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MoO_2 Nanowire Electrochemically Decorated Graphene Additively Manufactured Supercapacitor Platforms

机译:Moo_2纳米线电化学装饰石墨烯含量加强超级电容器平台

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Additively manufactured (AM) supercapacitor platforms are fabricated from bespoke filaments, which are comprised of electro-conductive graphene (20 wt%) incorporated polylactic acid (80 wt%), via fused deposition modeling and denoted as G/AMEs. The G/AMEs are shown to be capable of acting as a template for the electrodeposition of metals/metal oxides, in particular MoO2 nanowires (MoO2-G/AMEs), which are subsequently explored as a capacitor within 1 m H2SO4, 1-butyl-3-methylimidazolium hexafluorophosphate, and 1-butyl-3-methylimidazolium tetrafluoroborate. Optimization of the MoO2-G/AMEs demonstrates capacitance up to 1212 F g(-1) when used in a symmetric arrangement. The material science described herein represents a significant enhancement in unlocking AMs potential as a valid manufacturing route for device level capacitance architectures.
机译:含有含有的超级电容器平台由定制长丝制成的,其由导电石墨烯(20wt%)包含聚乳酸(80wt%),通过熔融沉积建模并表示为G / ames。 显示G / ames能够作为金属/金属氧化物电沉积的模板,特别是MOO2纳米线(MOO2-G / ames),其随后在1M H 2 SO 4,1-丁基内探索为电容器 -3-甲基咪唑六氟磷酸钙和1-丁基-3-甲基咪唑鎓四氟硼酸盐。 在对称布置中使用时,MOO2-G / AME的优化将显示高达1212 f G(-1)的电容。 本文所述的材料科学表示将AMS电位解锁IMS潜力的显着增强是用于设备级电容架构的有效制造路线。

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