Visualized Bond Scission in Mechanochemiluminescent Polymethyl Acrylate/Cellulose Nanocrystals Composites

被引:31
作者
Chen, Wu [1 ]
Yuan, Yuan [1 ]
Chen, Yulan [1 ]
机构
[1] Tianjin Univ, Dept Chem, Tianjin Key Lab Mol Optoelect Sci, Tianjin 300354, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
CELLULOSE NANOCRYSTALS; NANOCELLULOSE; CHEMILUMINESCENCE; BEHAVIOR; STRESS; ENERGY; ELASTOMERS; FRACTURE; STRAIN;
D O I
10.1021/acsmacrolett.0c00185
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
A series of nanocomposites based on cellulose nanocrystals (CNCs) and polymethyl acrylate (PMA) with covalently incorporated 1,2-dioxetane as a luminescent mechanophore were prepared. Through surface-initiated single-electron transfer radical polymerization, the CNCs nanofiller offers good compatibility with polymer matrix. As a consequence, all the composite materials exhibit reinforced mechanical properties with increased stiffness and strength. Most importantly, 1,2-dioxetane is demonstrated as a sensitive platform to characterize the dissipation pathway of fracture energy, as well as the polymer chain scission in the Mullins effect within these polymer nanocomposites. The combined use of mechanical macroscopic testing and molecular bond scission data herein provides detailed information on how force distributes and failure occurs in complex soft materials.
引用
收藏
页码:438 / 442
页数:5
相关论文
共 38 条
[1]   Synthesis of CO2-responsive cellulose nanocrystals by surface-initiated Cu(0)-mediated polymerisation [J].
Arredondo, Joaquin ;
Jessop, Philip G. ;
Champagne, Pascale ;
Bouchard, Jean ;
Cunningham, Michael F. .
GREEN CHEMISTRY, 2017, 19 (17) :4141-4152
[2]   Mechanical characterization and finite element modelling of cyclic stress-strain behaviour of ultra high molecular weight polyethylene [J].
Avanzini, Andrea .
MATERIALS & DESIGN, 2008, 29 (02) :330-343
[3]   Fatigue fracture of tough hydrogels [J].
Bai, Ruobing ;
Yang, Quansan ;
Tang, Jingda ;
Morelle, Xavier P. ;
Vlassak, Joost ;
Suo, Zhigang .
EXTREME MECHANICS LETTERS, 2017, 15 :91-96
[4]   The reinforcement of elastomeric networks by fillers [J].
Bokobza, L .
MACROMOLECULAR MATERIALS AND ENGINEERING, 2004, 289 (07) :607-621
[5]  
Bréchet Y, 2001, ADV ENG MATER, V3, P571, DOI 10.1002/1527-2648(200108)3:8<571::AID-ADEM571>3.0.CO
[6]  
2-M
[7]   Dioxetanes as Mechanoluminescent Probes in Thermoplastic Elastomers [J].
Chen, Yulan ;
Sijbesma, Rint P. .
MACROMOLECULES, 2014, 47 (12) :3797-3805
[8]  
Chen YL, 2012, NAT CHEM, V4, P559, DOI [10.1038/nchem.1358, 10.1038/NCHEM.1358]
[9]   Rheological properties of cellulose nanocrystal-embedded polymer composites: a review [J].
Ching, Yern Chee ;
Ali, Md. Ershad ;
Abdullah, Luqman Chuah ;
Choo, Kai Wen ;
Kuan, Yong Ching ;
Julaihi, Sabariah Julai ;
Chuah, Cheng Hock ;
Liou, Nai-Shang .
CELLULOSE, 2016, 23 (02) :1011-1030
[10]   Mechanoluminescent Imaging of Osmotic Stress-Induced Damage in a Glassy Polymer Network [J].
Clough, Jess M. ;
van der Gucht, Jasper ;
Sijbesma, Rint P. .
MACROMOLECULES, 2017, 50 (05) :2043-2053