Lithium Dendrite Suppression with UV-Curable Polysilsesquioxane Separator Binders

Authors
Na, WonjunLee, Albert S.Lee, Jin HongHwang, Seung SangKim, EunkyoungHong, Soon ManKoo, Chong Min
Issue Date
2016-05-25
Publisher
American Chemical Society
Citation
ACS Applied Materials & Interfaces, v.8, no.20, pp.12852 - 12858
Abstract
For the first time, an inorganic organic hybrid polymer binder was used for the coating of hybrid composites on separators to enhance thermal stability and to prevent formation of lithium dendrite in lithium metal batteries. The fabricated hybrid-composite-coated separators exhibited minimal thermal shrinkage compared with the previous composite separators (<5% change in dimension), maintenance of porosity (Gurley number 400 s/100 cm(3)), and high ionic conductivity (0.82 mS/cm). Lithium metal battery cell examinations with our hybrid-composite -coated separators revealed excellent C-rate and cyclability performance due to the prevention of lithium dendrite growth on the lithium anode even after 200 cycles under 0.2-5C (charge discharge) conditions. The mechanism for lithium dendrite prevention was attributed to exceptional nanoscale surface mechanical properties of the hybrid composite coating layer compared with the lithium metal anode, as the elastic modulus of the hybrid-composite-coated separator far exceeded those of both the lithium metal anode and the required threshold for lithium metal dendrite prevention.
Keywords
ELECTROLYTES; CHALLENGES; STABILITY; PERFORMANCE; MEMBRANES; NETWORK; GROWTH; ELECTROLYTES; CHALLENGES; STABILITY; PERFORMANCE; MEMBRANES; NETWORK; GROWTH; lithium metal battery; lithium dendrite; separator; silsesquioxane; thermal stability
ISSN
1944-8244
URI
https://pubs.kist.re.kr/handle/201004/124048
DOI
10.1021/acsami.6b02735
Appears in Collections:
KIST Article > 2016
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