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基于石墨烯纳米片/石墨化纳米金刚石的纳米复合材料用于无介体电化学传感尿素。

Graphene nanoplatelet/graphitized nanodiamond-based nanocomposite for mediator-free electrochemical sensing of urea.

机构信息

Central Scientific Instruments Organisation (CSIR-CSIO), Sector-30C, Chandigarh 160030, India; Academy of Scientific and Innovative Research, (AcSIR) CSIR-CSIO, Sector-30C, Chandigarh 160030, India; National Agri-Food Biotechnology Institute (NABI), S.A.S. Nagar, Punjab 140306, India; Department of Civil & Environmental Engineering, Hanyang University, 222 Wangsimni-Ro, Seoul 04763, Republic of Korea.

Central Scientific Instruments Organisation (CSIR-CSIO), Sector-30C, Chandigarh 160030, India; Academy of Scientific and Innovative Research, (AcSIR) CSIR-CSIO, Sector-30C, Chandigarh 160030, India.

出版信息

Food Chem. 2020 Jan 15;303:125375. doi: 10.1016/j.foodchem.2019.125375. Epub 2019 Aug 17.

Abstract

Urea is well-known to offer tremendous scope for sensing/diagnosing such as adulteration in dairy products or diseases in human body. This study was organized to describe and validate a new mediator-free, unsophisticated, and direct current voltage (IV)-based sensor for facile detection of urea using nanocomposites made of urease-immobilized graphene nanoplatelets and graphitized nanodiamonds. This nanocomposite displayed sensitive and direct signal in the form of current at 0 V without the need of any complex chemical reaction. This platform was highly sensitive (limit of detection of 5 μg/mL) far superior to the comparable systems introduced recently. The incorporation of graphitized nanodiamonds within the graphene nanoplatelets layers helped improve the sensitivity by a factor of three (up to 806.3 µA (mg mL) cm) with 20 s response time. As such, the use of this nanocomposite was helpful in improving sensing performances with enhanced enzyme loading capacity.

摘要

尿素在奶制品掺假或人体疾病的检测/诊断方面具有很大的应用潜力。本研究旨在描述和验证一种新的无中介、简单、基于直流电压 (IV) 的传感器,该传感器使用固定化脲酶的石墨烯纳米片和石墨化纳米金刚石的纳米复合材料,用于方便地检测尿素。该纳米复合材料以电流的形式直接灵敏地显示信号,无需任何复杂的化学反应,在 0 V 下。该平台具有很高的灵敏度(检测限低至 5 μg/mL),远优于最近报道的可比系统。在石墨烯纳米片层内加入石墨化纳米金刚石有助于将灵敏度提高三倍(高达 806.3 µA (mg mL ) cm),响应时间为 20 s。因此,这种纳米复合材料有助于提高传感性能,同时提高酶的负载能力。

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