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HIGH ENERGY STORAGE CAPACITOR BY EMBEDDING TUNNELING NANO-STRUCTURES

机译:嵌入隧道纳米结构的高能存储电容器

摘要

In an All-Electron Battery (AEB), inclusions embedded in an active region between two electrodes of a capacitor provide enhanced energy storage. Electrons can tunnel to/from and/or between the inclusions, thereby increasing the charge storage density relative to a conventional capacitor. One or more barrier layers is present in an AEB to block DC current flow through the device. The AEB effect can be enhanced by using multi-layer active regions having inclusion layers with the inclusions separated by spacer layers that don't have the inclusions. The use of cylindrical geometry or wrap around electrodes and/or barrier layers in a planar geometry can enhance the basic AEB effect. Other physical effects that can be employed in connection with the AEB effect are excited state energy storage, and formation of a Bose-Einstein condensate (BEC).
机译:在全电子电池(AEB)中,嵌入在电容器两个电极之间的有源区域中的夹杂物可增强能量存储。电子可以隧穿到/从和/或在夹杂物之间隧穿,从而相对于常规电容器增加电荷存储密度。 AEB中存在一个或多个势垒层,以阻止直流电流流经该设备。通过使用具有夹杂物层的多层有源区,其中夹杂物被不包含夹杂物的隔离层隔开,可以增强AEB效果。使用圆柱形几何形状或在平面几何形状中缠绕电极和/或势垒层可以增强基本AEB效果。可以与AEB效应结合使用的其他物理效应是激发态能量存储和形成玻色-爱因斯坦冷凝物(BEC)。

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