首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Fabrication of flexible and self-standing inorganic-organic three phase magneto-dielectric PVDF based multiferroic nanocomposite films through a small loading of graphene oxide (GO) and Fe3O4 nanoparticles
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Fabrication of flexible and self-standing inorganic-organic three phase magneto-dielectric PVDF based multiferroic nanocomposite films through a small loading of graphene oxide (GO) and Fe3O4 nanoparticles

机译:通过少量加载氧化石墨烯和Fe3O4纳米粒子制备柔性自立式无机-有机三相磁电介质PVDF基多铁纳米复合膜

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摘要

Flexible inorganic-organic magneto-electric (ME) nanocomposite films (PVDF, PVDF-GO, PVDF-Fe3O4 and PVDF-GO-Fe3O4), composed of well-dispersed graphene oxide (GO 5 wt%) and magnetic Fe3O4 nanoparticles (5 wt%) embedded into a poly(vinylidene-fluoride) (PVDF) matrix, have been prepared by a solvent casting route. The magnetic, ferroelectric, dielectric, magneto-dielectric (MD) coupling and structural properties of these films have been systematically investigated. Magnetic (M-s = 2.21 emu g(-1)) and ferroelectric (P = 0.065 mu C cm(-2)) composite films of PVDF-GO-Fe3O4 (PVDF loaded with 5% GO and 5% Fe3O4) with an MD coupling of 0.02% at room temperature (RT) showed a three times higher dielectric constant than that of the pure PVDF film, with a dielectric loss as low as 0.6. However, the PVDF-Fe3O4 film, which exhibited improved magnetic (M-s = 2.5 emu g(-1)) and MD coupling (0.04%) properties at RT with a lower dielectric loss (0.3), exhibited decreased ferroelectric properties (P = 0.06 degrees C cm(-2)) and dielectric constant compared to the PVDF-GO-Fe3O4 film. MD coupling measurements carried out as a function of temperature on the multi-functional PVDF-GO-Fe3O4 film showed a systematic increase in MD values up to 100 K and a decrease thereafter. The observed magnetic, ferroelectric, dielectric, MD coupling and structural properties of the nanocomposite films are attributed to the homogeneous dispersion and good alignment of Fe3O4 nanoparticles and GO in the PVDF matrix along with a partial conversion of nonpolar alpha-phase PVDF to polar beta-phase. The above multi-functionality of the composite films of PVDF-Fe3O4 and PVDF-GO-Fe3O4 paves the way for their application in smart multiferroic devices.
机译:柔性无机有机磁电(ME)纳米复合膜(PVDF,PVDF-GO,PVDF-Fe3O4和PVDF-GO-Fe3O4),由分散良好的氧化石墨烯(GO 5 wt%)和磁性Fe3O4纳米颗粒(5 wt通过溶剂浇铸法制备了嵌入聚(偏二氟乙烯)(PVDF)基质中的%)。这些薄膜的磁,铁电,介电,磁介电(MD)耦合和结构特性已得到系统地研究。带有MD耦合的PVDF-GO-Fe3O4(PVDF负载5%GO和5%Fe3O4)的磁性(Ms = 2.21 emu g(-1))和铁电(P = 0.065μCcm(-2))复合膜室温(RT)时0.02%的介电常数显示出的介电常数是纯PVDF膜的介电常数的三倍,介电损耗低至0.6。然而,PVDF-Fe3O4薄膜在室温下表现出改善的磁性能(Ms = 2.5 emu g(-1))和MD耦合性能(0.04%),介电损耗较低(0.3),其铁电性能下降(P = 0.06)厘米C(2))和相对于PVDF-GO-Fe3O4薄膜的介电常数。在多功能PVDF-GO-Fe3O4薄膜上进行的MD耦合测量随温度变化而变化,显示MD值直至100 K都有系统的增加,此后减小。观察到的纳米复合膜的磁性,铁电,介电,MD耦合和结构特性归因于FeDF3纳米颗粒和GO在PVDF基质中的均匀分散和良好的排列,以及非极性α-相PVDF到极性β-的部分转化。相。 PVDF-Fe3O4和PVDF-GO-Fe3O4复合膜的上述多功能性为它们在智能多铁性设备中的应用铺平了道路。

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