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{"title":"Local analysis of crystalline phases and properties of poly(vinylidene fluoride) electrospun composites with BaTiO3 nanorods","authors":"Aditya Sukma Nugraha, Chen Chia Chou, Bramantyo Bayu Aji","doi":"10.1002/pi.6576","DOIUrl":null,"url":null,"abstract":"<p>This study investigated the influence of barium titanate nanorods (BT rods) on the properties and phase formation of poly(vinylidene fluoride) (PVDF) nanofibers of composite membranes created using the electrospinning technique. The primary objective was to assess the effect of varying BT nanorod concentrations on the membrane properties. The result shows that inserting BT rods into PVDF increases <i>β</i>-phase content, which, with an optimal concentration of BT rods, affects the activation energy of thermal degradation resulting in the highest <i>β</i>-phase content and the lowest activation energy at 3% BT content. Moreover, the electrical output of the samples was measured. Using a ball-drop test, the sample containing 3 wt% BT rods exhibited the highest output voltage, reaching 1.64 V. The BT rods play a significant role in promoting the <i>β</i>-phase PVDF molecular chain formation, acting as the polar phase in PVDF and aligning with the polarization direction of the BT rods. According to high-resolution transmission electron microscopy investigations, crystalline phases of PVDF are strongly correlated with the surface charges of perovskite BT rods. The occurrence of charge on the BT rods significantly contributes to fostering the development of the <i>β</i>-phase PVDF molecular chain. It essentially performs the function of the polar phase within the PVDF, aligning itself in accordance with the polarization direction inherent to the BT rods. In conclusion, this study demonstrates the potential of incorporating BT rod polar surfaces to interact with PVDF chain dipole moments, promoting <i>β</i>-phase formation. © 2023 Society of Industrial Chemistry.</p>","PeriodicalId":20404,"journal":{"name":"Polymer International","volume":"73 2","pages":"119-129"},"PeriodicalIF":2.9000,"publicationDate":"2023-09-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Polymer International","FirstCategoryId":"92","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1002/pi.6576","RegionNum":4,"RegionCategory":"化学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"POLYMER SCIENCE","Score":null,"Total":0}
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Abstract
This study investigated the influence of barium titanate nanorods (BT rods) on the properties and phase formation of poly(vinylidene fluoride) (PVDF) nanofibers of composite membranes created using the electrospinning technique. The primary objective was to assess the effect of varying BT nanorod concentrations on the membrane properties. The result shows that inserting BT rods into PVDF increases β -phase content, which, with an optimal concentration of BT rods, affects the activation energy of thermal degradation resulting in the highest β -phase content and the lowest activation energy at 3% BT content. Moreover, the electrical output of the samples was measured. Using a ball-drop test, the sample containing 3 wt% BT rods exhibited the highest output voltage, reaching 1.64 V. The BT rods play a significant role in promoting the β -phase PVDF molecular chain formation, acting as the polar phase in PVDF and aligning with the polarization direction of the BT rods. According to high-resolution transmission electron microscopy investigations, crystalline phases of PVDF are strongly correlated with the surface charges of perovskite BT rods. The occurrence of charge on the BT rods significantly contributes to fostering the development of the β -phase PVDF molecular chain. It essentially performs the function of the polar phase within the PVDF, aligning itself in accordance with the polarization direction inherent to the BT rods. In conclusion, this study demonstrates the potential of incorporating BT rod polar surfaces to interact with PVDF chain dipole moments, promoting β -phase formation. © 2023 Society of Industrial Chemistry.
聚偏二氟乙烯与 BaTiO3 纳米棒电纺复合材料晶相和性能的局部分析
本研究调查了钛酸钡纳米棒(BT 棒)对使用电纺丝技术制造的复合膜聚偏二氟乙烯(PVDF)纳米纤维的性能和相形成的影响。主要目的是评估不同浓度的 BT 纳米棒对膜性能的影响。结果表明,在 PVDF 中插入 BT 棒可增加 β 相含量,在最佳 BT 棒浓度下,会影响热降解的活化能,结果在 BT 含量为 3% 时,β 相含量最高,活化能最低。此外,还测量了样品的电输出。通过滴球测试,含 3 wt% BT 棒的样品输出电压最高,达到 1.64 V。BT 棒在促进 β 相 PVDF 分子链形成方面发挥了重要作用,它是 PVDF 中的极性相,与 BT 棒的极化方向一致。根据高分辨率透射电子显微镜研究,PVDF 的结晶相与包晶体 BT 棒的表面电荷密切相关。BT 棒上电荷的出现极大地促进了 β 相 PVDF 分子链的发展。它基本上在 PVDF 中发挥了极性相的作用,按照 BT 棒固有的极化方向排列。总之,这项研究证明了 BT 棒极性表面与 PVDF 链偶极矩相互作用的潜力,从而促进了 β 相的形成。© 2023 工业化学学会。
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