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Probing the kinetics in supramolecular chemistry and molecular assembly by microfluidic-NMR spectroscopy 被引量:1

Probing the kinetics in supramolecular chemistry and molecular assembly by microfluidic-NMR spectroscopy
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摘要 Microfluidic-NMR spectroscopy has been extended to study the kinetics in supramolecular chemistry and molecular assembly.Kinetics of a multicomponent host-guest supramolecular system containing viologen derivatives, β-cyclodextrins and cucurbit[7]urils are studied by a PMMA based microfluidic chip combined with a dedicated transmission line probe for NMR detection.By combining microfluidic technology with NMR spectroscopy, the amount of material required for a full kinetic study could be minimized. This is crucial in supramolecular chemistry, which often involves highly sophisticated and synthetically costly building blocks. The small size of the microfluidic structure is crucial in bringing the time scale for kinetic monitoring down to seconds. At the same time, the transmission line NMR probe provides sufficient sensitivity to work at low(2 m M) concentrations. Microfluidic-NMR spectroscopy has been extended to study the kinetics in supramolecular chemistry and molecular assembly. Kinetics of a multicomponent host-guest supramolecular system containing viologen derivatives, β-cyclodextrins and cucurbit [7]urils are studied by a PMMA based microfluidic chip combined with a dedicated transmission line probe for NMR detection. By combining microfluidic technology with NMR spectroscopy, the amount of material required for a full kinetic study could be minimized. This is crucial in supramolecular chemistry, which often involves highly sophisticated and synthetically costly building blocks. The small size of the microfluidic structure is crucial in bringing the time scale for kinetic monitoring down to seconds. At the same time, the transmission line NMR probe provides sufficient sensitivity to work at low (2 mM) concentrations.
出处 《Science China Chemistry》 SCIE EI CAS CSCD 2018年第11期1460-1464,共5页 中国科学(化学英文版)
基金 supported by the National Basic Research Program of China (2015CB856500) the National Natural Science Foundation of China (21722304, 21573181, 91227111, 91427304) the Fundamental Research Funds for the Central Universities of China (20720160050)
关键词 超分子 动力学 光谱学 化学 探查 汇编 NMR PMMA microfluidic-NMR molecular assembly host-guest chemistry kinetics
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