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首页> 外文期刊>Angewandte Chemie >Chemical Engineering of Photoactivity in Heterometallic Titanium-Organic Frameworks by Metal Doping
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Chemical Engineering of Photoactivity in Heterometallic Titanium-Organic Frameworks by Metal Doping

机译:金属掺杂杂象钛有机框架的光学化学工程

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摘要

We report a new family of titanium-organic frameworks that enlarges the limited number of crystalline, porous materials available for this metal. They are chemically robust and can be prepared as single crystals at multi-gram scale from multiple precursors. Their heterometallic structure enables engineering of their photoactivity by metal doping rather than by linker functionalization. Compared to other methodologies based on the post-synthetic metallation of MOFs, our approach is well-fitted for controlling the positioning of dopants at an atomic level to gain more precise control over the band-gap and electronic properties of the porous solid. Changes in the band-gap are also rationalized with computational modelling and experimentally confirmed by photocatalytic H-2 production.
机译:我们报告了一个新的钛有机框架系列,可扩大该金属可用的有限数量的结晶材料,多孔材料。 它们是化学稳健的,可以以多克从多个前体的多克刻度制备为单晶。 它们的杂动机结构使其能够通过金属掺杂而不是通过接头官能化来工程。 与基于MOF的合成后金属的其他方法相比,我们的方法适合于控制掺杂剂在原子水平上的定位,以提高对多孔固体的带间隙和电子性质的更精确控制。 带隙的变化也与计算建模合理化,并通过光催化H-2生产实验证实。

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