Literature DB >> 29185771

Centimeter-Long Single-Crystalline Si Nanowires.

Bing-Chang Zhang1,2, Hui Wang1, Le He2, Cai-Jun Zheng1,3, Jian-Sheng Jie2, Yeshayahu Lifshitz2,4, Shuit-Tong Lee2, Xiao-Hong Zhang1,2.   

Abstract

The elongation of free-standing one-dimensional (1D) functional nanostructures into lengths above the millimeter range has brought new practical applications as they combine the remarkable properties of nanostructured materials with macroscopic lengths. However, it remains a big challenge to prepare 1D silicon nanostructures, one of the most important 1D nanostructures, with lengths above the millimeter range. Here we report the unprecedented preparation of ultralong single-crystalline Si nanowires with length up to 2 cm, which can function as the smallest active material to facilitate the miniaturization of macroscopic devices. These ultralong Si nanowires with augmented flexibility are of emerging interest for flexible electronics. We also demonstrate the first single-nanowire-based wearable joint motion sensor with superior performance to reported systems, which just represents one example of novel devices that can be built from these nanowires. The preparation of ultralong Si nanowires will stimulate the fabrication and miniaturization of electric, optical, medical, and mechanical devices to impact the semiconductor industry and our daily life in the near future.

Entities:  

Keywords:  Ultralong nanostructures; VLS; flexible electronics; silicon nanowires; strain sensors

Year:  2017        PMID: 29185771     DOI: 10.1021/acs.nanolett.7b02967

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  1 in total

1.  Wafer-Scale Fabrication of Silicon Nanocones via Controlling Catalyst Evolution in All-Wet Metal-Assisted Chemical Etching.

Authors:  Chenyu Bian; Bingchang Zhang; Zhenghe Zhang; Hui Chen; Dake Zhang; Shaojun Wang; Jing Ye; Le He; Jiansheng Jie; Xiaohong Zhang
Journal:  ACS Omega       Date:  2022-01-04
  1 in total

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