Francis Bibi Mary, Sundaram Aravindkumar, Manavalan Rajesh Kumar, Peng Weng Kung, Zhang Han, Ponraj Joice Sophia, Chander Dhanabalan Sathish
Center for Advanced Materials, Aaivalayam-DIRAC Institute, Coimbatore, Tamil Nadu, India.
Institute of Natural Science and Mathematics, Ural Federal University, 620002 Yekaterinburg, Russia.
Nanophotonics. 2022 Sep 19;11(22):5019-5039. doi: 10.1515/nanoph-2022-0439. eCollection 2022 Dec.
With the maturing techniques for advanced synthesis and engineering of two-dimensional (2D) materials, its nanocomposites, hybrid nanostructures, alloys, and heterostructures, researchers have been able to create materials with improved as well as novel functionalities. One of the major applications that have been taking advantage of these materials with unique properties is biomedical devices, which currently prefer to be decentralized and highly personalized with good precision. The unique properties of these materials, such as high surface to volume ratio, a large number of active sites, tunable bandgap, nonlinear optical properties, and high carrier mobility is a boon to 'onics' (photonics/electronics) and 'omics' (genomics/exposomics) technologies for developing personalized, low-cost, feasible, decentralized, and highly accurate medical devices. This review aims to unfold the developments in point-of-care technology, the application of 'onics' and 'omics' in point-of-care medicine, and the part of two-dimensional materials. We have discussed the prospects of photonic devices based on 2D materials in personalized medicine and briefly discussed electronic devices for the same.
随着二维(2D)材料及其纳米复合材料、混合纳米结构、合金和异质结构的先进合成与工程技术的成熟,研究人员已经能够制造出具有改进功能以及新颖功能的材料。利用这些具有独特性能的材料的主要应用之一是生物医学设备,目前这类设备倾向于分散化且高度个性化,同时具备良好的精度。这些材料的独特性能,如高比表面积、大量活性位点、可调节的带隙、非线性光学特性以及高载流子迁移率,对于开发个性化、低成本、可行、分散且高度精确的医疗设备的“onics”(光子学/电子学)和“omics”(基因组学/暴露组学)技术来说是一大福音。本综述旨在揭示即时医疗技术的发展、“onics”和“omics”在即时医疗中的应用以及二维材料所起的作用。我们已经讨论了基于二维材料的光子器件在个性化医疗中的前景,并简要讨论了用于同一目的的电子器件。