纳米材料
检出限
过氧化物酶
共轭体系
量子点
氧化物
催化作用
线性范围
纳米技术
碳纤维
化学
半胱氨酸
组合化学
材料科学
酶
复合数
有机化学
色谱法
复合材料
聚合物
作者
Xihong Guo,Huan Huang,Rongli Cui,Dongmei Wang,Jiali Liu,Dan Wang,Shuhu Liu,Yidong Zhao,Jinquan Dong,Baoyun Sun
标识
DOI:10.1021/acsabm.2c00361
摘要
As one of the typical carbon nanomaterials, graphdiyne (GDY) with unique chemical, physical, and electronic properties has a great potential in various fields. Although it is an important member of carbon nanozymes, the research on its intrinsic enzyme mimetic properties and applications is still limited. Herein, graphdiyne oxide quantum dots (GDYO QDs) have been synthesized through oxidative cleavage, which exhibit enhanced peroxidase-like activity with lower Km and higher Vmax than those of most carbon-based nanozymes. The catalytic mechanism is explored, showing that the enhanced catalytic performance is attributed to the good conjugated structure, large number of oxygen-containing groups, and small-sized nanosheets with few layers. As a kind of peroxidase mimetic, the GDY-based nanozyme has excellent potential in sensing H2O2 and biological antioxidants through the colorimetric assay, with a linear range from 5 to 500 μM and detection limit of 1.5 μM for H2O2 and a linear range from 0 to 90 μM and detection limit of 0.48 μM for l-cysteine. Our work will be beneficial to develop high-performance artificial enzymes and to understand their mechanism for better applications.
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