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Simulating Constant Current STM Images of the Rutile TiO2 (110) Surface for Applications in Solar Water Splitting

机译:模拟钢丝丝石TiO2(110)表面的恒定电流STM图像在太阳能分裂中的应用

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Solar water splitting has shown promise as a source of environmentally friendly hydrogen fuel. Understanding the interactions between semiconductor surfaces and water is essential to improve conversion efficiencies of water splitting systems. TiO2 has been widely adopted as a reference material and rutile surfaces have been studied experimentally and theoretically. Scanning Tunneling Microscopy (STM) is commonly used to study surfaces, as it probes the atomic and electronic structure of the surface layer. A systematic and transferable method to simulate constant current STM images using local atomic basis set methods is reported. This consists of adding more diffuse p and d functions to the basis sets of surface O and Ti atoms, in order to describe the long range tails of the conduction and valence bands (and, thus, the vacuum above the surface). The rutile TiO2 (110) surface is considered as a case study.
机译:太阳能水分裂已作为环保型氢燃料的来源。了解半导体表面和水之间的相互作用对于改善水分裂系统的转换效率至关重要。 TiO2已被广泛采用,作为参考材料,并在实验和理论上已经研究了金红石表面。扫描隧穿显微镜(STM)通常用于研究表面,因为它探测表面层的原子和电子结构。报道了使用局部原子基础设定方法模拟恒流STM图像的系统和可转移方法。这包括将更多的漫射P和D功能添加到基础组O和Ti原子的基组中,以描述导通和价带的长范围尾(并且因此,表面上方的真空)。金红石TiO2(110)表面被认为是案例研究。

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