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Molecules and heterostructures at TiO2 surface: the cases of H2O, CO2, and organic and inorganic sensitizers

机译:TiO2表面的分子和异质结构:H 2 O,CO 2和有机和无机敏化剂的病例

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摘要

TiO2-based (nano)materials are widely exploited in systems and devices of actual technological interest, because of their outstanding physical and chemical properties, including chemical stability, long durability, non-toxicity abundance and low cost. For this, they are considered ideal for many practical applications including energy-related devices, photocatalysis, but are known to have some limitations. To improve their performance and then to find more efficient materials in the energy and environmental remediation fields, at first the investigation of the surface/interface properties at the molecular scale is required. In this contribution, a critical review of advances in the field of the TiO2 surface chemistry, highlighting the role of interactions at the molecular level, grafting and assembling/fabrication of suitable heterostructures, is reported. A few case studies, from the H2O, CO2 and acetylene interactions until to the grafting of organic/inorganic systems (graphene, MoS2) at the TiO2 surface, are highlighted. The discussed case studies are argued from their principles to the technological relevance.
机译:基于TiO2的(纳米)材料广泛利用了实际技术兴趣的系统和设备,因为它们出色的物理和化学性质,包括化学稳定性,耐久性,非毒性丰富和低成本。为此,它们被认为是许多实际应用的理想选择,包括能量相关装置,光催化,但是已知具有一些限制。为了提高它们的性能,然后在能量和环境修复领域找到更高效的材料,首先需要在分子尺度下进行表面/界面性质的研究。在这一贡献中,报道了TiO 2表面化学领域的进步的关键综述,突出了分子水平的相互作用,接枝和组装/制造合适的异质结构的作用。从H 2 O,CO 2和乙炔相互作用直到TiO 2表面的接枝到TiO 2表面的覆盖率,少一些案例研究。讨论的案例研究与他们的技术相关性的原则争论。

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