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Hybrid Silicon Nanowire Devices and Their Functional Diversity

机译:混合硅纳米线器件及其功能多样性

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摘要

In the pool of nanostructured materials, silicon nanostructures are known as conventionally used building blocks of commercially available electronic devices. Their application areas span from miniaturized elements of devices and circuits to ultrasensitive biosensors for diagnostics. In this Review, the current trends in the developments of silicon nanowire‐based devices are summarized, and their functionalities, novel architectures, and applications are discussed from the point of view of analog electronics, arisen from the ability of (bio)chemical gating of the carrier channel. Hybrid nanowire‐based devices are introduced and described as systems decorated by, e.g., organic complexes (biomolecules, polymers, and organic films), aimed to substantially extend their functionality, compared to traditional systems. Their functional diversity is explored considering their architecture as well as areas of their applications, outlining several groups of devices that benefit from the coatings. The first group is the biosensors that are able to represent label‐free assays thanks to the attached biological receptors. The second group is represented by devices for optoelectronics that acquire higher optical sensitivity or efficiency due to the specific photosensitive decoration of the nanowires. Finally, the so‐called new bioinspired neuromorphic devices are shown, which are aimed to mimic the functions of the biological cells, e.g., neurons and synapses.
机译:在纳米结构材料库中,硅纳米结构被公知为可商购电子设备的常规使用的构件。它们的应用范围从设备和电路的微型元件到用于诊断的超灵敏生物传感器。在本综述中,总结了基于硅纳米线的器件发展的当前趋势,并从模拟电子学的角度探讨了它们的功能,新颖的体系结构和应用,这是由于硅的(生物)化学门控能力引起的。运营商频道。引入并描述了基于混合纳米线的设备,该设备是由例如有机配合物(生物分子,聚合物和有机薄膜)装饰的系统,与传统系统相比,旨在大幅扩展其功能。考虑到它们的体系结构和应用领域,探讨了它们的功能多样性,概述了受益于涂层的几类设备。第一类是生物传感器,由于具有附着的生物受体,它们能够代表无标记的测定。第二组由用于光电的器件表示,该器件由于纳米线的特定光敏装饰而获得更高的光学灵敏度或效率。最后,显示了所谓的新型生物启发性神经形态装置,旨在模仿生物细胞的功能,例如神经元和突触。

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