb 14;10(6):5793-5804. doi: 10.1021/acsami.7b18087. Epub 2018 Feb 5.
Beyond two-dimensional (2D) materials, interfaces between 2D materials and underlying supports or 2D-coated metal or metal oxide nanoparticles exhibit excellent properties and promising applications. The hybrid interface between graphene and anatase TiO shows great importance in photocatalytic, catalytic, and nanomedical applications due to the excellent and complementary properties of the two materials. Water, as a ubiquitous and essential element in practical conditions and in the human body, plays a significant role in the applications of graphene/TiO composites for both electronic devices and nanomedicine. Carbon vacancies, as common defects in chemically prepared graphene, also need to be considered for the application of graphene-based materials. Therefore, the behavior of water on top and at the interface of defective graphene on anatase TiO surface was systematically investigated by dispersion-corrected hybrid density functional calculations. The presence of the substrate only slightly enhances the on-top adsorption and reduces the on-top dissociation of water on defective graphene. However, at the interface, dissociated water is largely preferred compared with undissociated water on bare TiO surface, showing a prominent cover effect. Reduced TiO may further induce oxygen diffusion into the bulk. Our results are helpful to understand how the presence of water in the surrounding environment affects structural and electronic properties of the graphene/TiO interface and thus its application in photocatalysis, electronic devices, and nanomedicine.
超越二维(2D)材料,二维材料与底层支撑或二维涂层金属或金属氧化物纳米粒子之间的界面表现出优异的性能和有前途的应用。由于两种材料的优异和互补特性,石墨烯和锐钛矿 TiO 之间的杂化界面在光催化、催化和纳米医学应用中具有重要意义。水作为实际条件和人体中普遍存在且必不可少的元素,在石墨烯/TiO 复合材料的电子器件和纳米医学应用中发挥着重要作用。对于基于石墨烯的材料的应用,还需要考虑化学制备的石墨烯中常见的碳空位缺陷。因此,通过色散校正的杂化密度泛函计算,系统研究了水在缺陷石墨烯顶部和在锐钛矿 TiO 表面上的界面上的行为。衬底的存在仅略微增强了顶部吸附,并降低了顶部水在缺陷石墨烯上的离解。然而,在界面处,与裸 TiO 表面上的未离解水相比,离解水更倾向于存在,表现出明显的覆盖效应。还原的 TiO 可能进一步诱导氧扩散到体相。我们的结果有助于理解周围环境中水的存在如何影响石墨烯/TiO 界面的结构和电子性质,从而影响其在光催化、电子器件和纳米医学中的应用。