首页> 外文期刊>Electrochimica Acta >One-pot synthesis of rice-like TiO2/graphene hydrogels as advanced electrodes for supercapacitors and the resulting aerogels as high-efficiency dye adsorbents
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One-pot synthesis of rice-like TiO2/graphene hydrogels as advanced electrodes for supercapacitors and the resulting aerogels as high-efficiency dye adsorbents

机译:一种罐装水稻类TiO2 /石墨烯水凝胶作为超级电容器的先进电极和所得气凝胶作为高效染料吸附剂

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Rice-like titanium oxide (TiO2)/graphene hydrogel (RTGH) was synthesized using a facile one-pot hydrothermal method. During the hydrothermal process, rice-like TiO2 nanoparticles with typical diameters of 15-40 nm and lengths of 40-100 nm were formed using sodium citrate as a structure directing agent. The TiO2 nanoparticles and graphene nanosheets (GNs) self-assembled into threedimensional interconnected networks with a large surface area. COmpared with pristine graphene hydrogel (GH), P25/GH, and RTGH-blank, the strong interaction between rice-like TiO2 nanoparticles and GNs through covalent chemical bonding endowed RTGH with superior physicochemical properties, such as increased adsorption capacities and improved electrochemical performance. Results indicated that the typical RTGH exhibited a high adsorption capacity of 177.3 mg g(-1) for methylene blue (MB). The resulting aerogel, as a high-efficiency adsorbent, completed the decolorization of the MB solution within 2 h. Moreover, the typical RTGH presented high electrochemical performance with a specific capacitance of 3723 F g(-1) in a three-electrode system and 332.6 F g(-1) in a two-electrode system at a current density of 0.2 A g-1 using 1 mol L-1 H2SO4 aqueous solution as electrolyte. Furtherinore, the RTGH showed high rate capability and good stability with a capacitance retention ratio of 91.4% after 2000 charge discharge cycles and 75.4% after 120 h of floating test both at 4 A g(-1) in a two-electrode mode. Our results suggested that RTGH is a potentially useful macroscopic device for addressing current environmental and energy storage issues. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用容易的单壶水热法合成米状氧化钛(TiO 2)/石墨烯水凝胶(RTGH)。在水热过程中,使用柠檬酸钠作为结构指导剂,形成具有15-40nm的典型直径和长度为40-100nm的水稻的TiO2纳米颗粒。 TiO2纳米颗粒和石墨烯纳米片(GNS)用大表面积自组装成三维互连网络。与原始石墨烯水凝胶(GH),P25 / GH和RTGHBALL相比,水稻类TiO2纳米颗粒和GNS通过共价化学键合的强相互作用赋予RTGH具有优异的物理化学性质,例如增加的吸附能力和改善的电化学性能。结果表明,典型的RTGH为亚甲蓝(MB)的高吸附容量为177.3mg g(-1)。作为高效吸附剂的所得气凝胶完成了在2小时内完成Mb溶液的脱色。此外,典型的RTGH呈现高电化学性能,在三电极系统中具有3723f g(-1)的特定电容,在双电极系统中以0.2a g-的电流系统中的332.6 f g(-1)。 1使用1mol L-1 H 2 SO 4水溶液作为电解质。此外,RTGH显示出高速率能力和良好的稳定性,电容保持比率为91.4%,在2000个电荷放电循环后的75.4%,在两个电极模式下在4Ag(-1)下浮动测试中的120小时后。我们的结果表明RTGH是一种用于解决当前环境和能量存储问题的潜在有用的宏观设备。 (c)2017 Elsevier Ltd.保留所有权利。

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