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Conformal electrodeposition of manganese dioxide onto reticulated vitreous carbon for 3D microbattery applications

机译:在3D微型电池应用中将二氧化锰以共形方式电沉积到网状玻璃碳上

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摘要

Reticulated vitreous carbon (RVC) has been used as a high aspect ratio substrate and current collector for 3D microbattery systems. A 100 ppi compressed RVC offered a 70 × increase in surface area when a 2 mm thick piece was used. Deposition of electrolytic manganese dioxide (EMD) conformal films of thicknesses between 0.5 and 10 μm has been demonstrated. Thermal conditioning at 400 °C has been shown to remove water from the EMD films and allow for the reversible insertion and extraction of lithium. This treatment has not resulted in any observable damage to the 3D carbon substrate. A capacity per footprint area increase of 250 was seen in a comparison between planar films and those deposited on the 3D substrate. The utilisable capacity was seen to be extremely sensitive to film thickness. This indicates that the films are non-porous and the slow solid state diffusion is limiting the performance of the films.
机译:网状玻璃碳(RVC)已被用作3D微型电池系统的高纵横比基板和集电器。当使用2 mm厚的部件时,压缩后的100 ppi RVC可提供70倍的表面积增加。已经证明沉积厚度在0.5到10μm之间的电解二氧化锰(EMD)保形膜。已证明在400°C的温度下进行热调节可去除EMD膜中的水分,并允许锂的可逆插入和萃取。该处理并未对3D碳基材造成任何可观察到的损坏。在平面膜与沉积在3D基板上的平面膜之间的比较中,可以看到每足迹面积的容量增加了250。可利用的容量被认为对膜厚度极其敏感。这表明膜是无孔的,并且缓慢的固态扩散限制了膜的性能。

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