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基于氧化锌的自供电电位型化学生物分子和金属离子传感器。

Zinc Oxide-Based Self-Powered Potentiometric Chemical Sensors for Biomolecules and Metal Ions.

机构信息

Department of Science and Technology, Linköping University, SE-60174 Norrköping, Sweden.

Department of Materials Engineering, School of Chemical and Materials Engineering, National University of Sciences and Technology, Islamabad 44000, Pakistan.

出版信息

Sensors (Basel). 2017 Jul 19;17(7):1645. doi: 10.3390/s17071645.

Abstract

Advances in the miniaturization and portability of the chemical sensing devices have always been hindered by the external power supply problem, which has focused new interest in the fabrication of self-powered sensing devices for disease diagnosis and the monitoring of analytes. This review describes the fabrication of ZnO nanomaterial-based sensors synthesized on different conducting substrates for extracellular detection, and the use of a sharp borosilicate glass capillary (diameter, d = 700 nm) to grow ZnO nanostructures for intracellular detection purposes in individual human and frog cells. The electrocatalytic activity and fast electron transfer properties of the ZnO materials provide the necessary energy to operate as well as a quick sensing device output response, where the role of the nanomorphology utilized for the fabrication of the sensor is crucial for the production of the operational energy. Simplicity, design, cost, sensitivity, selectivity and a quick and stable response are the most important features of a reliable sensor for routine applications. The review details the extra- and intra-cellular applications of the biosensors for the detection and monitoring of different metallic ions present in biological matrices, along with the biomolecules glucose and cholesterol.

摘要

在化学传感设备的小型化和便携化方面的进展一直受到外部电源问题的阻碍,这使得人们对用于疾病诊断和分析物监测的自供电传感设备的制造产生了新的兴趣。本综述描述了基于 ZnO 纳米材料的传感器的制造,这些传感器是在不同的导电衬底上合成的,用于细胞外检测,并使用尖锐的硼硅酸盐玻璃毛细管(直径,d = 700nm)来生长 ZnO 纳米结构,用于单个人类和青蛙细胞的细胞内检测。ZnO 材料的电催化活性和快速电子转移特性为其提供了必要的能量来运行以及快速的传感设备输出响应,其中用于制造传感器的纳米形态对于产生操作能量至关重要。简单性、设计、成本、灵敏度、选择性和快速稳定的响应是可靠传感器用于常规应用的最重要特征。该综述详细介绍了用于检测和监测生物基质中存在的不同金属离子以及生物分子葡萄糖和胆固醇的生物传感器的细胞内外应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42a9/5539625/f779dc22e1e3/sensors-17-01645-g001.jpg

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