氨基酸
生物催化
铜
生物分析
化学
过氧化物酶
阿布茨
生物传感器
催化作用
组合化学
酶
有机化学
反应机理
色谱法
生物化学
抗氧化剂
DPPH
作者
Zhuofu Wu,Zhi Wang,Ye Zhang,Yali Ma,Chengyan He,Heng Li,Lei Chen,Qisheng Huo,Lei Wang,Zhengqiang Li
摘要
Abstract Functional molecules synthesized by self-assembly between inorganic salts and amino acids have attracted much attention in recent years. A simple method is reported here for fabricating hybrid organic–inorganic nanoflowers using copper (II) ions as the inorganic component and natural amino acids as the organic component. The results indicate that the interactions between amino acid and copper ions cause the growth of the nanoflowers composed by C, N, Cu, P and O elements. The Cu ions and Cu(AA) n complexes containing Cu-O bond are present in the nanoflowers. The nanoflowers have flower-like porous structure dominated by the R groups of amino acids with high surface-to-volume ratios, which is beneficial for exerting its peroxidase-like activity depending on Fenton-like reaction mechanism with ABTS and Rhodamine B as the substrates. It is expected that the nanoflowers hold great promise as enzyme mimics for application in the field of biosensor, bioanalysis and biocatalysis.
科研通智能强力驱动
Strongly Powered by AbleSci AI