化学
光化学
光催化
吸附
发光
选择性
可见光谱
配体(生物化学)
光致发光
金属有机骨架
水溶液中的金属离子
离子
催化作用
物理化学
有机化学
光电子学
受体
物理
生物化学
作者
Huan-Yu Yin,Qing Li,Tianhui Liu,Jie Liu,Ying-Tong Qin,Yang Wang,Wei-Li Zhai,Xin-Bin Cai,Zhigang Wang,Wei Zhu
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2024-01-17
卷期号:63 (4): 1816-1827
被引量:38
标识
DOI:10.1021/acs.inorgchem.3c03268
摘要
A novel doubly interpenetrated indium-organic framework of 1 has been assembled by In3+ ions and highly conjugated biquinoline carboxylate-based bitopic connectors (H2L). The isolated 1 exhibits an anionic framework possessing channel-type apertures repleted with exposed quinoline N atoms and carboxyl O atoms. Owing to the unique architecture, 1 displays a durable photoluminescence effect and fluorescence quenching sensing toward CrO42-, Cr2O72-, and Cu2+ ions with reliable selectivity and anti-interference properties, fairly high detection sensitivity, and rather low detection limits. Ligand-to-ligand charge transition (LLCT) was identified as the essential cause of luminescence by modeling the ground state and excited states of 1 using DFT and TD-DFT. In addition, the negatively charged framework has the ability to rapidly capture single cationic MB, BR14, or BY24 and their mixture, including the talent to trap MB from the (MB + MO) system with high selectivity. Moreover, intrinsic light absorption capacity and band structure feature endow 1 with effective photocatalytic decomposition ability toward reactive dyes RR2 and RB13 under ultraviolet light. Notably, after further polishing the band structure state of 1 by constructing the S-scheme heterojunction of In2S3/1, highly efficient photocatalytic detoxification of Cr(VI) and degradation of reactive dyes have been fully achieved under visible light. This finding may open a new avenue for designing novel multifunctional MOF-based platforms to address some intractable environmental issues, i.e., detection of heavy metal ions, physical capture of pony-sized dyes, and photochemical decontamination of ultrastubborn reactive dyes and highly toxic Cr(VI) ions from water.
科研通智能强力驱动
Strongly Powered by AbleSci AI