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- W4309335929 endingPage "101247" @default.
- W4309335929 startingPage "101247" @default.
- W4309335929 abstract "Valorization of cellulosic biomass by processing it into functional nanoscale building blocks enables more sustainable use of resources and an expansion of its potential applications. Nanocelluloses are attractive engineered bionanomaterials with different morphologies, interesting properties, and surface functionalities that depend on the choice of specific resources, synthesis protocols, and processing conditions. This review highlights different natural resources (i.e., plants, bacteria, algae, animals) of nanocelluloses, production methods (i.e., mechanical, physical, chemical, mechanochemical, physicochemical, biological), and their morphologies (i.e., nanoparticles, nanocrystals, nanofibers). The structure-related properties of nanocelluloses (i.e., crystalline structures, mechanical strength, interactions with water, rheological properties, biocompatibility, nontoxicity, and biodegradation) are covered in particular detail. Surface modification by functional groups, macromolecules, and nanoparticle deposition are emphasized to improve their processability and compatibility. The assembly of nanocelluloses into engineered structures (hydrogels, aerogels, macroscopic filaments, and membranes) can produce materials with novel functionalities for various technological applications. Finally, the current state of research, future prospects, and challenges for the commercialization of nanocelluloses are addressed." @default.
- W4309335929 created "2022-11-26" @default.
- W4309335929 creator A5013592815 @default.
- W4309335929 creator A5021353842 @default.
- W4309335929 creator A5026720175 @default.
- W4309335929 creator A5038548794 @default.
- W4309335929 creator A5041412087 @default.
- W4309335929 creator A5048400635 @default.
- W4309335929 date "2022-12-01" @default.
- W4309335929 modified "2023-09-29" @default.
- W4309335929 title "Nanocelluloses as new generation materials: natural resources, structure-related properties, engineering nanostructures, and technical challenges" @default.
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