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一种新策略,用于获得垂直排列和分层的 TiO2 纳米片阵列/碳纤维布,作为无粘结剂电极,用于蛋白质浸渍、直接电化学和无介体葡萄糖传感。

A new strategy for achieving vertically-erected and hierarchical TiO2 nanosheets array/carbon cloth as a binder-free electrode for protein impregnation, direct electrochemistry and mediator-free glucose sensing.

机构信息

School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, 637459, Singapore.

School of Chemical and Biomedical Engineering, Nanyang Technological University, 62 Nanyang Drive, 637459, Singapore.

出版信息

Biosens Bioelectron. 2016 Mar 15;77:942-9. doi: 10.1016/j.bios.2015.10.070. Epub 2015 Oct 27.

Abstract

We present a new approach to directly grow uniform and highly-ordered TiO2 nanosheets array (NSA) on a low-cost flexible carbon cloth substrate while simultaneously fulfill precise TiO2 nanostructure tailoring and crystal phase control. The unique vertically-erected TiO2 NSA/carbon cloth with hierarchical structures was directly explored as electrode for enzyme immobilization and biosensing applications without suffering any influences of insulating binders usually used to fix nanomaterials on conductive substrates during sensor fabrications. Efficient direct electron transfer was successfully achieved for glucose oxidase (GOx) immobilized on the TiO2 NSA/carbon cloth, which produces a stable, mediator-free glucose sensor with good selectivity, high-sensitivity (52 μA mM(-1)cm(-2)), low response time (<5s) and low detection limit (23.4 μM, S/N=3). The mechanism of the superior direct electrochemical properties and sensing performance was investigated in detail, and discussed from the aspects of material nanostructure and crystalline form of TiO2 NSA, and an intimate contact between TiO2 and carbon cloth resulted from direct crystallization and growth of TiO2 nanosheets on the substrate.

摘要

我们提出了一种新的方法,可以直接在低成本的柔性碳纤维布基底上生长均匀且高度有序的 TiO2 纳米片阵列(NSA),同时实现精确的 TiO2 纳米结构剪裁和晶体相控制。独特的垂直取向的 TiO2 NSA/碳纤维布具有分级结构,可直接用作酶固定和生物传感应用的电极,而不会受到传感器制造过程中通常用于将纳米材料固定在导电基底上的绝缘粘合剂的影响。在 TiO2 NSA/碳纤维布上固定的葡萄糖氧化酶(GOx)实现了有效的直接电子转移,产生了一种具有良好选择性、高灵敏度(52 μA mM(-1)cm(-2))、低响应时间(<5s)和低检测限(23.4 μM,S/N=3)的无介体葡萄糖传感器。详细研究了这种优异的直接电化学性能和传感性能的机制,并从 TiO2 NSA 的材料纳米结构和晶体形式以及 TiO2 和碳纤维布之间的紧密接触等方面进行了讨论,这是由于 TiO2 纳米片在基底上的直接结晶和生长所致。

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