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纳米线电子学:从纳米尺度到宏观尺度。

Nanowire Electronics: From Nanoscale to Macroscale.

作者信息

Jia Chuancheng, Lin Zhaoyang, Huang Yu, Duan Xiangfeng

机构信息

Department of Chemistry and Biochemistry , University of California, Los Angeles , Los Angeles , California 90095 , United States.

Department of Materials Science and Engineering , University of California, Los Angeles , Los Angeles , California 90095 , United States.

出版信息

Chem Rev. 2019 Aug 14;119(15):9074-9135. doi: 10.1021/acs.chemrev.9b00164. Epub 2019 Jul 30.

Abstract

Semiconductor nanowires have attracted extensive interest as one of the best-defined classes of nanoscale building blocks for the bottom-up assembly of functional electronic and optoelectronic devices over the past two decades. The article provides a comprehensive review of the continuing efforts in exploring semiconductor nanowires for the assembly of functional nanoscale electronics and macroelectronics. Specifically, we start with a brief overview of the synthetic control of various semiconductor nanowires and nanowire heterostructures with precisely controlled physical dimension, chemical composition, heterostructure interface, and electronic properties to define the material foundation for nanowire electronics. We then summarize a series of assembly strategies developed for creating well-ordered nanowire arrays with controlled spatial position, orientation, and density, which are essential for constructing increasingly complex electronic devices and circuits from synthetic semiconductor nanowires. Next, we review the fundamental electronic properties and various single nanowire transistor concepts. Combining the designable electronic properties and controllable assembly approaches, we then discuss a series of nanoscale devices and integrated circuits assembled from nanowire building blocks, as well as a unique design of solution-processable nanowire thin-film transistors for high-performance large-area flexible electronics. Last, we conclude with a brief perspective on the standing challenges and future opportunities.

摘要

在过去二十年里,半导体纳米线作为自下而上组装功能性电子和光电器件的最具明确界定的纳米级构建块之一,已引起广泛关注。本文全面回顾了在探索用于组装功能性纳米级电子器件和宏观电子器件的半导体纳米线方面所做的持续努力。具体而言,我们首先简要概述各种半导体纳米线和纳米线异质结构的合成控制,包括精确控制的物理尺寸、化学成分、异质结构界面和电子特性,以此确定纳米线电子学的材料基础。然后,我们总结了为创建具有可控空间位置、取向和密度的有序纳米线阵列而开发的一系列组装策略,这些策略对于用合成半导体纳米线构建日益复杂的电子器件和电路至关重要。接下来,我们回顾基本的电子特性和各种单纳米线晶体管概念。结合可设计的电子特性和可控的组装方法,我们接着讨论了一系列由纳米线构建块组装而成的纳米级器件和集成电路,以及用于高性能大面积柔性电子学的可溶液处理的纳米线薄膜晶体管的独特设计。最后,我们简要展望了现存的挑战和未来的机遇。

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