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功能高分子材料教育部重点实验室 南开大学化学学院 天津 300071
E-mail: spclbh@nankai.edu.cn
纸质出版日期:2018-7,
收稿日期:2018-3-15,
修回日期:2018-5-31,
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何鑫, 王粉粉, 田东林, 杨志君, 李涛, 孙平川. 热可逆交联环氧树脂的动态结构与性能研究[J]. 高分子学报, 2018,0(7):949-958.
Xin He, Fen-fen Wang, Dong-lin Tian, Zhi-jun Yang, Tao Li, Ping-chuan Sun. Study on the Dynamic Structure and Properties of Thermo-reversible Crosslinked Epoxy[J]. Acta Polymerica Sinica, 2018,0(7):949-958.
何鑫, 王粉粉, 田东林, 杨志君, 李涛, 孙平川. 热可逆交联环氧树脂的动态结构与性能研究[J]. 高分子学报, 2018,0(7):949-958. DOI: 10.11777/j.issn1000-3304.2018.18078.
Xin He, Fen-fen Wang, Dong-lin Tian, Zhi-jun Yang, Tao Li, Ping-chuan Sun. Study on the Dynamic Structure and Properties of Thermo-reversible Crosslinked Epoxy[J]. Acta Polymerica Sinica, 2018,0(7):949-958. DOI: 10.11777/j.issn1000-3304.2018.18078.
通过双马来酰亚胺与侧链带有呋喃官能团线性环氧树脂间的Diels-Alder反应,制备了热可逆交联的环氧树脂(DAERs),通过热分析、固体核磁共振技术和力学性能测试详细研究了该热可逆交联聚合物中的热可逆转变过程、动态化学键演化以及交联度对力学性能的影响. 示差扫描量热法(DSC)和动态热机械分析(DMA)等热分析结果表明,可逆共价键的化学交联作用提高了材料的玻璃化转变温度,随着交联度的增大,热可逆共价键断裂及玻璃化转变协同作用导致材料软化温度显著提高,进而提高了材料的耐热性. 通过变温
13
C固体NMR实验原位监测DA/retro-DA反应过程,发现DAERs中通过DA反应形成的交联网络结构可以在高温解交联而生成呋喃与马来酰亚胺小分子化合物,而低温时呋喃与马来酰亚胺化合物又再次反应得到DA加成结构,进而从分子水平上为材料的热可逆交联特性提供了关键的实验证据. 而原样品和溶液法再加工样品的拉伸实验结果表明,可逆交联DA反应不但使样品具有较高的力学强度,而且使交联聚合物具有了再加工的能力.
The structure-property relationship of reversible crosslinked high performance polymer with self-healing and recyclable properties has attracted significant attention in the past decades. Herein
a thermally reversible crosslinked epoxy resin (DAERs) based on Diels-Alder covalent bonds was designed and prepared
where furan functional groups were incorporated into the side chains of linear epoxy resin and then cross-linked by maleimide. Different characterization techniques were used to investigate the structure-property relationship of DAERs.
In situ
variable-temperature
13
C solid-state NMR was used to follow the evolution of dynamic Diels-Alder bonds in non-soluble cross-linked networks of DAERs
providing clear evidence of the cycling process of the DA reaction
via
displaying the consumption
appearing and disappearing of free furan group resonances in the network at different temperatures. NMR results provided a molecular level understanding of their equilibrated structure
and the reversible reconstruction and disconnection of the cross-link networks. Thermal behavior of DAERs was measured by repeated DSC cycles to verify the reversible temperature dependence of the DA and RDA reaction. Repeated endothermic and exothermic transition of DAERs during successive thermal cycles were observed
indicating the presence of RDA and DA reactions
respectively. The DSC results clearly demonstrated the capability of DAERs as a thermal re-mendable and recyclable material. The results of both DSC and DMA experiments indicated that the DA cross-linkage enhanced the glass transition and DA/retro-DA transition temperatures
and the heat-resistance of the materials increased with increasing cross-link density. Especially
DMA is a powerful and sensitive tool to distinguish the overlapped glass transition and DA/RDA temperatures. Tensile experiments indicated that the mechanical property also increased with the increase in crosslink density
and the synthesized DAERs exhibited good comprehensive mechanical properties
including high stiffness
strength
and toughness
and had good solvent and heat resistance. These materials can be easily thermally recycled
and this makes the material eco-friendly
with great potential for industrial applications.
环氧树脂再加工可逆交联固体核磁共振
EpoxySelf-healingReversible crosslinkSolid-state NMR
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