News
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Multicomponent Thick Sintered Electrodes
April 13
Chen first author paper considering different two-component sintered electrode configurations!
View it HERE -
Characterizing Chemical Redox of Lithium-Ion Material in Packed Bed Reactor
February 6
Devanshi first author paper characterizing reaction progression during chemical redox of a lithium-ion battery material with soluble redox shuttles in a packed bed reactor configuration!
View it HERE -
Understanding Cross-over in Nonaqueous Flow Battery Membranes
November 6
Patrick first author paper on understanding the role of thermodynamic interactions in redox shuttle crossover for nonaqueous flow batteries! Suggests very different considerations relative to aqueous systems!
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Doping LiMn2O4 for Thick Sintered Electrodes
November 6
Chen first author paper on using doping of LiMn2O4 (LMO) to improve its stability and electronic conductivity for use in thick sintered electrode batteries!
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Anisotropic Li-ion Particle Synthesis
August 24
Chen first author paper on synthesis of anisotropic particles for Li-ion batteries via precursor growth inhibitors!
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Offshore Energy Storage
August 24
Collaborative work from Jeff and Juliet including multiple UVA researchers on offshore energy storage!
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Improving Thick Sintered Electrode Transport Limitations
August 24
First author paper from Ziyang on mitigating transport limitations in thick sintered electrodes via new electrolytes and modifying microstructure in collaboration with ODU!!
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Liquid Metal Batteries integrated with Wind Turbines
July 1
First author paper from Juliet Simpson analyzing liquid metal batteries integrated in wind turbines - collaborative report from UVA and MIT!
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Pore Microstructure Impacts for Sintered Electrodes Study Published
June 25
Ziyang first author paper from collaboration with Old Dominion University including NIST neutron imaging data comparing hydraulically pressed and ice-templated thick sintered electrodes!
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Chemical Redox Comparison Study Published
May 12
Devanshi first author paper with Chen on tracking and comparing the chemical redox of different redox shuttles reacting with a Li-ion cathode material!
View it HERE