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基于氧化膦的卤键二聚体中的协同结合驱动超分子寡聚化。

Cooperative Binding in a Phosphine Oxide-Based Halogen Bonded Dimer Drives Supramolecular Oligomerization.

机构信息

EaStChem and School of Chemistry, University of St Andrews , North Haugh, St Andrews KY16 9ST, United Kingdom.

出版信息

J Org Chem. 2017 Feb 17;82(4):1986-1995. doi: 10.1021/acs.joc.6b02822. Epub 2017 Feb 1.

Abstract

Triphenylphosphine oxide forms halogen-bonded (XB) complexes with pentafluoroiodobenzene and a 1,4-diaryl-5-iodotriazole. The stability of these complexes is assessed computationally and by P NMR spectroscopy in toluene-d solution, where both complexes are weakly associated. This knowledge is applied to the design and synthesis of two self-complementary phosphine oxide-iodotriazole hybrids that incorporate a phosphine oxide XB acceptor and a 1,4-diphenyl-5-iodotriazole XB donor within the same molecule. The self-complementary design of these modules facilitates their assembly in both toluene-d and, surprisingly, DCM-d into dimers, with significant stabilities, through the formation of halogen-bonded diads. The stability of these assemblies is a result of significant levels of cooperative binding that is present in both solvents. The connection of two of these hybrid units together, using a flexible spacer, facilitates the aggregation of these modules in DCM-d solution, through halogen bonding, forming oligomeric assemblies.

摘要

三苯基氧化膦与五氟碘苯和 1,4-二芳基-5-碘三唑形成卤素键(XB)配合物。通过计算和 P NMR 光谱在甲苯-d 溶液中评估这些配合物的稳定性,在甲苯-d 溶液中,这两种配合物都有较弱的相互作用。这一知识应用于设计和合成两种自互补的氧化膦-碘三唑杂化物,它们在同一分子中包含一个氧化膦 XB 受体和一个 1,4-二苯基-5-碘三唑 XB 供体。这些模块的自互补设计便于它们在甲苯-d 和令人惊讶的 DCM-d 中组装成双体,通过形成卤素键二聚体,具有显著的稳定性。这些组装体的稳定性是两种溶剂中存在的协同结合的结果。使用柔性间隔物将两个这种杂化物单元连接在一起,促进了这些模块在 DCM-d 溶液中的聚集,通过卤素键形成寡聚体组装。

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