Optimizing coupling agent for the enhanced energy storage density of BaTiO3/P(VDF − HFP)&PMMA nanocomposite films

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作者
Yuanhui Su
Yu Huan
Yixin Sun
Yan Wang
Weihao Wang
Xiaozhi Wang
Yuanna Zhu
Yanan Hao
Tao Wei
Xiaohui Wang
机构
[1] University of Jinan,School of Material Science and Engineering
[2] Beijing University of Posts and Telecommunications,State Key Laboratory of Information Photonics and Optical Communications & School of Science
[3] Tsinghua University,State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering
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Energy storage; Polymer nanocomposites; Coupling agent; Surface modification;
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摘要
In order to improve the energy storage performance of nanocomposite capacitors, barium titanate (BaTiO3) nanoparticles are usually surface-modified with multiple coupling agents to improve their compatibility with poly(vinylidene fluoride − hexafluoropropylene) [P(VDF − HFP)] and Polymethyl Methacrylate (PMMA) matrix. Therefore, exploring suitable coupling agent is urgent for high-performance composite films. In this work, the coupling mechanism and interfacial interactions among coupling agents, BaTiO3, and P(VDF − HFP)/PMMA are theoretically investigated. Compared with other coupling agents in this work, Tween 20 (TW20) can reinforce the Van der Waals force and chain entanglement between BaTiO3 nanoparticles and P(VDF − HFP)/PMMA due to the longer chain segments. Therefore, TW20 can enhance the dispersibility of BaTiO3 fillers and improve the compatibility between BaTiO3 and P(VDF − HFP)/PMMA. Owing to the excellent uniformity and compactness, TW20 modified BaTiO3/P(VDF − HFP)&PMMA nanocomposite films exhibit the excellent discharge energy density of 14.4 J cm−‍3 and efficiency of 77.3% at 557 kV mm−‍‍1, which is 3 times higher than that of unmodified BaTiO3/P(VDF − HFP)&PMMA nanocomposite films. This study declares that optimizing coupling agent can boost the energy storage density of nanocomposites films.
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