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Host-guest systems based on crown ether, cryptand, and pseudocryptand hosts with paraquat, diquat, secondary ammonium, and monopyridinium salt guests.

机译:基于冠状醚,穴状和假穴状的宿主-来宾系统,具有百草枯,敌草快,仲铵和一吡啶鎓盐来宾。

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摘要

Supramolecular host-guest chemistry is a topic of great current interest. However, the further development of host-guest chemistry is still limited by the number of available host-guest recognition motifs. This makes it necessary and valuable to find new host-guest recognition motifs and apply known host-guest recognition motifs in the preparation of novel supramolecular systems.; By comparing the crystal structures of the host and its taco complex, we proved that folding is a necessary step during the formation of taco complexes. Based on the known bis(m-phenylene)-32-crown-10/paraquat recognition motif, the first solid-state supramolecular poly(taco complex) was prepared.; We demonstrate not only that bis(m-phenylene)-32-crown-10-based cryptands are powerful hosts for paraquat derivatives compared with the simple crown ether, but also that cooperative complexation can be obtained with the cryptand structure. It was shown that the significant improvement in complexation was the result of the combination of the preorganization of the cryptand hosts and the introduction of additional and optimized binding sites. Furthermore, it was demonstrated that improved complexation of bis(secondary ammonium) and bisparaquat salts could also be achieved by the formation of the pseudocryptand structure. We also prepared two dimers of inclusion cryptand/paraquat complexes driven by dipole-dipole and face-to-face pi-stacking interactions.; An interesting complex based on dibenzo-24-crown-10 and diquat was prepared. In its crystal structure the diquat guest lies in the concave cavity provided by two dibenzo-24-crown-8 hosts.; Monopyridinium-based [2]- and [3]-pseudorotaxanes were prepared based on the newly discovered bis(m-phenylene)-32-crown-10/monopyridinium salt and cryptand/monopyridinium salt recognition motifs.; Inspired by the formation of solid-state taco complexes between bis( m-phenylene)-32-crown-10 and paraquat derivatives, we designed and synthesized the first cylindrical bis(crown ether) host for paraquat derivatives and studied its complexation with paraquat.; We prepared three slow-exchange C3-symmetric inclusion complexes based on a newly discovered cryptand/trispyridinium recognition motif, in which 1,3,5-trispyridiniumbenzene salts act as guests.; Finally the application of several new and known recognition motifs in the preparation of a supramolecular poly[3]pseudrotaxane, and the first pseudorotaxane-type supramolecular star-shaped polymer, and the first supramolecular hyperbranched polymer was discussed.
机译:超分子主客体化学是当前非常感兴趣的主题。然而,客体-客体化学的进一步发展仍然受到可用客体-客体识别基序的数量的限制。这使得寻找新的宿主-客体识别基序并在制备新型超分子系统中应用已知的宿主-客体识别基序是必要且有价值的。通过比较宿主及其taco配合物的晶体结构,我们证明了折叠是taco配合物形成过程中的必要步骤。根据已知的双(间亚苯基)-32-crown-10 /百草枯识别基序,制备了第一种固态超分子聚(taco配合物)。我们不仅证明了基于双(间-亚苯基)-32-crown-10-的穴状配体与简单的冠醚相比是百草枯衍生物的强大宿主,而且还可以通过穴状配体结构获得协同络合。结果表明,复合体的显着改善是由穴状配体宿主的预组织与引入其他优化结合位点相结合的结果。此外,已证明通过形成伪隐链结构还可以改善双(仲铵)盐和双百草枯盐的络合。我们还准备了由偶极-偶极子和面对面的pi堆积相互作用驱动的包含隐窝/百草枯复合物的两个二聚体。制备了一种有趣的基于二苯并24-冠-10和敌草快的配合物。在其晶体结构中,敌草快客体位于由两个dibenzo-24-crown-8宿主提供的凹腔中。基于新发现的双(间亚苯基)-32-crown-10 /单吡啶鎓盐和穴状/单吡啶鎓盐识别基序,制备了基于单吡啶鎓的[2]-和[3]-伪轮烷。受双(间亚苯基)-32-crown-10与百草枯衍生物之间形成固态taco配合物的启发,我们设计并合成了第一批用于百草枯衍生物的圆柱形双(冠醚)主体,并研究了其与百草枯的络合作用。 ;我们基于新发现的穴状/三嘧啶鎓识别基序制备了三种慢交换C3对称包合物,其中1,3,5-三吡啶鎓苯盐充当客体。最后讨论了几种新的和已知的识别基序在制备超分子聚[3]假紫杉烷,第一种假轮烷型超分子星形聚合物和第一种超分子超支化聚合物中的应用。

著录项

  • 作者

    Huang, Feihe.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Chemistry Organic.; Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 392 p.
  • 总页数 392
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;高分子化学(高聚物);
  • 关键词

  • 入库时间 2022-08-17 11:42:55

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