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- W2913978988 abstract "Constructing three-dimensional segregated graphene (3DG) network in polymer matrix is very effective in fabricating highly conductive polymer composites. However, it remains challenging to control the distribution of graphene with a concise and efficient method though the past efforts have been made. In this contribution, we propose a novel hydrothermal self-assembled strategy in combination of the post-impregnation process to prepare highly conductive polymer/graphene composites. Specifically, styrene-butadiene rubber/graphene nanocomposites with a three-dimensional graphene network (3DG-SBR) were prepared by employing the hydrothermal self-assembling, followed by impregnating by silver nitrate. The resultant graphene/styrene-butadiene rubber/silver particle (3DG-SBR-Ag) nanocomposite with 1.66 vol% of graphene exhibits the conductivity of 512 S m−1, which is competitive to those prepared by template-guided assembly strategy. Impressively, the polymer composite possesses mechanical robustness due to the strong interfacial reaction between graphene and polymer matrix. This synthetic approach for graphene-based nanocomposites is generic, scalable, flexibility in complex geometry and cost-effective. The as-prepared products could potentially be applied as competitive candidates for practical application in electromagnetic wave absorption and electromagnetic interference shielding." @default.
- W2913978988 created "2019-02-21" @default.
- W2913978988 creator A5003781977 @default.
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- W2913978988 date "2019-05-01" @default.
- W2913978988 modified "2023-10-17" @default.
- W2913978988 title "A scalable strategy for constructing three-dimensional segregated graphene network in polymer via hydrothermal self-assembly" @default.
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- W2913978988 cites W2015862862 @default.
- W2913978988 cites W2018566947 @default.
- W2913978988 cites W2023123715 @default.
- W2913978988 cites W2029066016 @default.
- W2913978988 cites W2058122340 @default.
- W2913978988 cites W2075367033 @default.
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- W2913978988 cites W2119275843 @default.
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- W2913978988 cites W2143579072 @default.
- W2913978988 cites W2174029439 @default.
- W2913978988 cites W2182827741 @default.
- W2913978988 cites W2260209816 @default.
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- W2913978988 cites W2316579942 @default.
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- W2913978988 doi "https://doi.org/10.1016/j.cej.2019.01.142" @default.
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