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首页> 外文期刊>RSC Advances >Smart and designable graphene–SiO2 nanocomposites with multifunctional applications in silicone elastomers and polyaniline supercapacitors
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Smart and designable graphene–SiO2 nanocomposites with multifunctional applications in silicone elastomers and polyaniline supercapacitors

机译:可智能设计的石墨烯-SiO 2 纳米复合材料,在有机硅弹性体和聚苯胺超级电容器中具有多功能应用

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A novel method was developed to promote the multifunctional applications of chemically reduced graphene (rGE) in silicone elastomers (SE) and polyaniline (PANI)-based supercapacitors via the integration of SiO2. With the help of SiO2, the surface status of rGE can be designed according to actual needs and the generated rGE–SiO2 (rGES) showed various microstructures including lamellar, dendritic and sandwich-like shapes. The microstructures of rGES played a decisive role in the final functions of rGES-based polymer nanocomposites, which were better than the rGE-based polymer matrixes. Generally, lamellar rGES retained and stimulated the advantages of rGE, and the rGES-integrated PANI electrode (rGESP) showed better specific capacitance (555 F g?1) and cycling life (91%) than the rGE-integrated PANI electrode (381 F g?1 and 79%). Sandwich-like rGES promoted the mechanical performances of SE, and the values of rGES/SE (rGESSE) are ten times higher than those of rGE/SE, from 0.4 MPa to more than 7 MPa for the tensile strength and from 0.28 MPa to 3.7 MPa for the tensile modulus. Thus, the fabricated rGES is smart and designable, displaying multiple functions and applications.
机译:通过整合SiO 2,开发了一种新方法来促进化学还原石墨烯(rGE)在有机硅弹性体(SE)和聚苯胺(PANI)基超级电容器中的多功能应用 。借助SiO 2 ,可以根据实际需要设计rGE的表面状态,并生成rGE–SiO 2 (rGES)显示出各种微观结构,包括层状,树状和三明治状。 rGES的微观结构在基于rGES的聚合物纳米复合材料的最终功能中起着决定性的作用,该功能优于基于rGES的聚合物基质。通常,层状rGES保留并激发了rGE的优势,并且rGES集成的PANI电极(rGESP)显示出更好的比电容(555 F g ?1 )和循环寿命(91%)比rGE集成的PANI电极(381 F g ?1 和79%)高。类似于三明治的rGES促进了SE的机械性能,rGES / SE(rGESSE)的值是rGE / SE的十倍,拉伸强度从0.4 MPa到7 MPa以上,从0.28 MPa到3.7 MPa为拉伸模量。因此,所制造的rGES是智能且可设计的,显示了多种功能和应用。

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