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PUBMED FOR HANDHELDS

Journal Abstract Search


215 related items for PubMed ID: 26256377

  • 1. Characterization of cellulose from banana pseudo-stem by heterogeneous liquefaction.
    Li W, Zhang Y, Li J, Zhou Y, Li R, Zhou W.
    Carbohydr Polym; 2015 Nov 05; 132():513-9. PubMed ID: 26256377
    [Abstract] [Full Text] [Related]

  • 2. Synthesis of carboxymethyl cellulose from waste of cotton ginning industry.
    Haleem N, Arshad M, Shahid M, Tahir MA.
    Carbohydr Polym; 2014 Nov 26; 113():249-55. PubMed ID: 25256482
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  • 3. Crystallization, structural relaxation and thermal degradation in Poly(L-lactide)/cellulose nanocrystal renewable nanocomposites.
    Lizundia E, Vilas JL, León LM.
    Carbohydr Polym; 2015 Jun 05; 123():256-65. PubMed ID: 25843857
    [Abstract] [Full Text] [Related]

  • 4. A comparative study on properties of micro and nanopapers produced from cellulose and cellulose nanofibres.
    Mtibe A, Linganiso LZ, Mathew AP, Oksman K, John MJ, Anandjiwala RD.
    Carbohydr Polym; 2015 Mar 15; 118():1-8. PubMed ID: 25542099
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  • 6. Homogeneous isolation of nanocelluloses by controlling the shearing force and pressure in microenvironment.
    Li J, Wang Y, Wei X, Wang F, Han D, Wang Q, Kong L.
    Carbohydr Polym; 2014 Nov 26; 113():388-93. PubMed ID: 25256499
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  • 9. Liquefied chitin/polyvinyl alcohol based blend membranes: Preparation and characterization and antibacterial activity.
    Zhang J, Xu WR, Zhang Y, Li W, Hu J, Zheng F, Wu Y.
    Carbohydr Polym; 2018 Jan 15; 180():175-181. PubMed ID: 29103493
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  • 11. Studying the effects of laccase treatment in a softwood dissolving pulp: cellulose reactivity and crystallinity.
    Quintana E, Valls C, Barneto AG, Vidal T, Ariza J, Roncero MB.
    Carbohydr Polym; 2015 Mar 30; 119():53-61. PubMed ID: 25563944
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  • 13. Optimization of extraction efficiency by shear emulsifying assisted enzymatic hydrolysis and functional properties of dietary fiber from deoiled cumin (Cuminum cyminum L.).
    Ma M, Mu T, Sun H, Zhang M, Chen J, Yan Z.
    Food Chem; 2015 Jul 15; 179():270-7. PubMed ID: 25722165
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  • 14. Structure, morphology and thermal characteristics of banana nano fibers obtained by steam explosion.
    Deepa B, Abraham E, Cherian BM, Bismarck A, Blaker JJ, Pothan LA, Leao AL, de Souza SF, Kottaisamy M.
    Bioresour Technol; 2011 Jan 15; 102(2):1988-97. PubMed ID: 20926289
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  • 16. Cellulose oligomers production and separation for the synthesis of new fully bio-based amphiphilic compounds.
    Billès E, Onwukamike KN, Coma V, Grelier S, Peruch F.
    Carbohydr Polym; 2016 Dec 10; 154():121-8. PubMed ID: 27577903
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  • 17. Production of cellulose nanofibers using phenolic enhanced surface oxidation.
    Beheshti Tabar I, Zhang X, Youngblood JP, Mosier NS.
    Carbohydr Polym; 2017 Oct 15; 174():120-127. PubMed ID: 28821045
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  • 18. Effect of chemical treatment of pineapple crown fiber in the production, chemical composition, crystalline structure, thermal stability and thermal degradation kinetic properties of cellulosic materials.
    Pereira PHF, Ornaghi HL, Arantes V, Cioffi MOH.
    Carbohydr Res; 2021 Jan 15; 499():108227. PubMed ID: 33388571
    [Abstract] [Full Text] [Related]

  • 19. Thermal stability increase in metallic nanoparticles-loaded cellulose nanocrystal nanocomposites.
    Goikuria U, Larrañaga A, Vilas JL, Lizundia E.
    Carbohydr Polym; 2017 Sep 01; 171():193-201. PubMed ID: 28578954
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  • 20. In vitro degradability and bioactivity of oxidized bacterial cellulose-hydroxyapatite composites.
    Luz EPCG, Chaves PHS, Vieira LAP, Ribeiro SF, Borges MF, Andrade FK, Muniz CR, Infantes-Molina A, Rodríguez-Castellón E, Rosa MF, Vieira RS.
    Carbohydr Polym; 2020 Jun 01; 237():116174. PubMed ID: 32241452
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