论文标题
石墨烯的独特电子性能启用了超敏感的现场效应生物传感器
Ultrasensitive Field-Effect Biosensors Enabled by the Unique Electronic Properties of Graphene
论文作者
论文摘要
这篇综述概述了基于石墨烯的纳米电子生化传感器的当前发展。石墨烯由单层共轭碳原子组成,具有出色的高载体迁移率和低固有的电噪声,但具有化学惰性的表面。因此,表面功能化对于阐明石墨烯敏感性和选择性的选择性至关重要。为了实现石墨烯晶体管的最佳性能进行生化感测,突出显示了通过表面功能化和钝化石墨烯表面性能的调整,以及通过多频率的歧义性歧义型齐极构型配置和高频测量方案通过高频筛选来实现DeDebye筛选以实现低噪声和高度敏感的探测来调整其电气操作。也提出了超敏地石墨烯电子生化传感器的潜在应用和潜在目标,从环境监测和食品安全,医疗保健和医学诊断到生命科学研究。
This review provides a critical overview of current developments on nanoelectronic biochemical sensors based on graphene. Composed of a single layer of conjugated carbon atoms, graphene has outstanding high carrier mobility and low intrinsic electrical noise, but a chemically inert surface. Surface functionalization is therefore crucial to unravel graphene sensitivity and selectivity for the detection of targeted analytes. To achieve optimal performance of graphene transistors for biochemical sensing, the tuning of the graphene surface properties via surface functionalization and passivation is highlighted, as well as the tuning of its electrical operation by utilizing multifrequency ambipolar configuration and a high frequency measurement scheme to overcome the Debye screening to achieve low noise and highly sensitive detection. Potential applications and prospectives of ultrasensitive graphene electronic biochemical sensors ranging from environmental monitoring and food safety, healthcare and medical diagnosis, to life science research, are presented as well.