Sedki Mohammed, Shen Yu, Mulchandani Ashok
Materials Science and Engineering Program, University of California, Riverside, CA 92521, USA.
Department of Chemical and Environmental Engineering, University of California, Riverside, CA 92521, USA.
Biosens Bioelectron. 2021 Mar 15;176:112941. doi: 10.1016/j.bios.2020.112941. Epub 2020 Dec 30.
Field-effect transistor (FET) is a very promising platform for biosensor applications due to its magnificent properties, including label-free detection, high sensitivity, fast response, real-time measurement capability, low running power, and the feasibility to miniaturize to a portable device. 1D (e.g. carbon nanotubes, Si nanowires, conductive polymer nanowires, 1D metal oxides, and others) and 2D (e.g. graphene materials, transition metal dichalcogenides, black phosphorus, and 2D metal oxides) materials, with their unique structural and electronic properties that are unavailable in bulk materials, have helped improve the sensitivity of FET biosensors and enabled detection down to single molecule. In this review, we give insights into the rapidly evolving field of 1D and 2D materials-based FET biosensors, with an emphasis on structure and electronic properties, synthesis, and biofunctionalization approaches of these nanomaterials. In addition, the progress in the 1D/2D-FET biosensors in North America, in the last decade, is summarized in tables. Moreover, challenges and future perspectives of 1D/2D-FET biosensors are covered.
场效应晶体管(FET)因其出色的特性,包括无标记检测、高灵敏度、快速响应、实时测量能力、低运行功耗以及可小型化为便携式设备的可行性,是生物传感器应用中一个非常有前景的平台。一维(如碳纳米管、硅纳米线、导电聚合物纳米线、一维金属氧化物等)和二维(如石墨烯材料、过渡金属二卤化物、黑磷和二维金属氧化物)材料,具有块体材料所不具备的独特结构和电子特性,有助于提高FET生物传感器的灵敏度,并实现单分子检测。在这篇综述中,我们深入探讨了基于一维和二维材料的FET生物传感器这一快速发展的领域,重点关注这些纳米材料的结构和电子特性、合成方法以及生物功能化方法。此外,还以表格形式总结了北美在过去十年中一维/二维FET生物传感器的进展。此外,还涵盖了一维/二维FET生物传感器面临的挑战和未来展望。