Surface modification of h-BN and electric field control of its orientation in sulfonated polyetheretherketone

IF 2.7 3区 化学 Q2 POLYMER SCIENCE
Jin Yang, Yixuan Hou, Yingzheng Hong, Yingbang Yao
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引用次数: 0

Abstract

Since thermally conductive fillers easily aggregate when introduced into polymer matrix, it is essential to apply a modifier to enhance the dispersion of the filler. In current study, the surface of boron nitride (h-BN) is firstly modified by employing a double modification process and then added into sulfonated polyetheretherketone (SPEEK) to form the composite materials. Four different kinds of samples of double-modified h-BN were obtained. Ultimately, the XXX@h-BN/SPEEK (XXX denoted as modifier, i.e. PDA, VTMS, TEOS, and APS) flexible film with the horizontally oriented XXX@h-BN was produced by heating the mixture under an external electric field. The test results indicate that the thermally conductive filler PDA@h-BN (PDA: polydopamine), which was prepared by modifying OH@h-BN with PDA, loaded into SPEEK, and electrically oriented, shows the best overall performances. With a high tensile strength of 43.24 MPa and good flexibility, PDA@h-BN/SPEEK flexible film exhibits an in-plane thermal conductivity of 2.3 Wm−1 K−1 at a filling ratio of 10 wt%. The sample may be bent at a steep angle without breaking down and can recover to original shape bearing its high degree of flexibility.

h-BN 的表面改性及其在磺化聚醚醚酮中的取向电场控制
由于导热填料进入聚合物基体后容易聚集,因此必须使用改性剂来提高填料的分散性。在本研究中,首先采用双改性工艺对氮化硼(h-BN)表面进行改性,然后将其加入磺化聚醚醚酮(SPEEK)中形成复合材料。结果得到了四种不同的双改性 h-BN 样品。最终,在外加电场的作用下加热混合物,制备出水平取向的 XXX@h-BN/SPEEK 软薄膜(XXX 表示改性剂,即 PDA、VTMS、TEOS 和 APS)。测试结果表明,导热填料 PDA@h-BN(PDA:聚多巴胺)的综合性能最佳,该填料是用 PDA 对 OH@h-BN 进行改性后制备的,填入 SPEEK 并进行电取向。PDA@h-BN/SPEEK 柔性薄膜具有 43.24 MPa 的高拉伸强度和良好的柔韧性,在填充率为 10 wt% 时,其平面内热导率为 2.3 Wm-1 K-1。该样品可在陡峭的角度下弯曲而不破裂,并能恢复到原来的形状,具有很高的柔韧性。
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来源期刊
Journal of Applied Polymer Science
Journal of Applied Polymer Science 化学-高分子科学
CiteScore
5.70
自引率
10.00%
发文量
1280
审稿时长
2.7 months
期刊介绍: The Journal of Applied Polymer Science is the largest peer-reviewed publication in polymers, #3 by total citations, and features results with real-world impact on membranes, polysaccharides, and much more.
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