化学
对映选择合成
对映体
催化作用
色氨酸
电化学
组合化学
检出限
氢氧化物
对映体过量
吸光度
立体化学
立体异构
作者
Qianxiu Pan,Shida Ma,Hongmei Sun,Feifei Jiang,Jixiang Zhang,Lin Cui,Jin Zhou
标识
DOI:10.1021/acs.analchem.6c01268
摘要
Designing a nanozyme with high enantioselectivity and efficient catalytic activity is of great significance in enantioselective analysis and asymmetric catalysis. In this work, chiral cysteine-inserted iron/cobalt layered double hydroxide nanozymes (Cys-LDH) were synthesized. The l -configuration LDH nanozyme ( l -Cys-LDH) displayed stronger catalytic ability for the oxidation of 3,3′,5,5′-tetramethylbenzidine (TMB) by H 2 O 2, and exhibited higher recognition ability toward tryptophan (Trp) isomers than d -configuration LDH. The identification of l -Cys-LDH toward Trp enantiomers was achieved according to the absorbance ratio (2.75) in the colorimetric mode and the peak potential deviation (44 mV) and impedance change (647 Ω) in the electrochemical mode. This dual-mode sensor can effectively detect the Trp enantiomer with a detection limit of 24 μM for the colorimetric mode and 0.63 μM for the electrochemical mode. This work provides references for further application of nanozymes in enantioselective recognition and catalysis.
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