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多壁碳纳米管合成参数对其热电性能的影响

Impact of Synthesis Parameters of Multi-Walled Carbon Nanotubes on their Thermoelectric Properties.

作者信息

Kumanek Bogumiła, Stando Grzegorz, Wróbel Paweł S, Janas Dawid

机构信息

Department of Organic Chemistry, Bioorganic Chemistry and Biotechnology, Silesian University of Technology, B. Krzywoustego 4, 44-100 Gliwice, Poland.

Centre of Polymer and Carbon Materials Polish Academy of Sciences, M. Curie-Sklodowskiej 34, 41-819 Zabrze, Poland.

出版信息

Materials (Basel). 2019 Oct 30;12(21):3567. doi: 10.3390/ma12213567.

Abstract

Carbon nanotubes have been intensively researched for many years because of a wide array of promising properties that they have. In this paper, we present the impact of synthesis parameters on thermoelectric properties of nanocarbon material. We conducted a number of syntheses of multi-walled carbon nanotubes (MWCNTs) at different temperatures (800 and 900 °C) using various amounts of catalyst (2%, 5.5%, and 9.6%) to facilitate the process. We also tested the influence of injection rate of precursor and the necessity of material purification on thermoelectric properties of MWCNTs. The electrical conductivity, thermal conductivity, and Seebeck coefficient were measurement for all samples. Based on these parameters, the values of Power Factor and Figure of Merit were calculated. The results show that the most important parameter in the context of thermoelectric properties is purity of employed MWCNTs. To obtain appropriate material for this purpose optimum synthesis temperature and appropriate content of the catalyst must be selected. The study also reveals that post-synthetic purification of nanocarbon is essential to produce an attractive material for thermoelectrics.

摘要

由于碳纳米管具有一系列令人期待的特性,多年来一直受到广泛研究。在本文中,我们展示了合成参数对纳米碳材料热电性能的影响。我们使用不同量的催化剂(2%、5.5%和9.6%)在不同温度(800和900°C)下进行了多次多壁碳纳米管(MWCNT)的合成,以促进该过程。我们还测试了前驱体注入速率以及材料纯化的必要性对MWCNT热电性能的影响。对所有样品测量了电导率、热导率和塞贝克系数。基于这些参数,计算了功率因数和优值。结果表明,就热电性能而言,最重要的参数是所用MWCNT的纯度。为了获得适用于此目的的材料,必须选择最佳合成温度和合适的催化剂含量。该研究还表明,纳米碳的合成后纯化对于生产有吸引力的热电材料至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb70/6862382/1982b61fb81e/materials-12-03567-g001.jpg

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