化学
电子转移
共价键
电子
三嗪
锕系元素
铀
化学物理
纳米技术
物理化学
无机化学
核物理学
高分子化学
有机化学
物理
材料科学
作者
Liecheng Guo,Changzheng Tu,Yiwei Huang,Yajie Yang,Qing Yun Zhang,Zhiwu Yu,Feng Luo
标识
DOI:10.1021/acs.inorgchem.3c03483
摘要
Rational construction of strong electron-transfer materials remains a challenging task. Herein, we show a design rule for the construction of strong electron-transfer materials through covalently integrating electron-donoring Cu(I) clusters and electron-withdrawing triazine monomers together. As expected, Cu-CTF-1 (Cu(I)-triazine framework) was found to enable strong electron transfer up to 0.46|e| from each Cu(I) metal center to each adjacent triazine fragment. This finally leads to good spatial separation in both photogenerated electron–hole pairs and function units for photocatalytic uranium reduction under ambience and no sacrificial agent and to good charge separation of [I+][I5–] for I2 immobilization under extremely rigorous conditions. The results have not only opened up a structural design principle to access electron-transfer materials but also solved several challenging tasks in the field of radionuclide capture and CTFs.
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