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SUMMARY:Highways For High-Rates: Investigating Structure Property Relations
 hips In Wadsley Roth Shear Compounds
LOCATION:Chemistry A101
TZID:America/Denver
DTSTART:20240423T160000
UID:2026-05-04-20-30-02@natsci.colostate.edu
DTSTAMP:20260504T203002
Description:About the Seminar:\nWith the growing demand for electric vehicl
 es\, grid-scale batteries\, and high-power devices\, new high-rate batteri
 es are needed. Currently\, graphite is the current commercial level anode 
 material\, however graphite can suffer from dendrite formation at high-rat
 es. These dendrites can then short circuit and destroy the battery. Nb16W5
 O55 emerged as an alternative high-rate anode material for Li-ion batteri
 es in 2018 [Griffith et al.\, Nature 2018\, 559 (7715)\, 556–563]. This
  exciting discovery ignited research in Wadsley–Roth (W–R) compounds\,
  but systematic experimental studies have not focused on how to tune mater
 ial chemistry and structure to achieve desirable properties for energy sto
 rage applications. In this work\, we systematically investigated how struc
 ture and composition influences capacity\, Li-ion diffusivity\, charge–d
 ischarge profiles\, and capacity loss in a series of W–R compounds. 4:00
  pm
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