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Improved thermal and mechanical properties of bacterial cellulose with the introduction of collagen

Version 2 2024-06-06, 08:44
Version 1 2017-07-19, 10:06
journal contribution
posted on 2024-06-06, 08:44 authored by Q Yang, H Ma, Z Dai, J Wang, S Dong, J Shen, J Dong
Composite films comprised of bacterial cellulose (BC) and collagen (COL) were developed using BC hydrogel membranes as the base material and COL as the reinforcing material. Glutaraldehyde (GT) and 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide hydrochloride (EDC·HCl) were then used as cross-linking agents to prepare cross-linked BC/COL composite films by a wet chemical method. The effects of chemical cross-linking on the thermal and mechanical properties of composite films were investigated in detail. The COL molecules were adsorbed and deposited inside of 3D nanofiber networks of BC, coated on the surface of BC fibers. Chemical bonds formed between BC molecules, and between BC and COL molecules after cross-linking. Compared with BC, the obtained composite films showed 57.9 and 70.8% improvement in tensile strength after being cross-linked by GT and EDC·HCl, respectively. Cross-linking also enhanced the thermal stability of the specimens.

History

Journal

Cellulose

Volume

24

Pagination

3777-3787

Location

Dordrecht, The Netherlands

ISSN

0969-0239

eISSN

1572-882X

Language

eng

Publication classification

C Journal article, C1 Refereed article in a scholarly journal

Copyright notice

2017, Springer Science+Business Media B.V.

Issue

9

Publisher

Springer Science+Business Media B.V.