Literature DB >> 23418823

Cellulose microfibril twist, mechanics, and implication for cellulose biosynthesis.

Zhen Zhao1, Oleg E Shklyaev, Abdolmajid Nili, Mohamed Naseer Ali Mohamed, James D Kubicki, Vincent H Crespi, Linghao Zhong.   

Abstract

All-atom molecular dynamics simulations with explicit water solvent were used to investigate the microstructure and conformational dynamics of cellulose Iβ microfibrils as a function of microfibril length and cross-sectional size and shape. Cellulose microfibrils quickly develop a right-handed twist, which then remains stable over the entire 10 ns simulation time. The helical angle is independent of microfibril length and inversely proportional to its cross-sectional area, in accord with the expectations of continuum theory for an intrinsic chiral twist that is opposed by torsional shear. These calculations provide-to our knowledge-the first estimates of the shear modulus of a cellulose microfibril from MD simulations. The internal strains caused by this helical twist, propagated indefinitely along the microfibril axis, could be relaxed by periodic regions of amorphous structure along the axis of the cellulose microfibrils.

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Year:  2013        PMID: 23418823     DOI: 10.1021/jp3089929

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  11 in total

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Review 2.  Bioinspired Bouligand cellulose nanocrystal composites: a review of mechanical properties.

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3.  Re-constructing our models of cellulose and primary cell wall assembly.

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4.  Building an extensible cell wall.

Authors:  Daniel J Cosgrove
Journal:  Plant Physiol       Date:  2022-06-27       Impact factor: 8.005

5.  Preferred crystallographic orientation of cellulose in plant primary cell walls.

Authors:  Dan Ye; Sintu Rongpipi; Sarah N Kiemle; William J Barnes; Arielle M Chaves; Chenhui Zhu; Victoria A Norman; Alexander Liebman-Peláez; Alexander Hexemer; Michael F Toney; Alison W Roberts; Charles T Anderson; Daniel J Cosgrove; Esther W Gomez; Enrique D Gomez
Journal:  Nat Commun       Date:  2020-09-18       Impact factor: 14.919

6.  Irregular and suppressed elastic deformation by a structural twist in cellulose nanofibre models.

Authors:  Kojiro Uetani; Takuya Uto; Nozomu Suzuki
Journal:  Sci Rep       Date:  2021-01-12       Impact factor: 4.379

7.  Zhurkov's Stress-Driven Fracture as a Driving Force of the Microcrystalline Cellulose Formation.

Authors:  Sergey V Stovbun; Mariya G Mikhaleva; Aleksey A Skoblin; Sergey V Usachev; Sergey N Nikolsky; Vasily A Kharitonov; Kseniya I Kovaleva; Galina G Politenkova; Alexander S Vedenkin; Dmitry V Zlenko
Journal:  Polymers (Basel)       Date:  2020-12-10       Impact factor: 4.329

8.  On the orientation of the chains in the mercerized cellulose.

Authors:  Dmitry V Zlenko; Sergey V Stovbun; Daria N Vtyurina; Sergey V Usachev; Aleksey A Skoblin; Mariya G Mikhaleva; Galina G Politenkova; Sergey N Nikolsky
Journal:  Sci Rep       Date:  2021-04-22       Impact factor: 4.379

9.  Local Crystallinity in Twisted Cellulose Nanofibers.

Authors:  Tom Willhammar; Kazuho Daicho; Duncan N Johnstone; Kayoko Kobayashi; Yingxin Liu; Paul A Midgley; Lennart Bergström; Tsuguyuki Saito
Journal:  ACS Nano       Date:  2021-01-19       Impact factor: 15.881

10.  UV-Triggered On-Demand Temperature-Responsive Reversible and Irreversible Gelation of Cellulose Nanocrystals.

Authors:  Christoph Hörenz; Kia Bertula; Tony Tiainen; Sami Hietala; Ville Hynninen; Olli Ikkala
Journal:  Biomacromolecules       Date:  2020-01-28       Impact factor: 6.988

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