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Realizing both High Energy and High Power Densities by Twisting Three Carbon-Nanotube-Based Hybrid Fibers

机译:通过加捻三根基于碳纳米管的混合纤维来实现高能量和高功率密度

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摘要

Energy storage devices, such as lithium-ion batteries and supercapacitors, are required for the modern electronics. However, the intrinsic characteristics of low power densities in batteries and low energy densities in supercapacitors have limited their applications. How to simultaneously realize high energy and power densities in one device remains a challenge. Herein a fiber-shaped hybrid energy-storage device (FESD) formed by twisting three carbon nanotube hybrid fibers demonstrates both high energy and power densities. For the FESD, the energy density (50 mWhcm(-3) or 90 Whkg(-1)) many times higher than for other forms of supercapacitors and approximately 3 times that of thin-film batteries; the power density (1 Wcm(-3) or 5970 Wkg(-1)) is approximately 140 times of thin-film lithium-ion battery. The FESD is flexible, weave-able and wearable, which offers promising advantages in the modern electronics.
机译:现代电子设备需要储能设备,例如锂离子电池和超级电容器。然而,电池中低功率密度和超级电容器中低能量密度的固有特性限制了它们的应用。如何在一个设备中同时实现高能量和功率密度仍然是一个挑战。在本文中,通过扭曲三根碳纳米管杂化纤维形成的纤维状杂化能量存储装置(FESD)表现出高能量密度和功率密度。对于FESD,其能量密度(50 mWhcm(-3)或90 Whkg(-1))是其他形式的超级电容器的许多倍,是薄膜电池的大约3倍;功率密度(1 Wcm(-3)或5970 Wkg(-1))约为薄膜锂离子电池的140倍。 FESD具有柔韧性,可编织性和可穿戴性,在现代电子产品中具有可观的优势。

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