4.8 Article

Fast charging self-powered electric double layer capacitor

Journal

JOURNAL OF POWER SOURCES
Volume 342, Issue -, Pages 70-78

Publisher

ELSEVIER
DOI: 10.1016/j.jpowsour.2016.11.083

Keywords

Supercapacitor; Self-powered; Piezoelectric; Nanogenerator; PVDF; EDLC

Funding

  1. Nanyang Technological University, Singapore
  2. National Research Foundation Competitive Research Programme [NRF-CRP-13-2014-02]

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Self-powered electrochemical energy storage devices, which store energy upon application of mechanical force, have emerged as a promising technology for the realization of autonomous systems for maintenance-free, independent and multifunctional operations. However, the existing state-of-the-art technology demonstrates slow self-charging due to slow Faradaic reactions and intercalation mechanism. Here, we report a fast self-charging, self-powered electrochemical energy storage device owing to the formation of an electric double layer with fast adsorption and desorption of ions at the carbon nanotube (CNT) electrode upon application of mechanical force. The device charges up to 70 mV from the open-circuit potential, storing a capacitance of 95 mu Fcm(-2) upon application of a mechanical pressure of 70 N at a frequency of 5 Hz. More importantly, it takes less than 10 s to achieve 90% of the increment in the potential (60 mV), which is more than one order of magnitude faster than all of the previously reported self-powered energy storage devices. (C) 2016 Elsevier B.V. All rights reserved.

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