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Highly dispersed graphene ribbons produced from ZnO-C core-shell nanorods and their use as a filler in polyimide composites

机译:由ZnO-C核壳纳米棒制备的高度分散的石墨烯带及其在聚酰亚胺复合材料中的填充剂用途

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摘要

Long and few-layer thickness graphene ribbons (GRs) were fabricated through an efficient process from a well-ordered array of ZnO-C core-shell hexagonal nanorods that were formed by thermally heating zinc acetate dihydrate in a sealed chamber. The lengths and widths of the GRs were as high as similar to 50 mu m and 100-400 nm, respectively. The GRs could be highly dispersed (similar to 2 mg mL(-1)) in 1-methyl-2-pyrrolidinone and exhibited a good electrical conductivity (5107 S m(-1)). The highly dispersed and highly conductive GRs were applied to the fabrication of a GR-polyimide composite film that exhibited good mechanical properties while preserving the film transparency.
机译:通过高效的工艺,从井井有条的ZnO-C核-壳六角形纳米棒阵列中,通过在密闭室内加热二水合乙酸锌形成的长短层厚度的石墨烯带(GRs)来制造。 GR的长度和宽度分别高达50μm和100-400nm。 GRs可以高度分散(类似于2 mg mL(-1))在1-甲基-2-吡咯烷酮中,并具有良好的电导率(5107 S m(-1))。将高度分散和高导电性的GRs用于GR-聚酰亚胺复合膜的制造,该膜具有良好的机械性能,同时又保持了膜的透明性。

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