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首页> 外文期刊>Electrochimica Acta >Sandwiched MoS2/polyaniline nanosheets array vertically aligned on reduced graphene oxide for high performance supercapacitors
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Sandwiched MoS2/polyaniline nanosheets array vertically aligned on reduced graphene oxide for high performance supercapacitors

机译:夹层MOS2 / Polyaniline NanosheSs阵列垂直对齐在低性能超级电容器的降脂氧化物上

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MoS2/polyaniline/reduced graphene oxide hierarchical nanosheets (denoted as MoS2/PANI/rGO HNSs) with novel structure of sandwiched MoS2/PANI nanosheets array vertically align on rGO are successfully synthesized and investigated as supercapacitor electrode in aqueous electrolyte (1M H2SO4). In this hierarchical nanosheets, PANI chains are intercalated into MoS2 interlayers constructing sandwiched MoS2/PANI nanosheets and restrict the volume change itself, meanwhile the sandwiched MoS2/PANI nanosheets array vertically align on rGO nanosheets creating intimate and sufficient hetero-interface between PANI, MoS2 and rGO layers. Thus excellent conductivity and ultrahigh reactive surface area are achieved and leads to superior supercapacitance. In the three-electrode system, the MoS2/PANI/rGO-300 HNSs show a capacitance of 330.7 F g(-1) at current density of 10 A g(-1) at first cycle, and have capacitance retention about 81.9% after 40,000 cycles. Assembled as MoS2/PANI/rGO-300//MoS2/PANI/rGO-300 symmetric supercapacitor, it exhibits a capacitance of 97.8 F g(-1) at current density of 2 A g(-1) at first cycle. After 20,000 cycles, 84.2% of initial capacitance is retained. When assemble asymmetric supercapacitor using MoS2/PANI/rGO-300 HNSs as cathode and active carbon (AC) as anode, it still shows a high capacitance of 73.3 F g(-1) at current density of 2 A g(-1) at first cycle, retains 87.9% after 20,000 cycles. (c) 2018 Elsevier Ltd. All rights reserved.
机译:二硫化钼/聚苯胺/还原氧化石墨烯纳米片分层(表示为二硫化钼/ PANI / RGO HNSs)夹在二硫化钼/ PANI纳米片阵列的新颖的结构上RGO垂直对齐被成功地合成和研究了在含水电解质(1M H 2 SO 4)超级电容器电极。在该分层纳米片中,PANI链嵌入到构成夹层MOS2 / PANI纳米液晶的MOS2中间层中,并限制体积变化本身,同时夹层MOS2 / PANI NANOSHESS阵列在RGO NANOSHEET上垂直对齐,在PANI,MOS2和PANI之间产生私密和足够的异质界面。 rgo层。因此,实现了优异的导电性和超高反应表面积并导致优异的超级电容。在三电极系统中,在MoS 2 / PANI / RGO-300 HNSs以10克(-1)在第一周期的电流密度显示出330.7 F G(-1)的电容,和后具有大约81.9%的电容保持40,000个周期。汇集为MOS2 / PANI / RGO-300 // MOS2 / PANI / RGO-300对称超级电容器,它在第一周期首个电流密度为2Ag(-1)的电容为97.8f g(-1)。经过20,000个循环后,保留了84.2%的初始电容。当使用MOS2 / PANI / RGO-300 HNSS作为阴极和活性炭(AC)作为阳极组装不对称的超级电容器时,它仍然以2Ag(-1)的电流密度为73.3f g(-1)的高电容。第一次循环,在20,000个循环后保留87.9%。 (c)2018年elestvier有限公司保留所有权利。

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