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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A synergistic self-assembled 3D PEDOT:PSS/graphene composite sponge for stretchable microsupercapacitors
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A synergistic self-assembled 3D PEDOT:PSS/graphene composite sponge for stretchable microsupercapacitors

机译:一种协同自组装3D PEDOT:可拉伸微型电路仪的PSS /石墨烯复合海绵

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Microsupercapacitors (MSCs) with excellent flexibility and electrochemical capacitance are promising energy storage devices for wearable electronics. In this paper, we present a 3D porous poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS)/graphene composite sponge (PGCS) fabricated via a facile self-assembly process for highly stretchable, high areal capacitance MSCs. The proposed self-assembly process enables simultaneously the following in one-step: (1) separation of PSS and PEDOT from PEDOT:PSS, (2) reduction of graphene oxide (GO) into reduced graphene oxide (rGO), and (3) integration of PEDOT and rGO into a hybrid 3D composite. By tuning the mass ratio of PEDOT:PSS and GO, PGCSs with different porosities, mechanical properties, conductivities, and capacitances can be obtained. With the incorporation of PEDOT into rGO, the PGCS exhibits enhanced electrochemical performance and better mechanical flexibility. The fabricated stretchable MSC exhibits a high areal specific capacitance (19.3 mF cm(-2) at a scan rate of 20 mV s(-1)), good electrochemical stability (88.6% retention of specific capacitance after 5000 cycles), and a remarkable stretchability (87.1% retention of specific capacitance after 50% stretching). This facile approach provides a general strategy for synergistic self-assembly of composite sponges and the design of stretchable 3D MSCs, suitable for energy storage devices with high stretchability and high energy density.
机译:具有出色的灵活性和电化学电容的微型电路仪(MSCs)是可穿戴电子设备的能量存储装置。在本文中,我们提出了一种3D多孔聚(3,4-亚乙二氧基噻吩):聚(4-苯乙烯磺酸盐)(PEDOT:PSS)/石墨烯复合海绵(PGCs)通过容易自组装方法制造,用于高度可拉伸,高电容MSCs。所提出的自组装过程在一步中同时实现以下内容:(1)将PSS和PEDOT分离从PEDOT:PSS,(2)将石墨烯(GO)还原成还原的氧化石墨烯(RGO),以及(3)将PEDOT和RGO集成到混合3D复合材料中。通过调整PEDOT的质量比:PSS和GO,可以获得具有不同孔隙率,机械性能,电导率和电容的PGCS。通过将PEDOT掺入RGO,PGCs表现出增强的电化学性能和更好的机械灵活性。制造的可拉伸MSC在20mV S(-1))的扫描速率下表现出高的面积特异性电容(19.3mF cm(-2)),电化学稳定性良好(在5000次循环后的特定电容保持88.6%),以及显着的拉伸性(拉伸50%后的特定电容87.1%)。这种容纳方法提供了一种用于协同自组装的复合海绵的协同自组装和可拉伸3D MSC的设计,适用于具有高拉伸性和高能量密度的能量存储装置。

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