Direct Silyl Ether Metathesis for Vitrimers with Exceptional Thermal Stability

被引:275
作者
Tretbar, Chase A. [1 ]
Neal, James A. [1 ]
Guan, Zhibin [1 ]
机构
[1] Univ Calif Irvine, Dept Chem, Irvine, CA 92697 USA
基金
美国国家科学基金会;
关键词
POLYMER NETWORKS; CROSS-LINKING; EXCHANGE;
D O I
10.1021/jacs.9b08876
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Vitrimers are a new class of polymeric materials that simultaneously offer the desired physical properties of thermosets and malleability/reprocessability of thermoplastics. Despite significant progress being made in the field of vitrimers, there exists a critical need for the development of robust dynamic covalent chemistries for the production of strong and thermally stable vitrimers. In this work, we discovered a new silyl ether metathesis reaction and used it for the preparation of vitrimers with exceptional thermal stability. In small-molecule model studies, we observed that silyl ether motifs directly exchange under anhydrous conditions catalyzed by a Bronsted or Lewis acid catalyst. For initial vitrimer demonstration, a commodity polymer, poly(ethylene-co-vinyl alcohol) (PEOH), was silylated with trimethylsilyl (TMS) groups followed by cross-linking with a bis-silyl ether cross-linker. The resulting thermoset showed exceptional thermal stability while maintaining malleability/reprocessability at elevated temperatures. The vitrimer properties such as recyclability and stress relaxation at various temperatures were carefully investigated. The material was reprocessable at 150 degrees C while also exhibiting good creep resistance at temperatures below its melting transition (T-m). This work demonstrates the silyl ether metathesis reaction as a new, robust dynamic covalent chemistry to introduce plasticity, reprocessability, and recyclability to thermosets.
引用
收藏
页码:16595 / 16599
页数:5
相关论文
共 30 条
[1]   Dioxomolybdenum(VI) and dioxotungsten(VI) complexes: efficient catalytic activity for crosslinking reaction in ethylene-vinyl acetate copolymer/alkoxysilane composites [J].
Adachi, Kenta ;
Toyomura, Shoko ;
Miyakuni, Yuko ;
Yamazaki, Suzuko ;
Honda, Kensuke ;
Hirano, Tomoyuki .
POLYMERS FOR ADVANCED TECHNOLOGIES, 2015, 26 (06) :597-605
[2]  
Brandrup J., 1989, Polymer Handbook
[3]   Polylactide Vitrimers [J].
Brutman, Jacob P. ;
Delgado, Paula A. ;
Hillmyer, Marc A. .
ACS MACRO LETTERS, 2014, 3 (07) :607-610
[4]   Metal-Catalyzed Transesterification for Healing and Assembling of Thermosets [J].
Capelot, Mathieu ;
Montarnal, Damien ;
Tournilhac, Francois ;
Leibler, Ludwik .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2012, 134 (18) :7664-7667
[5]   Malleable and Self-Healing Covalent Polymer Networks through Tunable Dynamic Boronic Ester Bonds [J].
Cromwell, Olivia R. ;
Chung, Jaeyoon ;
Guan, Zhibin .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2015, 137 (20) :6492-6495
[6]   Chemical control of the viscoelastic properties of vinylogous urethane vitrimers [J].
Denissen, Wim ;
Droesbeke, Martijn ;
Nicolay, Renaud ;
Leibler, Ludwik ;
Winne, Johan M. ;
Du Prez, Filip E. .
NATURE COMMUNICATIONS, 2017, 8
[7]   Vitrimers: permanent organic networks with glass-like fluidity [J].
Denissen, Wim ;
Winne, Johan M. ;
Du Prez, Filip E. .
CHEMICAL SCIENCE, 2016, 7 (01) :30-38
[8]   Vinylogous Urethane Vitrimers [J].
Denissen, Wim ;
Rivero, Guadalupe ;
Nicolay, Renaud ;
Leibler, Ludwik ;
Winne, Johan M. ;
Du Prez, Filip E. .
ADVANCED FUNCTIONAL MATERIALS, 2015, 25 (16) :2451-2457
[9]   Mechanically Activated, Catalyst-Free Polyhydroxyurethane Vitrimers [J].
Fortman, David J. ;
Brutman, Jacob P. ;
Cramer, Christopher J. ;
Hillmyer, Marc A. ;
Dichtel, William R. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2015, 137 (44) :14019-14022
[10]  
Hall D. G., 2005, STRUCTURE PROPERTIES