用于生物传感器的化学修饰石墨烯平台研究

M. Fadhlina, A. R. Ruslinda, M. K. Md Arshad, S. Gopinath, M. F. Fatin, C. Voon, K. L. Foo, U. Hashim, R. M. Ayub
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摘要

由于石墨烯材料具有电导率、导热性、大表面积、高断裂强度、高杨氏模量和生物相容性等独特性能,近年来生物传感器平台发展迅速。在这项工作中,研究了化学修饰的氧化石墨烯溶液在生物传感器应用中的电性能。在100、200和300℃的不同温度下,将氧化石墨烯溶液手动喷涂在硅衬底上。在这些温度之外,在100°C时,还原氧化石墨烯的表面形貌在电测量中表现出更好的性能。采用原子力显微镜(AFM)和扫描电镜(sem)对石墨烯的表面形貌进行观察,研究了石墨烯的热还原和形成过程。然后使用APTES进行表面改性,并进行电流-电压(i-v)的电特性测试。
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Study on chemically modified graphene platforms for biosensor applications
The biosensor platform of graphene material has grown rapidly in the past few years due to their unique properties in electrical, thermal conductivity, large surface area, high fracture strength, high young modulus and biocompatibility. In this work, the chemically modified graphene oxide solutions were studied for electrical performance toward biosensor applications. The graphene oxide solutions were sprayed manually on top of silicon substrate at various temperatures of 100, 200 and 300°C, respectively. Out of those temperatures, at 100°C, the surface morphology of reduction graphene oxide showed a better performance in electrical measurement. Atomic Force Microscopy (AFM) and Scanning Electron Microscopy were carried out to investigate the thermal reduction and the formation of graphene through surface morphology observation. Then a surface modification will conducted using APTES and electrical characteristic of the current-voltage (i-v) were performed.
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