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The power of dissociation: development of displacement assays for chemosensing and latent catalytic systems
Materials Chemistry Frontiers ( IF 6.0 ) Pub Date : 2020-02-26 , DOI: 10.1039/c9qm00639g
Cheuk-Fai Chow 1, 2, 3 , Anxun Zheng 1, 2, 3 , Min Huang 1, 2, 3 , Chang Shen 1, 2, 3
Affiliation  

Disassembly is an essential process in supramolecular chemistry, and its exploitation has resulted in the development of four different displacement assays: (a) indicator-displacement assay (IDA), (b) indicator/catalyst-displacement assay (ICDA), (c) catalytic/indicator-displacement assay (CIDA), and (d) catalyst-displacement assay (CDA). These consist of bimetallic donor–acceptor ensembles (BmDAEs), which incorporate various metallic signal transducers, receptors, inhibitors, catalysts, and pre-catalysts. Applications thereof include pollutant degradation, signal amplification, chemosensing detection, and latent catalysis. This review discusses the use of bimetallic supramolecular systems for the development of catalysts, chemosensors, and chemodosimeters.

中文翻译:

解离的力量:化学传感和潜在催化系统的位移测定法的发展

拆卸是超分子化学中必不可少的过程,其开发已导致开发了四种不同的置换测定:(a)指示剂置换测定(IDA),(b)指示剂/催化剂置换测定(ICDA),(c)催化/指标置换试验(CIDA)和(d)催化剂置换试验(CDA)。这些由双金属供体-受体组(BmDAE)组成,其中包含各种金属信号转导剂,受体,抑制剂,催化剂和预催化剂。其应用包括污染物降解,信号放大,化学传感检测和潜在催化。这篇综述讨论了使用双金属超分子系统开发催化剂,化学传感器和化学计量仪。
更新日期:2020-02-26
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