Journal article
Diamond Supercapacitors: Towards Durable, Safe, and Biocompatible Aqueous-Based Energy Storage
A Chambers, S Prawer, A Ahnood, H Zhan
Frontiers in Chemistry | Published : 2022
Abstract
Durable and safe energy storage is required for the next generation of miniature bioelectronic devices, in which aqueous electrolytes are preferred due to the advantages in safety, low cost, and high conductivity. While rechargeable aqueous batteries are among the primary choices with relatively low power requirements, their lifetime is generally limited to a few thousand charging/discharging cycles as the electrode material can degrade due to electrochemical reactions. Electrical double layer capacitors (EDLCs) possess increased cycling stability and power density, although with as-yet lower energy density, due to quick electrical adsorption and desorption of ions without involving chemical..
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Grants
Awarded by Australian Research Council
Funding Acknowledgements
Funding This work is supported by Australian Research Council grants DP210102750 and LP190100528. AC is supported by an Australian Government Research Training Program (RTP) Scholarship.