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Carbon foams from emulsion-templated reduced graphene oxide polymer composites: electrodes for supercapacitor devices

机译:来自乳液模板化还原氧化石墨烯聚合物复合材料的碳泡沫:用于超级电容器装置的电极

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摘要

Amphiphilic reduced graphene oxide (rGO) is an efficient emulsifier for water-in-divinylbenzene (DVB) high internal phase emulsions. The polymerisation of the continuous DVB phase of the emulsion template and removal of water results in macroporous poly(divinylbenzene) (polyDVB). Subsequent pyrolysis of the poly(DVB) macroporous polymers yields ‘all-carbon’ foams containing micropores alongside emulsion templated-macropores, resulting in hierarchical porosity. The synthesis of carbon foams, or ‘carboHIPEs’, from poly(DVB) produced by polymerisation of rGO stabilised HIPEs provides both exceptionally high surface areas (up to 1820 m2/g) and excellent electrical conductivities (up to 285 S/m), competing with the highest figures reported for carboHIPEs. The use of a 2D carbon emulsifier results in the elimination of post-carbonisation treatments to remove standard inorganic particulate emulsifiers, such as silica particles. It is demonstrated that rGO containing carboHIPEs are good candidates for supercapacitor electrodes where carboHIPEs derived from more conventional polymerised silica-stabilised HIPEs perform poorly. Supercapacitor devices featured a room-temperature ionic liquid electrolyte and electrodes derived from either rGO- or silica-containing poly(DVB)HIPEs and demonstrated a maximum specific capacitance of 26 F g-1, an energy density of 5.2 Wh kg-1 and a power density of 280 W kg-1.
机译:两亲性还原氧化石墨烯(rGO)是用于二乙烯基苯水(DVB)高内相乳液的有效乳化剂。乳液模板的连续DVB相的聚合和水的去除导致大孔聚二乙烯基苯(polyDVB)。随后,聚(DVB)大孔聚合物发生热解,生成了“全碳”泡沫,其中包含微孔以及乳液模板化的大孔,从而形成了分层的孔隙率。由rGO稳定的HIPE聚合而成的聚(DVB)合成碳泡沫或“ carboHIPE”,既可提供超高的表面积(高达1820 m2 / g),又具有出色的电导率(高达285 S / m),与报道的carboHIPEs最高数字竞争。二维碳乳化剂的使用可消除后碳化处理,以去除标准的无机颗粒乳化剂,例如二氧化硅颗粒。事实证明,含有rGO的carboHIPEs是超级电容器电极的良好候选者,在超级电容器电极中,源自更常规的聚合的二氧化硅稳定的HIPEs的carboHIPEs表现较差。超级电容器装置具有室温离子液体电解质和源自rGO或二氧化硅的聚(DVB)HIPE的电极,并具有26 F g-1的最大比电容,5.2 Wh kg-1的能量密度和功率密度为280 W kg-1。

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