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通过控制结晶以及与低负载量聚多巴胺包覆的钛酸钡的界面相互作用来增强聚偏氟乙烯的电活性和机械性能。

Enhanced electroactive and mechanical properties of poly(vinylidene fluoride) by controlling crystallization and interfacial interactions with low loading polydopamine coated BaTiO₃.

作者信息

Jia Nan, Xing Qian, Liu Xu, Sun Jing, Xia Guangmei, Huang Wei, Song Rui

机构信息

College of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences (UCAS), Beijing 100049, China.

College of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences (UCAS), Beijing 100049, China.

出版信息

J Colloid Interface Sci. 2015 Sep 1;453:169-176. doi: 10.1016/j.jcis.2015.05.002. Epub 2015 May 8.

Abstract

Poly(vinylidene fluoride) (PVDF) is a semi-crystalline polymer and the polar β-phase of PVDF shows superb electroactive properties. In order to enhance the β-phase of PVDF, extreme low content of BaTiO3 nanoparticles (BT-NPs) coated with polydopamine (Pdop) were incorporated into PVDF matrix by solution casting. The β-phase of the resulting PVDF nanocomposites film was dramatically increased and the d33 value reached 34.3±0.4 pCN(-1). It is found that the Pdop layer could improve the dispersibility and stability of the BT NPs in solution and endow the BT NPs good dispersity in the PVDF matrix. Moreover, the interfacial interaction between PVDF chains and the surface of BT-Pdop nanoparticles (BT-Pdop NPs) were revealed, in which the CF2 groups on PVDF could interact with the electron-rich plane of aromatic ring of Pdop moiety. This interaction, led to the increase of the crystallization activation energy as derived from the DSC nonisothermal crystallization measurement. The α-β crystal transformation, organization of interfacial interactions as well as the prevention of agglomeration of BT-NPs confer the improvement of mechanical and thermal properties of PVDF, such as toughness, tensile strength, elongation at break, and thermal conductivity.

摘要

聚偏氟乙烯(PVDF)是一种半结晶聚合物,PVDF的极性β相具有优异的电活性。为了提高PVDF的β相含量,通过溶液浇铸法将极低含量的聚多巴胺(Pdop)包覆的钛酸钡纳米颗粒(BT-NPs)引入PVDF基体中。所得PVDF纳米复合薄膜的β相显著增加,d33值达到34.3±0.4 pCN-1。研究发现,Pdop层可以提高BT NPs在溶液中的分散性和稳定性,并使BT NPs在PVDF基体中具有良好的分散性。此外,还揭示了PVDF链与BT-Pdop纳米颗粒(BT-Pdop NPs)表面之间的界面相互作用,其中PVDF上的CF2基团可以与Pdop部分芳环的富电子平面相互作用。这种相互作用导致了从DSC非等温结晶测量得出的结晶活化能增加。α-β晶体转变、界面相互作用的组织以及BT-NPs团聚的防止赋予了PVDF机械和热性能的改善,如韧性、拉伸强度、断裂伸长率和热导率。

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