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填充单壁碳纳米管的PA6/SAN和PA6/PMMA共混物的混合结构与n型热电性能

Blend Structure and n-Type Thermoelectric Performance of PA6/SAN and PA6/PMMA Blends Filled with Singlewalled Carbon Nanotubes.

作者信息

Krause Beate, Liguoro Alice, Pötschke Petra

机构信息

Leibniz-Institut für Polymerforschung Dresden e.V. (IPF), Hohe Str. 6, 01069 Dresden, Germany.

出版信息

Nanomaterials (Basel). 2021 Apr 28;11(5):1146. doi: 10.3390/nano11051146.

Abstract

The present study investigates how the formation of melt-mixed immiscible blends based on PA6/SAN and PA6/PMMA filled with single walled nanotubes (SWCNTs) affects the thermoelectric (TE) properties. In addition to the detailed investigation of the blend morphology with compositions between 100/0 wt.% and 50/50 wt.%, the thermoelectric properties are investigated on blends with different SWCNT concentrations (0.25-3.0 wt.%). Both PA6 and the blend composites with the used type of SWCNTs showed negative Seebeck coefficients. It was shown that the PA6 matrix polymer, in which the SWCNTs are localized, mainly influenced the thermoelectric properties of blends with high SWCNT contents. By varying the blend composition, an increase in the absolute Seebeck coefficient, power factor (PF), and figure of merit (ZT) was achieved compared to the PA6 composite which is mainly related to the selective localization and enrichment of SWCNTs in the PA6 matrix at constant SWCNT loading. The maximum PFs achieved were 0.22 µW/m·K for PA6/SAN/SWCNT 70/30/3 wt.% and 0.13 µW/m·K for PA6/PMMA/SWCNT 60/40/3 wt.% compared to 0.09 µW/m·K for PA6/3 wt.% SWCNT which represent increases to 244% and 144%, respectively. At higher PMMA or SAN concentration, the change from matrix-droplet to a co-continuous morphology started, which, despite higher SWCNT enrichment in the PA6 matrix, disturbed the electrical conductivity, resulting in reduced PFs with still increasing Seebeck coefficients. At SWCNT contents between 0.5 and 3 wt.% the increase in the absolute Seebeck coefficient was compensated by lower electrical conductivity resulting in lower PF and ZT as compared to the PA6 composites.

摘要

本研究调查了基于聚酰胺6/苯乙烯-丙烯腈共聚物(PA6/SAN)和聚酰胺6/聚甲基丙烯酸甲酯(PA6/PMMA)并填充单壁纳米管(SWCNT)的熔融共混不相容共混物的形成如何影响热电(TE)性能。除了详细研究组成在100/0 wt.%至50/50 wt.%之间的共混物形态外,还对具有不同SWCNT浓度(0.25 - 3.0 wt.%)的共混物的热电性能进行了研究。PA6以及使用的这种类型的SWCNT的共混复合材料均显示出负的塞贝克系数。结果表明,SWCNT所在的PA6基体聚合物主要影响高SWCNT含量共混物的热电性能。通过改变共混物组成,与PA6复合材料相比,绝对塞贝克系数、功率因子(PF)和优值(ZT)有所增加,这主要与在恒定SWCNT负载下SWCNT在PA6基体中的选择性定位和富集有关。PA6/SAN/SWCNT 70/30/3 wt.%的最大PF为0.22 μW/m·K,PA6/PMMA/SWCNT 60/40/3 wt.%的最大PF为0.13 μW/m·K,相比之下,PA6/3 wt.% SWCNT的为0.09 μW/m·K,分别提高到了244%和144%。在较高的PMMA或SAN浓度下,开始从基体-液滴形态转变为共连续形态,尽管PA6基体中SWCNT的富集程度更高,但这扰乱了电导率,导致PF降低而塞贝克系数仍在增加。在SWCNT含量为0.5至3 wt.%之间时,与PA6复合材料相比,绝对塞贝克系数的增加被较低的电导率所抵消,导致PF和ZT降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/236d/8146114/902e8e0bbe0d/nanomaterials-11-01146-g0A1.jpg

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