DOE OSTI · 3673307
The multifunctional use of an aqueous battery for a high capacity jellyfish robot
Abstract
The batteries that power untethered underwater vehicles (UUVs) serve a single purpose: to provide energy to electronics and motors; the more energy required, the bigger the robot must be to accommodate space for more energy storage. By choosing batteries composed primarily of liquid media [e.g., redox flow batteries (RFBs)], the increased weight can be better distributed for improved capacity with reduced inertial moment. Here, we formed an RFB into the shape of a jellyfish, using two redox chemistries and architectures: (i) a secondary ZnBr 2 battery and (ii) a hybrid primary/secondary ZnI 2 battery. A UUV was able to be powered solely by RFBs with increased volumetric (Q~ 11 ampere-hours per liter) and areal (108 milliampere-hours per square centimeter) energy density, resulting in a long operational lifetime (T~ 1.5 hours) for UUVs composed of primarily electrochemically energy-dense liquid (~90% of the robot’s weight).
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Liu, Xu (ORCID:0000000198483693), Jin, Shuo (ORCID:0000000304259143), Shao, Yiqi (ORCID:0000000292551138), Kuperman, Sofia (ORCID:0000000327106019), Pratt, Autumn, Zhang, Duhan (ORCID:000000019428956X), Lo, Jacqueline, Joo, Yong (ORCID:0000000246461625), Gat, Amir (ORCID:0000000217538937), Archer, Lynden (ORCID:0000000190322772), Shepherd, Robert (ORCID:0000000206319587). 2024-11-29. The multifunctional use of an aqueous battery for a high capacity jellyfish robot. https://doi.org/10.1126/sciadv.adq7430
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