Steered Pull Simulation to Determine Nanomechanical Properties of Cellulose Nanofiber

  • Muthoka, Ruth M.
  • Kim, Hyun Chan
  • Kim, Jung Woong
  • Zhai, Lindong
  • Panicker, Pooja S.
  • ... Kim, Jaehwan
Citations

WEB OF SCIENCE

26
Citations

SCOPUS

28

초록

Cellulose nanofiber (CNF) exhibits excellent mechanical properties, which has been extensively proven through experimental techniques. However, understanding the mechanisms and the inherent structural behavior of cellulose is important in its vastly growing research areas of applications. This study focuses on taking a look into what happens to the atomic molecular interactions of CNF, mainly hydrogen bond, in the presence of external force. This paper investigates the hydrogen bond disparity within CNF structure. To achieve this, molecular dynamics simulations of cellulose I beta nanofibers are carried out in equilibrated conditions in water using GROMACS software in conjunction with OPLS-AA force field. It is noted that the hydrogen bonds within the CNF are disrupted when a pulling force is applied. The simulated Young's modulus of CNF is found to be 161 GPa. A simulated shear within the cellulose chains presents a trend with more hydrogen bond disruptions at higher forces.

키워드

cellulose nanofibermolecular dynamics simulationhydrogen bondmechanical propertiespull simulationATOM FORCE-FIELDMOLECULAR-DYNAMICSPOTENTIAL FUNCTIONSELASTIC-MODULUSCELL-WALLSOPLSMICROFIBRILSDEFORMATIONCRYSTALENERGY
제목
Steered Pull Simulation to Determine Nanomechanical Properties of Cellulose Nanofiber
저자
Muthoka, Ruth M.Kim, Hyun ChanKim, Jung WoongZhai, LindongPanicker, Pooja S.Kim, Jaehwan
DOI
10.3390/ma13030710
발행일
2020-02-01
유형
Article
저널명
Materials
13
3