Application of CNTs Based on Their Unique Electrical Properties

Authors

  • Yujie Xie

DOI:

https://doi.org/10.54097/hset.v58i.10129

Keywords:

CNTs, Electrical properties, Electrochemical device, electronic device, Photoelectric device.

Abstract

Ever since carbon nanotubes (CNTs) were discovered, because of their exceptionally impressive mechanical, chemical, and electrical properties, CNTs have garnered considerable interest and investigation from experts throughout the world, accelerating the development of nanoscience and technology. The unique tubular structure of CNTs enables them to have excellent electrical properties and can be used in all aspects of electrical devices. Therefore, this paper collects all aspects of applications and applicable optimization schemes based on the electrical properties of CNTs. The main applications of the electrical properties of nanotubes are summarized. It is discovered that CNTs' electrical characteristics are primarily reflected in the electrochemical devices, photoelectric devices as well as electronic devices. CNTs have tremendous potential for applications in these fields and can greatly improve the performance of related devices and devices. The large-scale production and application of CNTs in related fields will benefit the development of energy, photoelectric and electronic devices worldwide.

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References

Rebecca L. Pinals, Francis Ledesma, Darwin Yang, Nicole Navarro, Sanghwa Jeong, John E. Pak, Lili Kuo, Yung-Chun Chuang, Yu-Wei Cheng, Hung-Yu Sun, and Markita P. Landry Nano Letters 2021 21 (5), 2272 - 2280.

Liu Jianhong, Wu Shuangquan, He Chuanxin, et al. The Structure, Properties, and Applications of Carbon Nanotubes and Carbon Microtubes [J]. Journal of Shenzhen University (Science and Technology Edition), 2013, 30 (01): 1 - 11.

Cao Wei, Song Xuemei, Wang Bo, et al. Research progress on carbon nanotubes [J]. Materials Introduction, 2007 (S1): 77 - 82.

Guo Xiaozheng, A Libao, Chang Chunrui. Research progress in carbon nanotube/liquid crystal composites [J]. Liquid Crystal and Display, 2022, 37 (11): 1375 - 1394.

Guan Zhong. Application of carbon nanotubes in organic solar cell [J]. Journal of Natural Science of Hunan Normal University, 2009, 32 (01): 63 - 66.

Li Zhiqiang Research on the Model of Carbon Nanotube Field Effect Transistors [D]. Hangzhou University of Electronic Science and Technology, 2022. DOI: 10.27075/dc.cnki. ghzdc.2022.000172.

Zhang Bailun, Wang Kai, Li Jiahui, et al. Research progress of nano carbon materials for lithium-ion batteries [J]. Materials Introduction, 2022, 36 (20): 115 - 127.

Zhang Renyi, Zhang Xiaoyan, Fan Huajun, et al. Research progress in supercapacitors based on carbon nanotubes [J]. Applied Chemistry, 2011, 28 (05): 489 - 499.

Quan Yufei Preparation and Electrochemical Properties of Non-Precious Transition Metal (Fe, Co, Ni, Cu) Oxide Composite Electrode Materials [D]. Xi'an University of Technology, 2022. DOI: 10.27391/d.cnki. gxagu.2022.000114.

Wang Huiying, A Libao. Research progress in electrode materials for supercapacitors based on carbon nanotubes [J]. Modern Chemical Industry, 2023,43 (03): 30-35. DOI: 10.16606/j.cnki.issn0253-4320.2023.03.007.

Wang Ya, Ding Guoxin, Qian Yanfeng, et al. Research progress on dye sensitive solar cells and TiO2 based photoanodes [J/OL]. New Chemical Materials: 1-11 [2023-04-19] http://kns.cnki.net/kcms/detail/11.2357.TQ.20230104.0951.013.html.

Wang Zhiguo, Deng Yingying, Dang Jiao'e, et al. Construction and catalytic properties of nitrogen doped carbon nanotubes modified with Fe/Cu [J]. Journal of inorganic chemistry, 2022, 38 (11): 2181 - 2190.

Huang Junhua Preparation and performance study of high-efficiency non fullerene organic solar cell [D]. Guizhou University, 2022. DOI: 10.27047/d.cnki.ggudu.2022.002433.

Xu Da Preparation and Performance Study of Organic Electroluminescent Devices with Touch Response [D]. University of Electronic Science and Technology, 2022. DOI: 10.27005/d. cnki. gdzku. 2022 - 001426.

Wu Lei, Liu Lihui, Chen Shufen. Flexible organic light-emitting diodes based on carbon based transparent electrodes [J]. Chemical Progress, 2021, 33 (05): 802 - 817.

Zhao Tianyang Preparation and Performance Study of AMOLED Based on Carbon Nanotube Thin Film Transistors [D]. Northeastern University, 2019. DOI: 10.27007/d. cnki. gdbeu.2019.00101018.

Liu Lijun, Zhang Zhiyong. Carbon nanotube field-effect transistors: current status and future [J]. Chinese Science: Physics, Mechanics, Astronomy, 2016, 46 (10): 53 - 69.

Chang Chunrui, Zhao Hongwei, Diao Jiajia, et al. Research on the Application of Carbon Nanotubes in Field Effect Transistors [J]. Science and Technology Bulletin, 2016, 34 (23): 106 - 114.

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Published

12-07-2023

How to Cite

Xie, Y. (2023). Application of CNTs Based on Their Unique Electrical Properties. Highlights in Science, Engineering and Technology, 58, 404-415. https://doi.org/10.54097/hset.v58i.10129