Effect of Vacuum and Heat Treatment on a Single Chain of Cellulose: Molecular Dynamics Simulation

被引:0
|
作者
Wang, Wei [1 ]
Li, Juncheng [1 ]
机构
[1] Northeast Forestry Univ, Coll Engn & Technol, Harbin 150040, Peoples R China
关键词
Mechanical properties; Heat treatment; Temperature; Vacuum environment; Cellulose; Molecular dynamics; Simulation; MECHANICAL-PROPERTIES; WOOD; NITROGEN;
D O I
10.15376/biores.18.1.187-197
中图分类号
TB3 [工程材料学]; TS [轻工业、手工业、生活服务业];
学科分类号
0805 ; 080502 ; 0822 ;
摘要
Molecular dynamics simulation was used to better understand a single, non-crystalline cellulose molecular chain and its response to hightemperature treatment. The system temperature was varied from 430 K to 510 K, and the temperature interval was 20 K. Under the polymer consistent force field (PCFF), the dynamics simulation of each temperature was completed under the constant pressure/constant temperature dynamics (NPT). The experimental results showed that the mechanical properties of cellulose heat-treated at high temperature in a vacuum environment initially increased and then decreased with the increase of temperature. When the temperature was at 450 K, the mechanical properties reached an optimal state. Moreover, its mechanical properties were noticeably related to the connection of hydrogen bonds in the cellulose molecular chain and the thermal motion of the molecular chain.
引用
收藏
页码:187 / 197
页数:11
相关论文
共 50 条
  • [1] A Study on the Effects of Vacuum, Nitrogen, and Air Heat Treatments on Single-Chain Cellulose Based on a Molecular Dynamics Simulation
    Hua, Youna
    Wang, Wei
    Gao, Jingying
    Li, Ning
    Qu, Zening
    [J]. FORESTS, 2024, 15 (09):
  • [2] Molecular dynamics simulation of a single polymer chain in vacuum and in solution
    Fujiwara, S
    Sato, T
    [J]. COMPUTER PHYSICS COMMUNICATIONS, 2002, 147 (1-2) : 342 - 345
  • [3] The Effect of Heat Treatment and Acetylation on Formaldehyde Emission in Cellulose: A Molecular Dynamics Simulation Study
    Li, Ning
    Hua, Youna
    Wang, Jia
    Li, Juncheng
    Wang, Wei
    [J]. FORESTS, 2023, 14 (04):
  • [4] Molecular Dynamics Simulation of Heat Conduction through a Molecular Chain
    Schroeder, Christian
    Vikhrenko, Vyacheslav
    Schwarzer, Dirk
    [J]. JOURNAL OF PHYSICAL CHEMISTRY A, 2009, 113 (51): : 14039 - 14051
  • [5] Molecular Dynamics Simulation of Bamboo Heat Treatment with Cellulose Based on Molecular Different Weight Fractions of Water
    Wang, Wei
    Sun, Liyue
    Wu, Mingshuai
    Li, Xing
    Song, Wenlong
    [J]. BIORESOURCES, 2020, 15 (03): : 6766 - 6780
  • [6] Molecular dynamics simulation of the collapse of a single polymer chain
    Michel, A
    Kreitmeier, S
    [J]. COMPUTATIONAL AND THEORETICAL POLYMER SCIENCE, 1997, 7 (02): : 113 - 120
  • [7] Molecular dynamics simulation of single chain in the vicinity of nanoparticle
    Hynstova, K.
    Jancar, J.
    Zidek, J.
    [J]. ADVANCES IN COMPOSITE MATERIALS AND STRUCTURES, PTS 1 AND 2, 2007, 334-335 : 373 - +
  • [8] Effect of amorphous cellulose on the deformation behavior of cellulose composites: molecular dynamics simulation
    Ren, Zechun
    Guo, Rui
    Zhou, Xinyuan
    Bi, Hongjie
    Jia, Xin
    Xu, Min
    Wang, Jun
    Cai, Liping
    Huang, Zhenhua
    [J]. RSC ADVANCES, 2021, 11 (33) : 19967 - 19977
  • [9] Molecular dynamics simulation of AFM studies of a single polymer chain
    Wang, Wenhai
    Kistler, Kurt A.
    Sadeghipour, Keya
    Baran, George
    [J]. PHYSICS LETTERS A, 2008, 372 (47) : 7007 - 7010
  • [10] Folded-chain structure of cellulose II suggested by molecular dynamics simulation
    Yamane, Chihiro
    Miyamoto, Hitomi
    Hayakawa, Daichi
    Ueda, Kazuyoshi
    [J]. CARBOHYDRATE RESEARCH, 2013, 379 : 30 - 37