Emerging tellurium nanostructures: controllable synthesis and their applications

被引:220
作者
He, Zhen [1 ]
Yang, Yuan [1 ]
Liu, Jian-Wei [1 ]
Yu, Shu-Hong [1 ]
机构
[1] Chinese Acad Sci, Univ Sci & Technol China,Div Nanomat & Chem,Hefei, Hefei Natl Lab Phys Sci Microscale,CAS Ctr Excell, Dept Chem,Collaborat Innovat Ctr Suzhou Nano Sci, Hefei 230026, Peoples R China
基金
中国国家自然科学基金;
关键词
ENHANCED THERMOELECTRIC PROPERTIES; ENVIRONMENTALLY BENIGN SYNTHESIS; ONE-DIMENSIONAL NANOSTRUCTURES; SURFACTANT-ASSISTED SYNTHESIS; LARGE-SCALE SYNTHESIS; GROWTH-MECHANISM; HIGH-QUALITY; TE NANOWIRES; THIN-FILMS; P-TYPE;
D O I
10.1039/c7cs00013h
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Tellurium (Te) is a rare element in trace amounts of about one part per billion, comparable to that of platinum and ranked 75th in the abundance of the elements in the earth crust. Te nanostructures, as narrow bandgap semiconductors, have numerous potential applications in the fabrication of many modern devices. The past decades have witnessed an explosion in new strategies for synthesizing diverse emerging Te nanostructures with controlled compositions, sizes, shapes, and structures. Their structure-determined nature makes functional Te nanomaterials an attractive candidate for modern applications. This review focuses on the synthesis and morphology control of emerging Te nanostructures and summarizes the latest developments in the applications of Te nanostructures, such as their use as chemical transformation templates to access a huge family of nanowires/nanotubes, batteries, photodetectors, ion detection and removal, element doping, piezoelectric energy harvesting, gas sensing, thermoelectric devices and many other device applications. Various Te nanostructures with different shapes and structures will exploit the beneficial properties associated with their assembly process and nanofabrication. Finally, the prospects for future applications of Te nanomaterials are summarized and highlighted.
引用
收藏
页码:2732 / 2753
页数:22
相关论文
共 258 条
[91]   Three-dimensional hierarchical Te-Si nanostructures [J].
Lim, Jae-Hong ;
Shin, Gyeong-Jin ;
Hwang, Tae-Yeon ;
Lim, Hyo-Ryoung ;
Lee, Young-In ;
Lee, Kyu-Hwan ;
Kim, Sung-Dae ;
Oh, Min-Wook ;
Park, Su-Dong ;
Myung, Nosang V. ;
Choa, Yong-Ho .
NANOSCALE, 2014, 6 (20) :11697-11702
[92]   Intrinsic current-voltage properties of nanowires with four-probe scanning tunneling microscopy: A conductance transition of ZnO nanowire [J].
Lin, X. ;
He, X. B. ;
Yang, T. Z. ;
Guo, W. ;
Shi, D. X. ;
Gao, H. -J. ;
Ma, D. D. D. ;
Lee, S. T. ;
Liu, F. ;
Xie, X. C. .
APPLIED PHYSICS LETTERS, 2006, 89 (04)
[93]   Selective growth of gold nanoparticles onto tellurium nanowires via a green chemical route [J].
Lin, Zong-Hong ;
Lin, Yang-Wei ;
Lee, Kun-Hong ;
Chang, Huan-Tsung .
JOURNAL OF MATERIALS CHEMISTRY, 2008, 18 (22) :2569-2572
[94]   Preparation of gold-tellurium hybrid nanomaterials for surface-enhanced Raman spectroscopy [J].
Lin, Zong-Hong ;
Chang, Huan-Tsung .
LANGMUIR, 2008, 24 (02) :365-367
[95]   Preparation of fluorescent tellurium nanowires at room temperature [J].
Lin, Zong-Hong ;
Yang, Zusing ;
Chang, Huan-Tsung .
CRYSTAL GROWTH & DESIGN, 2008, 8 (01) :351-357
[96]  
Liu J. W., 2014, ANGEW CHEM, V126, P13695
[97]   Systematic Synthesis of Tellurium Nanostructures and Their Optical Properties: From Nanoparticles to Nanorods, Nanowires, and Nanotubes [J].
Liu, Jian-Wei ;
Xu, Jie ;
Hu, Wei ;
Yang, Jin-Long ;
Yu, Shu-Hong .
CHEMNANOMAT, 2016, 2 (03) :167-170
[98]   Emergent motifs of macroscopic nanowire assemblies [J].
Liu, Jian-Wei ;
Yu, Shu-Hong .
NATIONAL SCIENCE REVIEW, 2015, 2 (04) :392-393
[99]   Ultrathin Hetero-Nanowire-Based Flexible Electronics with Tunable Conductivity [J].
Liu, Jian-Wei ;
Huang, Wei-Ran ;
Gong, Ming ;
Zhang, Meng ;
Wang, Jin-Long ;
Zheng, Jing ;
Yu, Shu-Hong .
ADVANCED MATERIALS, 2013, 25 (41) :5910-5915
[100]   Ultrathin W18O49 Nanowire Assemblies for Electrochromic Devices [J].
Liu, Jian-Wei ;
Zheng, Jing ;
Wang, Jin-Long ;
Xu, Jie ;
Li, Hui-Hui ;
Yu, Shu-Hong .
NANO LETTERS, 2013, 13 (08) :3589-3593