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Fabrication of multidimensional bio-nanomaterials from nanocellulose oxalate

  • Yadong Zhao
  • , Jingwen Li
  • , Qundi Yu
  • , Kloce Dongfang Li
  • , Qiwei Li
  • , Renwu Zhou
  • , Rusen Zhou
  • , Monica Ek
  • , Kostya Ken Ostrikov
  • Zhejiang Ocean University
  • KTH Royal Institute of Technology
  • FineCell Sweden
  • Southeast University, Nanjing
  • Queensland University of Technology

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Nanocelluloses and cellulose nanomaterials derived from natural resources are a group of ideal platform materials for advanced applications. However, their synthesis through sustainable and facile processes to achieve the required properties are still challenging. Here, we prepare the nanocellulose oxalate (n-COX) from cotton with outstanding physicochemical properties by defining the optimal oxalic acid pretreatment conditions. Thus-obtained n-COX with unique 1D nanofiber shape as a platform material is further processed to various high-performance multidimensional bio-nanomaterials through several simple yet effective strategies. First, 2D n-COX films prepared through a casting-drying method show comparable or even better transparency and tensile strength than those made from other types of nanocelluloses. Second, 3D n-COX hydrogels/aerogels fabricated by a molding-crosslinking approach demonstrate good shape stability, well-preserved nanoporous networks, and qualified mechanical properties. Third, n-COX-derived bioinks display improved printability and fidelity, resulting in better size-preserving and shape-control of the 3D-bioprinted scaffolds. We expect this work could offer new insights on engineering natural cellulose and using n-COX as a platform material for further advanced fabrication, and thus, open up application potentials of this new nanocellulose. Graphical abstract: [Figure not available: see fulltext.]

Original languageEnglish
Pages (from-to)2147-2163
Number of pages17
JournalCellulose
Volume30
Issue number4
DOIs
StatePublished - Mar 2023

Keywords

  • Cellulose-based functional biomaterials
  • Multidimensional nanomaterials
  • Nanocellulose
  • Nanocellulose oxalate

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