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Encapsulation of flexible transparent electrodes based on indium zinc tin oxide with highly transparent and mechanically robust polymer dielectrics

Authors
Biswas, SwarupLee, YongjuJeong, JaebumKim, Hyeok
Issue Date
Jun-2024
Publisher
Elsevier Ltd
Keywords
CYTOP; Flexible Transparent Electrodes; Indium Zinc Tin Oxide; Mechanical Robustness; Polymethyl Methacrylate
Citation
Materials Today Communications, v.39
Indexed
SCIE
SCOPUS
Journal Title
Materials Today Communications
Volume
39
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70651
DOI
10.1016/j.mtcomm.2024.109143
ISSN
2352-4928
2352-4928
Abstract
This study was aimed at comprehensively investigating the utility of polymethyl methacrylate (PMMA) and CYTOP as encapsulation layers for flexible transparent electrodes composed of indium zinc tin oxide (IZTO). Optical modeling and experimental techniques were combined to assess the viability of PMMA and CYTOP as encapsulation materials. Optical modeling suggested that PMMA and CYTOP are well-suited for IZTO encapsulation. Subsequent experiment confirmed that the transmittance values of IZTO-films remained unaffected when encapsulated with PMMA and CYTOP. To examine the influence of encapsulation on mechanical resilience, all film, including untreated IZTO and IZTO treated with PMMA/CYTOP, were subjected to 20,000 bending cycles. The mechanical stability and optical properties of the IZTO film were considerably enhanced when encapsulated with these insulating materials. The improvement in transmittance was attributable to the lower refractive index of PMMA and CYTOP. Furthermore, scanning electron microscopy images demonstrated that the remarkable flexibility of PMMA and CYTOP effectively prevented the formation of cracks on the IZTO film, underscoring their pivotal role in enhancing the mechanical robustness of IZTO. In summary, this research highlights the potential of PMMA and CYTOP as efficient encapsulation materials for IZTO-based flexible transparent electrodes, offering dual benefits in terms of optical performance and mechanical durability. © 2024
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