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Synthesis, optical properties,and chemical-biological sensing applications of one-dimensional inorganic semiconductor nanowires

机译:一维无机半导体纳米线的合成,光学性质及化学生物学传感应用

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摘要

>One-dimensional inorganic semiconductor nanowires form an attractive class of materials for different sensing applications as a result of their distinctive size- and shape-dependent physical properties. Numerous synthesis and characterization methods have been developed in recent years to realize high-quality semiconductor nanowires with controllable dimensions, shape, and morphology. Additionally, a growing number of novel chemical and biological sensors with high sensitivity and selectivity have been developed based on semiconductor nanowires. In this review, several main approaches in synthesizing semiconductor nanowires, i.e., the vapor phase, solution phase, and template-based syntheses, are discussed. These include the vapor-liquid-solid (VLS), vapor-solid (VS), solution-liquid-solid (SLS), supercritical fluid-liquid-solid (SFLS), oriented attachment, and the hard and soft templates-assisted growth mechanisms. Next, the optical properties of these nanowires, in particular the UV-vis absorption, photo-luminescence, and Raman properties, are explored. Recent advances in the chemical and biological sensing applications of semiconductor nanowires are then presented. For instance, the applications of semiconductor nanowires as NH_3, H_2, NO_2, and other chemical and gas sensors as well as DNA, miRNA, glucose, uric acid, cysteine, and other biological sensors are briefly mentioned. Finally, this review summarizes and projects the future development of this field.
机译:>一维无机半导体纳米线因其独特的尺寸和形状相关的物理特性而成为一类有吸引力的材料,可用于不同的传感应用。近年来,已经开发了许多合成和表征方法,以实现具有可控制的尺寸,形状和形态的高质量半导体纳米线。另外,基于半导体纳米线,已经开发了越来越多的具有高灵敏度和选择性的新型化学和生物传感器。在本综述中,讨论了合成半导体纳米线的几种主要方法,即气相,溶液相和基于模板的合成。这些包括气液固(VLS),气固(VS),液固(SLS),超临界液固(SFLS),定向附着以及硬模板和软模板辅助生长机制。接下来,探索这些纳米线的光学性质,特别是紫外可见吸收,光致发光和拉曼性质。然后介绍了半导体纳米线在化学和生物传感应用中的最新进展。例如,简要提到了半导体纳米线的应用,如NH_3,H_2,NO_2和其他化学和气体传感器,以及DNA,miRNA,葡萄糖,尿酸,半胱氨酸和其他生物传感器。最后,本综述总结并预测了该领域的未来发展。

著录项

  • 来源
    《Progress in Materials Science》 |2013年第5期|705-748|共44页
  • 作者

    Kenry; Chwee Teck Lim;

  • 作者单位

    National University of Singapore Graduate School for integrative Sciences and Engineering,National University of Singapore, Singapore 117456, Singapore,Department of Bioengineering, National University of Singapore, Singapore 117576, Singapore;

    Department of Bioengineering, National University of Singapore, Singapore 117576, Singapore,Department of Mechanical Engineering, National University of Singapore, Singapore 117576, Singapore,Mechanobiology Institute, National University of Singapore, Singapore 117411, Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:49:43

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