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Nanocellulose: Recent Fundamental Advances and Emerging Biological and Biomimicking Applications.
Heise, Katja; Kontturi, Eero; Allahverdiyeva, Yagut; Tammelin, Tekla; Linder, Markus B; Ikkala, Olli.
Afiliação
  • Heise K; Department of Bioproducts and Biosystems, Aalto University, Espoo, FI-00076, Finland.
  • Kontturi E; Center of Excellence in Molecular Engineering of Biosynthetic Hybrid Materials Research, Aalto University, FI-00076, Finland.
  • Allahverdiyeva Y; Department of Bioproducts and Biosystems, Aalto University, Espoo, FI-00076, Finland.
  • Tammelin T; Molecular Plant Biology, Department of Biochemistry, University of Turku, Turku, FI-20014, Finland.
  • Linder MB; VTT Technical Research Centre of Finland Ltd, VTT, PO Box 1000, FIN-02044, Espoo, Finland.
  • Nonappa; Department of Bioproducts and Biosystems, Aalto University, Espoo, FI-00076, Finland.
  • Ikkala O; Center of Excellence in Molecular Engineering of Biosynthetic Hybrid Materials Research, Aalto University, FI-00076, Finland.
Adv Mater ; 33(3): e2004349, 2021 Jan.
Article em En | MEDLINE | ID: mdl-33289188
ABSTRACT
In the effort toward sustainable advanced functional materials, nanocelluloses have attracted extensive recent attention. Nanocelluloses range from rod-like highly crystalline cellulose nanocrystals to longer and more entangled cellulose nanofibers, earlier denoted also as microfibrillated celluloses and bacterial cellulose. In recent years, they have spurred research toward a wide range of applications, ranging from nanocomposites, viscosity modifiers, films, barrier layers, fibers, structural color, gels, aerogels and foams, and energy applications, until filtering membranes, to name a few. Still, nanocelluloses continue to show surprisingly high challenges to master their interactions and tailorability to allow well-controlled assemblies for functional materials. Rather than trying to review the already extensive nanocellulose literature at large, here selected aspects of the recent progress are the focus. Water interactions, which are central for processing for the functional properties, are discussed first. Then advanced hybrid gels toward (multi)stimuli responses, shape-memory materials, self-healing, adhesion and gluing, biological scaffolding, and forensic applications are discussed. Finally, composite fibers are discussed, as well as nanocellulose as a strategy for improvement of photosynthesis-based chemicals production. In summary, selected perspectives toward new directions for sustainable high-tech functional materials science based on nanocelluloses are described.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Celulose / Nanotecnologia / Biomimética / Nanoestruturas Limite: Animals / Humans Idioma: En Revista: Adv Mater Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Celulose / Nanotecnologia / Biomimética / Nanoestruturas Limite: Animals / Humans Idioma: En Revista: Adv Mater Ano de publicação: 2021 Tipo de documento: Article