首页> 外文期刊>Macromolecules >Lewis Pair Polymerization of Renewable Indenone to Erythro-Ditactic High-T-g Polymers with an Upcycling Avenue
【24h】

Lewis Pair Polymerization of Renewable Indenone to Erythro-Ditactic High-T-g Polymers with an Upcycling Avenue

机译:Lewis对可再生IndenOne的聚合与升级大道的红细胞 - Ditic高T-G聚合物

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Preparation and storage of biorenewable, monomeric indenone, much less the polymerization to a well-defined, high-molecular-weight polymer, is challenging because of anti-aromaticity-driven radical autopolymerization. Herein, we report the successful preparation and subsequent Lewis pair polymerization (LPP) of indenone without autopolymerization side reactions using Lewis pairs consisting of sterically encumbered Lewis acid (LA) catalysts, such as B(C6F5)(3) and bis(2,6-tert-butyl-4-methylphenoxy)methylaluminum and Lewis base initiators such as silyl ketene acetal and N-heterocyclic olefin nucleophiles. Thus, for the first time, the LPP enabled the synthesis of polyindenone (Pin) with high number-average molecular weight (M-n = 1.72 x 10(5) g mol(-1)) and low dispersity = 1.13). Observed correlations between the steric bulk of the LA catalyst and diastereoselectivity (57-75%) created the opportunity to model and investigate the relationships between beta-substituted monomer motifs, catalyst steric accessibility, and the propagation stereodefining step for ensuing ditactic assignments. Through the increased erythro-diastereoselectivity, semicrystalline materials were produced with remarkably high glass-transition temperatures (T-g = 307 degrees C), high thermal stability (T-d,T-5% = 356 degrees C), and competitive transmittance (T %) and haziness values (T % = 85-88%, haze = 11%). Controlled pyrolysis of Pin upconverted it into versatile graphite oxide with 54% conversion, offering an upcycling avenue for Pin at the end of its life.
机译:生物可生产的制备和储存,单体茚环酮,较少的聚合为良好定义的高分子量聚合物,是由于抗芳香性驱动的自由基和聚合而具有挑战性。在此,我们报告了在没有自然的路易斯酸(La)催化剂,例如B(C6F5)(3)和BIS(2,6 - 丁基-4-甲基苯氧氧基)甲基铝和Lewis碱引发剂,如甲硅烷基酮缩醛和正杂环烯烃亲核试剂。因此,首次,LPP使得具有高数均分子量(M-N = 1.72×10(5)Gmol(-1))和低分散率= 1.13)的聚吲哚酮(销)的合成。观察到La催化剂和非对映选择性(57-75%)之间的静态大部分之间的相关性产生了模拟的机会,并研究了β取代的单体基序,催化剂空间可访问性和用于随后的传播立体划点步骤之间的关系。通过增加的红细胞 - 非对映选择性,通过显着高的玻璃化转变温度(Tg = 307℃),高热稳定性(Td,T-5%= 356℃),以及竞争透射率(T%)和竞争透射率(T%)而产生半结晶材料。 Haziness值(T%= 85-88%,Haze = 11%)。控制销的控制热解压缩成具有54%转换的通用石墨氧化物,在其寿命结束时提供销钉的升级大道。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号