RGONs@Fe3O4/WPU超细纤维合成革的制备及其电磁屏蔽性能
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国家自然科学基金项目(面上项目,重点项目,重大项目)


Preparation of RGONs@Fe3O4/WPU superfine fiber synthetic leather and its electromagnetic shielding performance
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The National Natural Science Foundation of China (General Program, Key Program, Major Research Plan)

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    摘要:

    以氧化石墨烯(GO)和FeSO4和FeCl3为原料,采用共沉淀法制备了还原氧化石墨烯纳米片(RGONs)@Fe3O4杂化纳米片,用物理共混-平板刮涂法得到了一种新型RGONs@Fe3O4/水性聚氨酯(WPU)超细纤维合成革。利用Raman、XPS、XRD、SEM、TEM等对RGONs@Fe3O4杂化纳米片进行了表征。考察了RGONs@Fe3O4/WPU超细纤维合成革的电、磁特性及电磁屏蔽效能,并讨论了其屏蔽机理。结果表明,当n(GO) ∶n(Fen+)=1∶10时,其中Fen+为n(Fe2+)∶n(Fe3+)=1∶1.75的铁盐,纳米Fe3O4颗粒均匀沉积在RGONs片层表面,该复合结构有效减弱了RGONs片与片之间的π-π堆叠效应。随着RGONs@Fe3O4杂化纳米片含量的增加,RGONs@Fe3O4/WPU超细纤维合成革的电磁屏蔽性能明显提升,当RGONs@Fe3O4杂化纳米片添加量为5%(以WPU质量计,下同)时,RGONs@Fe3O4/WPU超细纤维合成革在8.2~12.4 GHz频率范围内的电磁屏蔽系数(EMI SE)可以达到36 dB,比RGONs/WPU超细纤维合成革的提高约40%。RGONs@Fe3O4杂化纳米片的表面效应及电、磁双损耗特性是协同增强RGONs@Fe3O4/WPU超细纤维合成革电磁屏蔽性能的关键机制。

    Abstract:

    The reduced graphene oxide nanosheets (RGONs)@Fe3O4 hybrid nanosheets were prepared by coprecipitation method from graphene oxide (GO) and FeSO4 and FeCl3. A novel RGONs@Fe3O4/waterborne polyurethane (WPU) superfine fiber synthetic leather was obtained by physical blending and doctor-blading method. RGONs@Fe3O4 hybrid nanosheets were characterized by Raman, XPS, XRD, SEM and TEM. The electrical and magnetic characteristics and electromagnetic shielding efficiency of RGONs@Fe3O4/WPU ultrafine fiber synthetic leather were investigated. And the shielding mechanism was discussed. The results showed that under the condition of n(GO) ∶n(Fen+)=1∶10,〔Fen+ is a mixture with n(Fe2+)∶n(Fe3+)=1∶1.75〕, Fe3O4 nanoparticles were deposited uniformly on the surface of RGONs sheets, the composite structure effectively reduced the π-π stacking effect between RGONs nanosheets. With the increase of the amount of RGONs@Fe3O4 hybrid nanosheets, the electromagnetic characteristics of RGONs@Fe3O4/WPU superfine fiber synthetic leather were obviously improved. When the RGONs@Fe3O4 dosage was 5% (based on the mass of WPU, the same below), the electromagnetic shielding coefficient (EMI SE) of RGONs@Fe3O4/WPU superfine synthetic leather in the frequency range of 8.2~12.4 GHz could reach 36 dB, which was about 40% higher than that of RGONs/WPU superfine synthetic leather. The surface effect and electrical and magnetic double loss characteristics of RGONs@Fe3O4 hybrid nanosheets are the key mechanisms to enhance the electromagnetic shielding performance of RGONs@Fe3O4/WPU superfine fiber synthetic leather. The surface effect and electrical and magnetic double loss characteristics of the hybrid nanoflakes of RGONs@Fe3O4 are the key to enhance the electromagnetic shielding performance of the composite leather.

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罗晓民,蒋雯,段徐宾,张鹏,冯见艳,王文琪. RGONs@Fe3O4/WPU超细纤维合成革的制备及其电磁屏蔽性能[J].精细化工,2020,37(7):

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  • 收稿日期:2020-01-19
  • 最后修改日期:2020-04-14
  • 录用日期:2020-04-15
  • 在线发布日期: 2020-06-08
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