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首页> 外文期刊>Macromolecules >Mechanically and Thermally Robust Ordered Nanoporous Monoliths Using Norbornene-Functional Block Polymers
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Mechanically and Thermally Robust Ordered Nanoporous Monoliths Using Norbornene-Functional Block Polymers

机译:机械和热稳健有序的纳米多孔整料使用降冰片烯功能嵌段聚合物

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摘要

A norbornene-functional styrene was synthesized and copolymerized with styrene, and monomer reactivity ratios were calculated in a controlled radical copolymerization. Polylactide-b-poly (norbornenylethylstyrene-s-styrene) (PLA-b-P(N-S)) block polymers were produced by a reversible addition—fragmentation chain transfer polymerization technique using a PLA-based macro chain transfer agent and fully characterized using conventional techniques. Blends composed of this block copolymer,dicyclopentadiene (DCPD), and a metathesis catalyst were waxy materials that formed ordered structures containing cylindrical PLA nanodomains in a composite DCPD/P(N-S) matrix. These composite materials were pressed in a channel die to align the cylindrical domains and were cured by a ring-opening metathesis mechanism at elevated temperatures. Removal of the PLA from the resulting monoliths by mild basic etching resulted in nanoporous monoliths with cylindrical channels. The nanoporous materials were characterized by small-angle X-ray scattering, scanning electron microscopy, and N_2adsorption experiments. The nanoporous monoliths were thermally stable up to about 130 °C and exhibited remarkable mechanical strength that was comparable to pure polyDCPD.
机译:合成降冰片烯官能的苯乙烯并与苯乙烯共聚,并在受控的自由基共聚中计算单体反应性比。聚乳酸-b-聚(降冰片烯基乙基苯乙烯-s-苯乙烯)(PLA-b-P(N-S))嵌段聚合物是通过可逆的加成-断裂链转移聚合技术使用PLA基大链转移剂生产的,并使用常规技术进行了充分表征。由这种嵌段共聚物,二环戊二烯(DCPD)和复分解催化剂组成的共混物是蜡状材料,在复合DCPD / P(N-S)基质中形成了包含圆柱形PLA纳米域的有序结构。将这些复合材料压入通道模头以对齐圆柱状区域,并在高温下通过开环复分解机制进行固化。通过温和的碱性蚀刻从所得的整料中除去PLA,得到具有圆柱形通道的纳米多孔整料。通过小角度X射线散射,扫描电子显微镜和N_2吸附实验对纳米多孔材料进行了表征。纳米多孔整料在高达约130°C的温度下具有热稳定性,并表现出与纯聚DCPD相当的出色机械强度。

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