Tang Zhiwei, Jiang Jinglin, Liu Shaohong, Chen Luyi, Liu Ruliang, Zheng Bingna, Fu Ruowen, Wu Dingcai
Materials Science Institute, PCFM Lab and GDHPRC Lab, School of Chemistry, Sun Yat-sen University, Guangzhou, 510275, People's Republic of China.
Nanoscale Res Lett. 2017 Dec 12;12(1):617. doi: 10.1186/s11671-017-2372-6.
An activated carbon aerogel (ACA-500) with high surface area (1765 m g), pore volume (2.04 cm g), and hierarchical porous nanonetwork structure is prepared through direct activation of organic aerogel (RC-500) with a low potassium hydroxide ratio (1:1). Based on this substrate, a polyaniline (PANi)-coated activated carbon aerogel/sulfur (ACA-500-S@PANi) composite is prepared via a simple two-step procedure, including melt-infiltration of sublimed sulfur into ACA-500, followed by an in situ polymerization of aniline on the surface of ACA-500-S composite. The obtained ACA-500-S@PANi composite delivers a high reversible capacity up to 1208 mAh g at 0.2C and maintains 542 mAh g even at a high rate (3C). Furthermore, this composite exhibits a discharge capacity of 926 mAh g at the initial cycle and 615 mAh g after 700 cycles at 1C rate, revealing an extremely low capacity decay rate (0.48‰ per cycle). The excellent electrochemical performance of ACA-500-S@PANi can be attributed to the synergistic effect of hierarchical porous nanonetwork structure and PANi coating. Activated carbon aerogels with high surface area and unique three-dimensional (3D) interconnected hierarchical porous structure offer an efficient conductive network for sulfur, and a highly conductive PANi-coating layer further enhances conductivity of the electrode and prevents the dissolution of polysulfide species.
通过用低氢氧化钾比例(1:1)直接活化有机气凝胶(RC - 500)制备出具有高表面积(1765 m²/g)、孔体积(2.04 cm³/g)和分级多孔纳米网络结构的活性炭气凝胶(ACA - 500)。基于该基底,通过简单的两步法制备了聚苯胺(PANi)包覆的活性炭气凝胶/硫(ACA - 500 - S@PANi)复合材料,包括将升华硫熔融渗透到ACA - 500中,随后在ACA - 500 - S复合材料表面原位聚合苯胺。所获得的ACA - 500 - S@PANi复合材料在0.2C时具有高达1208 mAh/g的高可逆容量,即使在高倍率(3C)下也能保持542 mAh/g。此外,该复合材料在初始循环时的放电容量为926 mAh/g,在1C倍率下循环700次后为615 mAh/g,显示出极低的容量衰减率(每循环0.48‰)。ACA - 500 - S@PANi优异的电化学性能可归因于分级多孔纳米网络结构和PANi包覆的协同效应。具有高表面积和独特三维(3D)互连分级多孔结构的活性炭气凝胶为硫提供了高效的导电网络,而高导电的PANi包覆层进一步提高了电极的导电性并防止多硫化物物种的溶解。