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  2. Fibril - Wikipedia

    en.wikipedia.org/wiki/Fibril

    The fibrillar structure of wood is said to play a significant role in both the mechanical stability and ability of wood to possess channels to transport minerals and water. Sprucewood (Picea abies), among others, are reported to possess cellulose fibrils with a normalized diameter of 2.5 nm.

  3. Orthotropic material - Wikipedia

    en.wikipedia.org/wiki/Orthotropic_material

    It is most stiff (and strong) along the grain (axial direction), because most cellulose fibrils are aligned that way. It is usually least stiff in the radial direction (between the growth rings), and is intermediate in the circumferential direction.

  4. Secondary cell wall - Wikipedia

    en.wikipedia.org/wiki/Secondary_cell_wall

    The secondary cell wall consists primarily of cellulose, along with other polysaccharides, lignin, and glycoprotein. It sometimes consists of three distinct layers - S 1, S 2 and S 3 - where the direction of the cellulose microfibrils differs between the layers. [1] The direction of the microfibrils is called microfibril angle (MFA). In the ...

  5. Hemicellulose - Wikipedia

    en.wikipedia.org/wiki/Hemicellulose

    Hemicellulose interacts with the cellulose by providing cross-linking of cellulose microfibrils: hemicellulose will search for voids in the cell wall during its formation and provide support around cellulose fibrils in order to equip the cell wall with the maximum possible strength it can provide. [6]

  6. Cellulose - Wikipedia

    en.wikipedia.org/wiki/Cellulose

    Cellulose is used to make water-soluble adhesives and binders such as methyl cellulose and carboxymethyl cellulose which are used in wallpaper paste. Cellulose is further used to make hydrophilic and highly absorbent sponges. Cellulose is the raw material in the manufacture of nitrocellulose (cellulose nitrate) which is used in smokeless gunpowder.

  7. Natural fiber - Wikipedia

    en.wikipedia.org/wiki/Natural_fiber

    These fibrils can bundle to make larger fibers that contribute to the hierarchical structure of many biological materials. [12] These fibrils can form randomly oriented networks that provide the mechanical strength of the organic layer in different biological materials. [13] Chitin provides protection and structural support to many living ...

  8. Cellulose synthase (UDP-forming) - Wikipedia

    en.wikipedia.org/wiki/Cellulose_synthase_(UDP...

    Cellulose microfibrils are made on the surface of cell membranes to reinforce cells walls, which has been researched extensively by plant biochemists and cell biologist because 1) they regulate cellular morphogenesis and 2) they serve alongside many other constituents (i.e. lignin, hemicellulose, pectin) in the cell wall as a strong structural support and cell shape. [15]

  9. Biopolymer - Wikipedia

    en.wikipedia.org/wiki/Biopolymer

    The straight shape allows the molecules to pack closely. Cellulose is very common in application due to its abundant supply, its biocompatibility, and is environmentally friendly. Cellulose is used vastly in the form of nano-fibrils called nano-cellulose. Nano-cellulose presented at low concentrations produces a transparent gel material.

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