2020Energy StorageRequires access

Three‐dimensional electrostatic capacitors as futuristic miniaturized energy storage component for energy autonomous systems

Faizan Ali, Ki‐Hyun Kim

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Abstract

Abstract For the integration of ambient energy sources into implantable/wearable microelectronics, the development of efficient and high‐power energy storage devices is essential (such as electrostatic or dielectric capacitors). In light of the general need for small components for energy storage devices, the development of fluorite‐based three‐dimensional structured electrostatic capacitors is expected to open new paths for the future development of on‐chip energy storage, especially because of their enhanced capacity at low deposition thicknesses (in nanometers).

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What this paper is about

Abstract For the integration of ambient energy sources into implantable/wearable microelectronics, the development of efficient and high‐power energy storage devices is essential (such as electrostatic or dielectric capacitors). In light of the general need for small components for energy storage devices, the development of fluorite‐based three‐dimensional structured electrostatic capacitors is expected to open new paths for the future development of on‐chip energy storage, especially because of their enhanced capacity at low deposition thicknesses (in nanometers).

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Available abstract

Abstract For the integration of ambient energy sources into implantable/wearable microelectronics, the development of efficient and high‐power energy storage devices is essential (such as electrostatic or dielectric capacitors). In light of the general need for small components for energy storage devices, the development of fluorite‐based three‐dimensional structured electrostatic capacitors is expected to open new paths for the future development of on‐chip energy storage, especially because of their enhanced capacity at low deposition thicknesses (in nanometers).

Key concepts: Capacitor, Energy storage, Microelectronics, Electrical engineering, Materials science, Dielectric, Component (thermodynamics), Nanometre

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