Yoon Jinho, Lee Taek, Choi Jeong-Woo
Department of Chemical & Biomolecular Engineering, Sogang University, 35 Baekbeom-Ro, Mapo-Gu, Seoul 04107, Korea.
Department of Chemical Engineering, Kwangwoon University, Wolgye-dong, Nowon-gu, Seoul 01899, Korea.
Micromachines (Basel). 2019 May 27;10(5):347. doi: 10.3390/mi10050347.
Bioelectronic devices have been researched widely because of their potential applications, such as information storage devices, biosensors, diagnosis systems, organism-mimicking processing system cell chips, and neural-mimicking systems. Introducing biomolecules including proteins, DNA, and RNA on silicon-based substrates has shown the powerful potential for granting various functional properties to chips, including specific functional electronic properties. Until now, to extend and improve their properties and performance, organic and inorganic materials such as graphene and gold nanoparticles have been combined with biomolecules. In particular, bionanohybrid materials that are composed of biomolecules and other materials have been researched because they can perform core roles of information storage and signal processing in bioelectronic devices using the unique properties derived from biomolecules. This review discusses bioelectronic devices related to computation systems such as biomemory, biologic gates, and bioprocessors based on bionanohybrid materials with a selective overview of recent research. This review contains a new direction for the development of bioelectronic devices to develop biocomputation systems using biomolecules in the future.
生物电子器件因其潜在应用而受到广泛研究,如信息存储设备、生物传感器、诊断系统、仿生处理系统细胞芯片和神经模拟系统。在硅基衬底上引入包括蛋白质、DNA和RNA在内的生物分子已显示出赋予芯片各种功能特性的强大潜力,包括特定的功能电子特性。到目前为止,为了扩展和改善其特性及性能,石墨烯和金纳米颗粒等有机和无机材料已与生物分子相结合。特别是,由生物分子和其他材料组成的生物纳米杂化材料已得到研究,因为它们可以利用生物分子的独特特性在生物电子器件中发挥信息存储和信号处理的核心作用。本综述基于生物纳米杂化材料,对与生物记忆、生物门和生物处理器等计算系统相关的生物电子器件进行了选择性概述。本综述包含了生物电子器件未来发展的新方向,即利用生物分子开发生物计算系统。