Cited 1 time in
Durable silver nanowire transparent electrodes enabled by biorenewable nanocoating using chitin and cellulose nanofibers for flexible electronics
| DC Field | Value | Language |
|---|---|---|
| dc.contributor.author | Kwon, Yoo-Bin | - |
| dc.contributor.author | Cho, Seongwon | - |
| dc.contributor.author | Min, Dal-Hee | - |
| dc.contributor.author | Kim, Young-Kwan | - |
| dc.date.accessioned | 2024-09-23T14:00:09Z | - |
| dc.date.available | 2024-09-23T14:00:09Z | - |
| dc.date.issued | 2024-10 | - |
| dc.identifier.issn | 2055-6756 | - |
| dc.identifier.issn | 2055-6764 | - |
| dc.identifier.uri | https://scholarworks.dongguk.edu/handle/sw.dongguk/23274 | - |
| dc.description.abstract | The protection of silver nanowire (AgNW) networks is crucial for enhancing their durability and applicability to flexible electronics. In this study, we present a sustainable and efficient strategy to protect AgNW-based flexible transparent electrodes (FTEs) using a layer-by-layer (LBL) assembly of biorenewable chitin and cellulose nanofibers (Chi and Cell). These uniform LBL-assembled thin films were successfully fabricated on AgNW FTEs due to their opposite surface charges. The resulting (Chi/Cell)n bilayers, where n is the number of bilayers, did not degrade the optoelectrical properties of AgNW FTEs and significantly enhanced their stability under various harsh conditions. The optimized (Chi/Cell)10@Al-AgNW FTEs exhibited comprehensive stability against UV/O3 treatment for 40 min, thermal treatment at 250 degrees C for 350 min, Na2S (1%), HCl (10%), and NH3 (30%) treatments for 3, 30, and 105 min, respectively, sonication for 300 min, and 10 000 cycles of bending test. Therefore, the (Chi/Cell)10@Al-AgNW FTEs were successfully applied to transparent heaters (TH) and pressure sensors with remarkably improved applicability, durability, and performance compared to pristine AgNW FTEs, providing a reassuring solution to the stability issues of AgNW-based FTEs. The stability of AgNW FTEs was improved using biorenewable thin films composed of chitin and cellulose nanofibers. Our eco-friendly strategy also improved their performance as transparent heaters and pressure sensors. | - |
| dc.format.extent | 9 | - |
| dc.language | 영어 | - |
| dc.language.iso | ENG | - |
| dc.publisher | Royal Society of Chemistry | - |
| dc.title | Durable silver nanowire transparent electrodes enabled by biorenewable nanocoating using chitin and cellulose nanofibers for flexible electronics | - |
| dc.type | Article | - |
| dc.publisher.location | 영국 | - |
| dc.identifier.doi | 10.1039/d4nh00285g | - |
| dc.identifier.scopusid | 2-s2.0-85204095161 | - |
| dc.identifier.wosid | 001313070900001 | - |
| dc.identifier.bibliographicCitation | Nanoscale Horizons, v.9, no.11, pp 2051 - 2059 | - |
| dc.citation.title | Nanoscale Horizons | - |
| dc.citation.volume | 9 | - |
| dc.citation.number | 11 | - |
| dc.citation.startPage | 2051 | - |
| dc.citation.endPage | 2059 | - |
| dc.type.docType | Article | - |
| dc.description.isOpenAccess | N | - |
| dc.description.journalRegisteredClass | scie | - |
| dc.description.journalRegisteredClass | scopus | - |
| dc.relation.journalResearchArea | Chemistry | - |
| dc.relation.journalResearchArea | Science & Technology - Other Topics | - |
| dc.relation.journalResearchArea | Materials Science | - |
| dc.relation.journalWebOfScienceCategory | Chemistry, Physical | - |
| dc.relation.journalWebOfScienceCategory | Nanoscience & Nanotechnology | - |
| dc.relation.journalWebOfScienceCategory | Materials Science, Multidisciplinary | - |
| dc.subject.keywordPlus | NEXT-GENERATION | - |
| dc.subject.keywordPlus | CHALLENGES | - |
| dc.subject.keywordPlus | GRAPHENE | - |
| dc.subject.keywordPlus | FILMS | - |
| dc.subject.keywordAuthor | Chitin | - |
| dc.subject.keywordAuthor | Silver | - |
| dc.subject.keywordAuthor | Bending Tests | - |
| dc.subject.keywordAuthor | Cells | - |
| dc.subject.keywordAuthor | Cellulose Films | - |
| dc.subject.keywordAuthor | Flexible Electronics | - |
| dc.subject.keywordAuthor | High Modulus Textile Fibers | - |
| dc.subject.keywordAuthor | Nanocellulose | - |
| dc.subject.keywordAuthor | Nanofibers | - |
| dc.subject.keywordAuthor | Silver Nanowires | - |
| dc.subject.keywordAuthor | Transparent Electrodes | - |
| dc.subject.keywordAuthor | Bi-layer | - |
| dc.subject.keywordAuthor | Biorenewable | - |
| dc.subject.keywordAuthor | Biorenewables | - |
| dc.subject.keywordAuthor | Cellulose Nanofibers | - |
| dc.subject.keywordAuthor | Efficient Strategy | - |
| dc.subject.keywordAuthor | Layer-by-layer Assemblies | - |
| dc.subject.keywordAuthor | Nano-coatings | - |
| dc.subject.keywordAuthor | Sustainable Strategies | - |
| dc.subject.keywordAuthor | Transparent Electrode | - |
| dc.subject.keywordAuthor | Chitin | - |
| dc.subject.keywordAuthor | Cellulose | - |
| dc.subject.keywordAuthor | Durability | - |
| dc.subject.keywordAuthor | Electrodes | - |
| dc.subject.keywordAuthor | Electronics | - |
| dc.subject.keywordAuthor | Processing | - |
| dc.subject.keywordAuthor | Stability | - |
| dc.subject.keywordAuthor | Cellulose Nanofiber | - |
| dc.subject.keywordAuthor | Chitin | - |
| dc.subject.keywordAuthor | Nanocoating | - |
| dc.subject.keywordAuthor | Nanowire | - |
| dc.subject.keywordAuthor | Silver | - |
| dc.subject.keywordAuthor | Article | - |
| dc.subject.keywordAuthor | Bilayer Membrane | - |
| dc.subject.keywordAuthor | Controlled Study | - |
| dc.subject.keywordAuthor | Degradation | - |
| dc.subject.keywordAuthor | Electrode | - |
| dc.subject.keywordAuthor | Electronics | - |
| dc.subject.keywordAuthor | Pharmaceutics | - |
| dc.subject.keywordAuthor | Sensor | - |
| dc.subject.keywordAuthor | Surface Charge | - |
| dc.subject.keywordAuthor | Thermotherapy | - |
| dc.subject.keywordAuthor | Ultrasound | - |
| dc.subject.keywordAuthor | Ultraviolet Radiation | - |
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