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Self-healing Supramolecular Polymer Composites by Hydrogen Bonding Interactions between Hyperbranched Polymer and Graphene Oxide 被引量:8
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作者 Yi-Gang Luan Xiao-A Zhang +2 位作者 Sheng-Ling Jiang Jian-Huan Chen Ya-Fei Lyu 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2018年第5期584-591,共8页
A self-healing supramolecular polymer composite(HSP-GO) was designed and prepared via incorporation of modified graphene oxide to hyperbranched polymer by hydrogen-bonding interactions. The polymer matrix based on a... A self-healing supramolecular polymer composite(HSP-GO) was designed and prepared via incorporation of modified graphene oxide to hyperbranched polymer by hydrogen-bonding interactions. The polymer matrix based on amino-terminated hyperbranched polymer(HSP-NH_2) was synthesized by carboxylation, Curtius rearrangement, and amination of hydroxyl-terminated hyperbranched polyester(HP-OH), while the modified graphene oxide was prepared by transformation of hydroxyl to isocyanate and further to carbamate ester. Spectroscopic methods were utilized to characterize the obtained polymer composites. Stress-strain test was selected to carefully study the self-healing property of HSP-GO. It is found that a small amount of modified graphene oxide(up to 2 wt%) improves the glass transition temperature(T_g), tensile strength, Young's modulus, and self-healing efficiency of the polymer composites. After healed at room temperature for 10 min, the addition of modified graphene oxide improves the self-healing efficiency to 37% of its original tensile strength. The experiment result shows that the self-healing efficiency is related to the density of hydrogen bonding site and the molecular movement. 展开更多
关键词 self-healing supramolecular polymer graphene oxide hydrogen bonding
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《金属-有机框架》专辑序言──金属-有机框架:新型多功能材料 被引量:2
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作者 程鹏 《应用化学》 CSCD 北大核心 2017年第9期977-978,共2页
金属-有机框架是由金属离子与有机配体通过配位键形成的三维框架材料,是近几十年来配位化学领域中发展较快的新型多功能材料。自上世纪90年代以来,金属-有机框架的研究呈现空前的增长,目前已有大于20000例的金属-有机框架被报道。金属-... 金属-有机框架是由金属离子与有机配体通过配位键形成的三维框架材料,是近几十年来配位化学领域中发展较快的新型多功能材料。自上世纪90年代以来,金属-有机框架的研究呈现空前的增长,目前已有大于20000例的金属-有机框架被报道。金属-有机框架可变的金属中心及有机配体使其结构与功能具有多样性。金属中心的选择几乎覆盖了所有金属,包括主族元素、过渡元素和镧系金属。而配体的选择,除了传统的氮杂环和羧酸类配体外,还可以引入一些官能团对其进行修饰, 展开更多
关键词 多功能材料 有机配体 框架研究 配位键 羧酸类 配位化学 镧系 氮杂环 主族 荧光材料
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