Micrometer and submicrometer cellulose fibers from co-electrospinning.

dc.contributorWASHINGTON LUIZ ESTEVES MAGALHAES, CNPF; XIAODONG CAO, NORTH CAROLINA STATE UNIVERSITY; LUCIAN A. LUCIA, NORTH CAROLINA STATE UNIVERSITY.
dc.creatorMAGALHAES, W. L. E.
dc.creatorCAO, X.
dc.creatorLUCIA, L. A.
dc.date2025-08-12T10:52:06Z
dc.date2025-08-12T10:52:06Z
dc.date2009-08-03
dc.date2009
dc.date.accessioned2026-07-07T03:34:19Z
dc.descriptionCellulose nanocrystals from aqueous suspension are difficulty to orient into a cellulose matrix. We report for the first time here how a co-electrospinning technique can be used to overcome such a problem. A homemade co-electrospinning apparatus were constructed using a hlgh voltage supply, concentric capillary needles, and just one pump syringe. Cellulose from bleached pulp of eucalyptus were dissolved in N-methyl morpholine oxide (NMMO) at 120 oC and diluted with dimethyl sulfoxide (DMSO) to be used in the externai needle as a sheath solutlon.
dc.formatDivision of Cellulose & Renewable Materials.
dc.identifierIn: AMERICAN CHEMICAL SOCIETY NATIONAL MEETING & EXPOSITION, 237., 2009, Salt Lake City. Abstracts of scientific papers. Washington, DC: American Chemical Society, 2009.
dc.identifierhttp://www.alice.cnptia.embrapa.br/alice/handle/doc/316196
dc.identifier.urihttp://hdl.handle.net/123456789/437516
dc.languageeng
dc.rightsopenAccess
dc.subjectEletrofiação
dc.subjectNanocristal
dc.subjectNanocompósito
dc.subjectElectospinning
dc.subjectCelulose
dc.titleMicrometer and submicrometer cellulose fibers from co-electrospinning.
dc.typeResumo em anais e proceedings

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