期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
基于动态亚胺键的生物基自修复可回收聚氨酯的制备及性能 被引量:1
1
作者 潘政 赵琦 +3 位作者 薛逸娇 薄采颖 张猛 周永红 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2022年第12期11-18,共8页
文中采用糠胺为起始原料,合成了一种生物基呋喃二胺,与香草醛发生曼尼希反应,得到含有动态亚胺键的席夫碱,将其作为扩链剂与聚氨酯预聚体混合后,最终获得了一种兼具自修复和可回收性的聚氨酯弹性体。通过分子设计,调节软硬段比例来控制... 文中采用糠胺为起始原料,合成了一种生物基呋喃二胺,与香草醛发生曼尼希反应,得到含有动态亚胺键的席夫碱,将其作为扩链剂与聚氨酯预聚体混合后,最终获得了一种兼具自修复和可回收性的聚氨酯弹性体。通过分子设计,调节软硬段比例来控制聚氨酯的力学性能和自修复性能。通过核磁和红外证明了席夫碱的形成,差示扫描量热法、偏光共振显微镜和万能拉力试验机系统研究了可逆亚胺键的引入对弹性体自修复和可回收性能的影响。当硬段、软段和扩链剂摩尔比为3:1:2时,弹性体在80℃加热2 h,自修复效率可达97.5%。同时,动态亚胺键的存在使得材料在室温条件即可实现再次回收。结果表明,上述聚氨酯弹性体具有优异的自修复及可回收性能,生物基席夫碱在绿色复合材料的修复再利用方面有巨大的应用潜力。 展开更多
关键词 自修复 可回收 聚氨酯 亚胺键 生物基
下载PDF
Fire-retardant, anti-dripping, biodegradable and biobased polyurethane elastomers enabled by hydrogen-bonding with cellulose nanocrystals
2
作者 yijiao xue Tianchen Zhang +7 位作者 Hong Peng Zhewen Ma Meng Zhang Mark Lynch Toan Dinh Zhezhe Zhou Yonghong Zhou Pingan Song 《Nano Research》 SCIE EI CSCD 2024年第3期2186-2194,共9页
Thermoplastic polyurethane(PU)elastomers have attracted significant attention because of their many important industrial applications.However,the creation of fire-retardant and anti-dripping PU elastomers has remained... Thermoplastic polyurethane(PU)elastomers have attracted significant attention because of their many important industrial applications.However,the creation of fire-retardant and anti-dripping PU elastomers has remained a grant challenge due to the lack of crosslinking and weak interchain interactions.Herein,we report a mechanically robust,biodegradable,fire-retardant,and anti-dripping biobased PU elastomer with excellent biodegradability using an abietic acid-based compound as hard segments and polycaprolactone diol(PCL)as soft segments,followed by physically crosslinking with cellulose nanocrystals(CNC)through dynamic hydrogen-bonding.The resultant elastomer shows the balanced mechanical and fire-retardant properties,e.g.,a tensile strength and break strain of 9.1 MPa and 560%,a self-extinguishing ability(V-0 rating in UL-94 testing),and an anti-dripping behavior.Moreover,the as-developed PU can be completely degraded in 1.0 wt.%lipase solution at 37℃ in 60 days,arising from the catalytic and wicking effect of CNC on PU chains.This work provides an innovative and versatile strategy for constructing robust,fire-retardant,anti-dripping,and biodegradable PU elastomers,which hold great promise for practical applications in electronic and automobile sectors. 展开更多
关键词 polyurethane elastomers cellulose nanocrystals fire retardancy anti-dripping BIODEGRADATION
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部