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Advanced development of chemical sources of current (CSC) and ultra high-volume capacitor structures (UCS) for energy storage devices

机译:用于能量存储装置的电流(CSC)和超大容量电容器结构(UCS)的化学源的高级开发

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This paper addresses advanced development of chemical sources of current (CSC) and ultra-high-volume capacitor structures (UCS) for energy accumulation. For estimated specific energy, CSC with the lithium anode ranks first. Recently, along with the CSC, the ultra-high-volume capacitor structures (UCS) are intensely developing. The most advanced area for a drastic improvement of batteries properties is the use of nanomaterials that acquire unique physical and chemical properties due to the nanoscale level structurization. To implement development of nanomaterials and nanostructures-based CSC and UCS, conventional microelectronics thin-film technologies are used.
机译:本文介绍了电流(CSC)和超大容量电容器结构(UCS)的化学源的高级开发。对于估计的特定能量,CSC与锂阳极排名第一。最近,随着CSC,超大容量电容器结构(UCS)强烈开发。用于急剧改善电池性质的最先进的区域是使用纳米材料由于纳米级结构化而获得独特的物理和化学性质。为了实施纳米材料和基于纳米结构的CSC和UC的发展,使用常规的微电子薄膜技术。

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