Silicon-Based Biosensors: A Critical Review of Silicon's Role in Enhancing Biosensing Performance.

IF 4.9 3区 工程技术 Q1 CHEMISTRY, ANALYTICAL
Waqar Muhammad, Jaeyoon Song, Sehyeon Kim, Falguni Ahmed, Eunseo Cho, Huiseop Lee, Jinsik Kim
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Abstract

This review into recent advancements in silicon-based technology, with a particular emphasis on the biomedical applications of silicon sensors. Owing to their diminutive size, high sensitivity, and intrinsic compatibility with electronic systems, silicon-based sensors have found widespread utilization across healthcare, industrial, and environmental monitoring domains. In the realm of biomedical sensing, silicon has demonstrated significant potential to enhance human health outcomes while simultaneously driving progress in microfabrication techniques for multifunctional device development. The review systematically examines the versatile roles of silicon in the fabrication of electrodes, sensing channels, and substrates. Silicon electrodes are widely used in electrochemical biosensors for glucose monitoring and neural activity recording, while sensing channels in field-effect transistor biosensors enable the detection of cancer biomarkers and small molecules. Porous silicon substrates are applied in optical biosensors for label-free protein and pathogen detection. Key challenges in this field, including the interaction of silicon with biomolecules, the economic barriers to miniaturization, and issues related to signal stability, are critically analyzed. Proposed strategies to address these challenges and improve sensor functionality and reliability are also discussed. Furthermore, the article explores emerging developments in silicon-based biosensors, particularly their integration into wearable technologies. The pivotal role of artificial intelligence (AI) in enhancing the performance, functionality, and real-time capabilities of these sensors is also highlighted. This review provides a comprehensive overview of the current state, challenges, and future directions in the field of silicon-based biomedical sensing technologies.

硅基生物传感器:硅在提高生物传感性能中的作用综述。
本文综述了硅基技术的最新进展,特别强调了硅传感器在生物医学上的应用。由于其体积小、灵敏度高以及与电子系统的内在兼容性,硅基传感器在医疗保健、工业和环境监测领域得到了广泛的应用。在生物医学传感领域,硅已显示出增强人类健康结果的巨大潜力,同时推动了多功能设备开发微加工技术的进步。这篇综述系统地考察了硅在电极、传感通道和衬底制造中的多种作用。硅电极广泛应用于电化学生物传感器中,用于葡萄糖监测和神经活动记录,而场效应晶体管生物传感器中的传感通道可以检测癌症生物标志物和小分子。多孔硅衬底被用于光学生物传感器,用于无标记蛋白质和病原体检测。该领域的关键挑战,包括硅与生物分子的相互作用,小型化的经济障碍,以及与信号稳定性相关的问题,都进行了批判性的分析。提出的策略,以解决这些挑战,提高传感器的功能和可靠性也进行了讨论。此外,本文还探讨了硅基生物传感器的新兴发展,特别是它们与可穿戴技术的集成。人工智能(AI)在增强这些传感器的性能、功能和实时能力方面的关键作用也得到了强调。本文综述了硅基生物医学传感技术的现状、挑战和未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biosensors-Basel
Biosensors-Basel Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
CiteScore
6.60
自引率
14.80%
发文量
983
审稿时长
11 weeks
期刊介绍: Biosensors (ISSN 2079-6374) provides an advanced forum for studies related to the science and technology of biosensors and biosensing. It publishes original research papers, comprehensive reviews and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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