Review of Recent Research into Cellulosic Whiskers, Their Properties and Their Application in Nanocomposite Field
Top Cited Papers
- 21 January 2005
- journal article
- review article
- Published by American Chemical Society (ACS) in Biomacromolecules
- Vol. 6 (2) , 612-626
- https://doi.org/10.1021/bm0493685
Abstract
There are numerous examples where animals or plants synthesize extracellular high-performance skeletal biocomposites consisting of a matrix reinforced by fibrous biopolymers. Cellulose, the world's most abundant natural, renewable, biodegradable polymer, is a classical example of these reinforcing elements, which occur as whiskerlike microfibrils that are biosynthesized and deposited in a continuous fashion. In many cases, this mode of biogenesis leads to crystalline microfibrils that are almost defect-free, with the consequence of axial physical properties approaching those of perfect crystals. This quite “primitive” polymer can be used to create high performance nanocomposites presenting outstanding properties. This reinforcing capability results from the intrinsic chemical nature of cellulose and from its hierarchical structure. Aqueous suspensions of cellulose crystallites can be prepared by acid hydrolysis of cellulose. The object of this treatment is to dissolve away regions of low lateral order so that the water-insoluble, highly crystalline residue may be converted into a stable suspension by subsequent vigorous mechanical shearing action. During the past decade, many works have been devoted to mimic biocomposites by blending cellulose whiskers from different sources with polymer matrixes.Keywords
This publication has 82 references indexed in Scilit:
- Rodlike Cellulose Microcrystals: Structure, Properties, and ApplicationsMacromolecular Rapid Communications, 2004
- Static and Dynamic Light Scattering from Polyelectrolyte Microcrystal CelluloseLangmuir, 2002
- Influence of surface charge on viscosity behavior of cellulose microcrystal suspensionJournal of Wood Science, 1999
- Flow properties of microcrystalline cellulose suspension prepared by acid treatment of native celluloseColloids and Surfaces A: Physicochemical and Engineering Aspects, 1998
- Capabilities of X-ray methods in studies of processes of permeation through dense membranesJournal of Membrane Science, 1998
- Chiral nematic suspensions of cellulose crystallites; phase separation and magnetic field orientationLiquid Crystals, 1994
- Excimer fluorescence as a molecular probe of polymer blend miscibility. 9. Effects of guest concentration and annealing in blends of poly(2-vinylnaphthalene) with poly(cyclohexyl methacrylate)Macromolecules, 1990
- CP/MAS carbon-13 NMR spectra of the crystalline components of native cellulosesMacromolecules, 1987
- Structural variation of native cellulose related to its sourceBiopolymers, 1986
- Liquid Crystal Systems from Fibrillar PolysaccharidesNature, 1959