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Overview of bacterial cellulose composites: A multipurpose advanced material
Authors:Nasrullah Shah  Mazhar Ul-Islam  Waleed Ahmad Khattak  Joong Kon Park
Affiliation:1. Department of Chemical Engineering, Kyungpook National University, Daegu 702-701, Republic of Korea;2. Department of Chemistry, Abdul Wali Khan University, Mardan, Pakistan
Abstract:Bacterial cellulose (BC) has received substantial interest owing to its unique structural features and impressive physico-mechanical properties. BC has a variety of applications in biomedical fields, including use as biomaterial for artificial skin, artificial blood vessels, vascular grafts, scaffolds for tissue engineering, and wound dressing. However, pristine BC lacks certain properties, which limits its applications in various fields; therefore, synthesis of BC composites has been conducted to address these limitations. A variety of BC composite synthetic strategies have been developed based on the nature and relevant applications of the combined materials. BC composites are primarily synthesized through in situ addition of reinforcement materials to BC synthetic media or the ex situ penetration of such materials into BC microfibrils. Polymer blending and solution mixing are less frequently used synthetic approaches. BC composites have been synthesized using numerous materials ranging from organic polymers to inorganic nanoparticles. In medical fields, these composites are used for tissue regeneration, healing of deep wounds, enzyme immobilization, and synthesis of medical devices that could replace cardiovascular and other connective tissues. Various electrical products, including biosensors, biocatalysts, E-papers, display devices, electrical instruments, and optoelectronic devices, are prepared from BC composites with conductive materials. In this review, we compiled various synthetic approaches for BC composite synthesis, classes of BC composites, and applications of BC composites. This study will increase interest in BC composites and the development of new ideas in this field.
Keywords:AAc, acrylic acid   BC, bacterial cellulose   Ch, chitosan   CNTs, carbon nanotubes   COL, collagen   EFM, electric force microscopy   FeO, iron oxide   FE-SEM, field emission scanning electron microscopy   FRP, fiber reinforced polymer   GO, graphene oxide   HA, hydroxyapatite   HRP, horseradish peroxidase   MIP, molecularly imprinted polymers   MMT, montmorrilonite   NMMO, N-methy morpholine N-oxide   NPs, nanoparticles   OLED, organic light emitting diode   PAni, polyanaline   PBH, poly-3-hydroxybutyrate   Pd, palladium   Pt, platinum   PVA, polyvinyl alcohol   TEM, transmission electron microscopy   TiO2, titanium dioxide   XRD, X-ray diffraction   ZnO, zinc oxide
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