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Microcantilevers and organic transistors: two promising classes of label-free biosensing devices which can be integrated in electronic circuits

机译:微悬臂梁和有机晶体管:两大有希望的无标签生物传感设备可以集成到电子电路中

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摘要

Most of the success of electronic devices fabricated to actively interact with a biological environment relies on the proper choice of materials and efficient engineering of surfaces and interfaces. Organic materials have proved to be among the best candidates for this aim owing to many properties, such as the synthesis tunability, processing, softness and self-assembling ability, which allow them to form surfaces that are compatible with biological tissues. This review reports some research results obtained in the development of devices which exploit organic materials’ properties in order to detect biologically significant molecules as well as to trigger/capture signals from the biological environment. Among the many investigated sensing devices, organic field-effect transistors (OFETs), organic electrochemical transistors (OECTs) and microcantilevers (MCLs) have been chosen. The main factors motivating this choice are their label-free detection approach, which is particularly important when addressing complex biological processes, as well as the possibility to integrate them in an electronic circuit. Particular attention is paid to the design and realization of biocompatible surfaces which can be employed in the recognition of pertinent molecules as well as to the research of new materials, both natural and inspired by nature, as a first approach to environmentally friendly electronics.
机译:能够与生物环境主动互动的电子设备的大多数成功都取决于正确选择材料以及对表面和界面进行有效的工程设计。由于多种特性,例如合成可调性,加工性,柔软性和自组装能力,有机材料已被证明是实现此目标的最佳候选材料,这使它们能够形成与生物组织相容的表面。这篇评论报告了在开发利用有机材料特性以检测具有生物学意义的分子以及触发/捕获来自生物环境的信号的设备方面获得的一些研究结果。在众多研究的传感设备中,已经选择了有机场效应晶体管(OFET),有机电化学晶体管(OECT)和微悬臂梁(MCL)。促使这种选择的主要因素是它们的无标记检测方法,这种方法在解决复杂的生物过程时特别重要,并且可以将它们集成到电子电路中。特别注意可用于识别相关分子的生物相容性表面的设计和实现,以及对自然和自然界启发的新材料的研究,这是环保电子技术的第一种方法。

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