Bioinspired Design of Strong, Tough, and Thermally Stable Polymeric Materials via Nanoconfinement
Version 2 2024-06-03, 06:33Version 2 2024-06-03, 06:33
Version 1 2018-09-25, 00:00Version 1 2018-09-25, 00:00
journal contribution
posted on 2024-06-03, 06:33 authored by P Song, J Dai, G Chen, Y Yu, Z Fang, Weiwei LeiWeiwei Lei, S Fu, H Wang, ZG ChenBioinspired Design of Strong, Tough, and Thermally Stable Polymeric Materials via Nanoconfinement
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Location
United StatesLanguage
EnglishPublication classification
C1 Refereed article in a scholarly journalCopyright notice
2018, American Chemical SocietyJournal
ACS NanoVolume
12Pagination
9266-9278ISSN
1936-0851eISSN
1936-086XIssue
9Publisher
AMER CHEMICAL SOCUsage metrics
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Science & TechnologyPhysical SciencesTechnologyChemistry, MultidisciplinaryChemistry, PhysicalNanoscience & NanotechnologyMaterials Science, MultidisciplinaryChemistryScience & Technology - Other TopicsMaterials Sciencenanoconfinementbioinspired designmechanical performancethermal stabilitypoly(vinyl alcohol)GRAPHENE QUANTUM DOTSPOLY(VINYL ALCOHOL) NANOCOMPOSITESMECHANICAL-PROPERTIESARTIFICIAL NACRECARBON NANOTUBESOXIDEREINFORCEMENTSTRENGTHGRAPHITESTRATEGYMD Multidisciplinary4004 Chemical engineering4005 Civil engineering
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