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Enabling On-Demand Conformal Zn-Ion Batteries on Non-Developable Surfaces

Author(s)
Ahn, David B. B.Kim, Won-YeongLee, Kwon-HyungLee, Seong-SunKim, Seung-HyeokPark, SodamHong, Young-KukLee, Sang-Young
Issued Date
2023-05
DOI
10.1002/adfm.202211597
URI
https://scholarworks.unist.ac.kr/handle/201301/62355
Citation
ADVANCED FUNCTIONAL MATERIALS, v.33, no.18, pp.2211597
Abstract
Conventional power sources encounter difficulties in achieving structural unitization with complex-shaped electronic devices because of their fixed form factors. Here, it is realized that an on-demand conformal Zn-ion battery (ZIB) on non-developable surfaces uses direct ink writing (DIW)-based nonplanar 3D printing. First, ZIB component (manganese oxide-based cathode, Zn powder-based anode, and UV-curable gel composite electrolyte) inks are designed to regulate their colloidal interactions to fulfill the rheological requirements of nonplanar 3D printing, and establish bi-percolating ion/electron conduction pathways, thereby enabling geometrical synchronization with non-developable surfaces, and ensuring reliable electrochemical performance. The ZIB component inks are conformally printed on arbitrary curvilinear substrates to produce embodied ZIBs that can be seamlessly integrated with complicated 3D objects (including human ears). The conformal ZIB exhibits a high fill factor (i.e., areal coverage of cells on underlying substrates, approximate to 100%) that ensures high volumetric energy density (50.5 mWh cm(cell)(-3)), which exceeds those of previously-reported shape-adaptable power sources.
Publisher
WILEY-V C H VERLAG GMBH
ISSN
1616-301X
Keyword (Author)
colloidal interactionsnon-developable surfacesnonplanar 3D printingon-demand conformal power sourcesZn-ion batteries
Keyword
PERFORMANCESUSPENSIONS

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