2019

Design of a Zn-MOF biosensor via a ligand "lock" for the recognition and distinction of S-containing amino acids.

Chemical communications (Cambridge, England) Wu XQ, Liu Y, Feng PQ, Wei XH, Yang GM, Qiu XH, Ma JG
阅读原文 PDF DOI PubMed

组成图示

示意图生成中

传感器类型

检测对象

检测原理

检测灵敏度

效应效果

传感器的构成

中文摘要

英文摘要

Two new 2D Zn(ii) metal-organic frameworks (MOFs) {[Zn2(L)2(μ2-O)(H2O)3]·3DMA}n (Zn-1) and [Zn2(L)2(2,2'-bipy)(μ2-O)(H2O)2]n (Zn-2) (H2L = 2,5-thiophene dicarboxylic acid, bipy = 2,2'-dipyridyl) were designed and synthesized. Through the strategy of introducing bipy as a "lock", Zn-1 was transferred to Zn-2via a crystal-to-crystal process, which showed significantly enhanced solvent and air stability compared to that of Zn-1. Without post modification, Zn-2 was used as an electrode modified material to construct sensors for the electrochemical recognition and distinction of S-containing amino acids, including l-cysteine, l-methionine and l-cystine.

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