连接器
电子结构
金属有机骨架
材料科学
配体(生物化学)
电荷(物理)
节点(物理)
光催化
电子转移
金属
激发态
化学
纳米技术
计算机科学
化学物理
计算化学
光化学
物理化学
物理
有机化学
催化作用
受体
核物理学
吸附
冶金
操作系统
量子力学
生物化学
作者
Arthur De Vos,Kevin Hendrickx,Pascal Van Der Voort,Véronique Van Speybroeck,Kurt Lejaeghere
标识
DOI:10.1021/acs.chemmater.6b05444
摘要
UiO-66 is a promising metal-organic framework for photocatalytic applications. However, the ligand-to-metal charge transfer of an excited electron is inefficient in the pristine material. Herein, we assess the influence of missing linker defects on the electronic structure of UiO-66 and discuss their ability to improve ligand-to-metal charge transfer. Using a new defect classification system, which is transparent and easily extendable, we identify the most promising photocatalysts by considering both relative stability and electronic structure. We find that the properties of UiO-66 defect structures largely depend on the coordination of the constituent nodes and that the nodes with the strongest local distortions alter the electronic structure most. Defects hence provide an alternative pathway to tune UiO-66 for photocatalytic purposes, besides linker modification and node metal substitution. In addition, the decomposition of MOF properties into node- and linker-based behavior is more generally valid, so we propose orthogonal electronic structure tuning as a paradigm in MOF design.
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