葡萄糖氧化酶
石墨烯
材料科学
多孔性
生物传感器
纳米技术
混合材料
固定化酶
化学工程
复合材料
有机化学
化学
酶
工程类
作者
Hui Gu,Yidan Xing,Ping Xiong,Huiling Tang,Chenchen Li,Shu Chen,Rongjin Zeng,Kai Han,Guoyue Shi
出处
期刊:ACS applied nano materials
[American Chemical Society]
日期:2019-09-25
卷期号:2 (10): 6537-6545
被引量:139
标识
DOI:10.1021/acsanm.9b01465
摘要
Incorporating two-dimensional (2D) graphene sheets into a 3D graphene structure provides porous structures to bind enzyme but with low enzyme affinity and unstable structure because of removal of the surficial functional group and the flexibility of graphene sheets. To address this issue, we herein constructed a 3D porous Ti3C2Tx MXene–graphene (MG) hybrid film through a facile mixing–drying process. Ti3C2Tx MXene nanosheets (MNS) with hydrophilic groups on the rigid flakes endowed the MG hybrid film with open porous structure and a highly hydrophilic miroenvironment. By simply controlling the content of Ti3C2Tx MNS and graphene sheets, the sizes of the internal pores were accordingly tunable. The 3D porous hybrid film, fabricated from Ti3C2Tx MNS and graphene sheets (weight ratios of 1:2 abd 1:3), supplied more open structure to facilitate the glucose oxidase (GOx) entering the internal pores, which probably enhanced the stable immobilization and retaining of the GOx in the film. As a result, the as-proposed biosensor exhibited prominent electrochemical catalytic capability toward glucose biosensing, which was finally applied for glucose assay in sera. The preparation of the size-controlled 3D porous hybrid film provided a method for effectively binding enzymes/protein further to develop elegant biosensors.
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