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复合柔性热电薄膜在弯曲时与混合填料分布梯度相关的电导正负变化

Positive and Negative Changes in the Electrical Conductance Related to Hybrid Filler Distribution Gradient in Composite Flexible Thermoelectric Films Subjected to Bending.

作者信息

Bugovecka Lasma, Buks Krisjanis, Andzane Jana, Miezubrale Annija Dinija, Bitenieks Juris, Zicans Janis, Erts Donats

机构信息

Institute of Chemical Physics, University of Latvia, Jelgavas str. 1, LV-1004 Riga, Latvia.

3D Strong Ltd., Instituta Str. 36-17, LV-2130 Ulbroka, Latvia.

出版信息

Nanomaterials (Basel). 2023 Mar 29;13(7):1212. doi: 10.3390/nano13071212.

Abstract

P-type multiwalled carbon nanotubes (MWCNTs), as well as heterostructures fabricated by direct deposition of inorganic thermoelectric materials as antimony and bismuth chalcogenides on MWCNT networks are known as perspective materials for application in flexible thermoelectric polymer-based composites. In this work, the electrical response of three types of SbTe-MWCNT heterostructures-based flexible films-free standing on a flexible substrate, encapsulated in polydimethylsiloxane (PDMS), and mixed in polyvinyl alcohol (PVA) is studied in comparison with the flexible films prepared by the same methods using bare MWCNTs. The electrical conductance of these films when each side of it was subsequently subjected to compressive and tensile stress during the film bending down to a 3 mm radius is investigated in relation to the distribution gradient of SbTe-MWCNT heterostructures or bare MWCNTs within the film. It is found that all investigated SbTe-MWCNT films exhibit a reversible increase in the conductance in response to the compressive stress of the film side with the highest filler concentration and its decrease in response to the tensile stress. In contrast, free-standing and encapsulated bare MWCNT networks with uniform distribution of nanotubes showed a decrease in the conductance irrelevant to the bending direction. In turn, the samples with the gradient distribution of the MWCNTs, prepared by mixing the MWCNTs with PVA, revealed behavior that is similar to the SbTe-MWCNT heterostructures-based films. The analysis of the processes impacting the changes in the conductance of the SbTe-MWCNT heterostructures and bare MWCNTs is performed. The proposed in this work bending method can be applied for the control of the uniformity of distribution of components in heterostructures and fillers in polymer-based composites.

摘要

P型多壁碳纳米管(MWCNT)以及通过在MWCNT网络上直接沉积无机热电材料(如锑和铋的硫族化物)制成的异质结构,被认为是用于基于聚合物的柔性热电复合材料的有前景的材料。在这项工作中,研究了三种基于SbTe-MWCNT异质结构的柔性薄膜的电响应,这些薄膜独立支撑在柔性基板上,封装在聚二甲基硅氧烷(PDMS)中,并与聚乙烯醇(PVA)混合,同时与使用裸MWCNT通过相同方法制备的柔性薄膜进行了比较。研究了这些薄膜在向下弯曲至3毫米半径时,其每一侧随后受到压缩和拉伸应力时的电导,这与薄膜内SbTe-MWCNT异质结构或裸MWCNT的分布梯度有关。结果发现,所有研究的SbTe-MWCNT薄膜在薄膜一侧具有最高填料浓度时,其电导会随着压缩应力而可逆增加,而随着拉伸应力而降低。相比之下,具有均匀纳米管分布的独立支撑和封装的裸MWCNT网络的电导与弯曲方向无关而降低。反过来,通过将MWCNT与PVA混合制备的具有MWCNT梯度分布的样品,其行为与基于SbTe-MWCNT异质结构的薄膜相似。对影响SbTe-MWCNT异质结构和裸MWCNT电导变化的过程进行了分析。这项工作中提出的弯曲方法可用于控制异质结构中组分和聚合物基复合材料中填料的分布均匀性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4455/10096738/d66bd25f0821/nanomaterials-13-01212-g001.jpg

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