首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Supercapacitive behavior of electrostatic self-assembly reduced graphene oxide/CoAl-layered double hydroxides nanocomposites
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Supercapacitive behavior of electrostatic self-assembly reduced graphene oxide/CoAl-layered double hydroxides nanocomposites

机译:静电自组装还原氧化石墨烯/ CoAl层状双氢氧化物纳米复合材料的超电容行为

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Graphene oxide/CoAl-layered double hydroxide (GO/CoAl-LDHs) composites were successfully prepared by a face-to-face electrostatic self-assembly method. Positively charged colloidal CoAl-LDHs nanosheets (CoAl-LDH-NS) and negatively charged colloidal GO nanosheets were uniformly mixed; then CoAl-LDHNS were assembled on GO nanosheets via electrostatic attraction to prepare GO/CoAl-LDHs composites. The GO/CoAl-LDHs composites were then transformed to the reduced graphene oxide/CoAl-layered double hydroxide (RGO/CoAl-LDHs) composites with a hydrothermal method. The results showed that the content of RGO has a remarkable influence on the capacitive properties of composites. Among the composites with different RGO content, the RGO/CoAl-LDHs composite containing 12.0 wt% RGO displayed a maximum specific capacitance of 825 F g(-1) at low current density of 1 A g(-1), while that of pure CoAl-LDHs was 552 F g(-1). The capacitance retention of the RGO/CoAl-LDHs composite from 1 A g(-1) to 8 A g(-1) is found to be 62.3%, whereas that of pure CoAl-LDHs is only 31.9%. Face-to-face self-assembling between positively charged CoAl-LDH-NS and negatively charged GO nanosheets can effectively reduce the self-agglomeration of GO nanosheets and avoid CoAl-LDH-NS stacking together, which lead to improvement of the capacitive performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过面对面静电自组装方法成功制备了氧化石墨烯/ CoAl层状双氢氧化物(GO / CoAl-LDHs)复合材料。将带正电的胶体CoAl-LDHs纳米片(CoAl-LDH-NS)和带负电的胶体GO纳米片均匀混合;然后通过静电吸引将CoAl-LDHNS组装在GO纳米片上,制备GO / CoAl-LDHs复合材料。然后采用水热法将GO / CoAl-LDHs复合材料转化为还原型氧化石墨烯/ CoAl层状双氢氧化物(RGO / CoAl-LDHs)复合材料。结果表明,RGO的含量对复合材料的电容性能有显着影响。在具有不同RGO含量的复合材料中,含有12.0 wt%RGO的RGO / CoAl-LDHs复合材料在1 A g(-1)的低电流密度下显示最大比电容为825 F g(-1),而纯CoAl-LDHs为552 F g(-1)。发现从1 A g(-1)到8 A g(-1)的RGO / CoAl-LDHs复合材料的电容保持率为62.3%,而纯CoAl-LDHs的电容保持率仅为31.9%。带正电的CoAl-LDH-NS和带负电的GO纳米片之间的面对面自组装可以有效地减少GO纳米片的自团聚,避免CoAl-LDH-NS堆叠在一起,从而改善了电容性能。 (C)2016 Elsevier B.V.保留所有权利。

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