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首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Structures of urea/thiourea 1,3-disubstituted thia[4]calixarenes and corresponding monofunctional receptors and their anion recognition properties
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Structures of urea/thiourea 1,3-disubstituted thia[4]calixarenes and corresponding monofunctional receptors and their anion recognition properties

机译:尿素/硫脲1,3-二取代噻[4]杯芳烃和相应的单官能受体的结构及其阴离子识别特性

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Two thiacalix[4]arenes in 1,3-alternate conformation functionalized by two (CH2)2NH(C=X)NHC6H4-NO2-p groups (X = S,O) as well as two related mono-functional receptors MeO(CH2)2NH(C=X)NHC6H4-NO2-p were prepared and characterized by X-ray crystal structures. The thioureido and ureido derivatives have E,Z and E,E conformations respectively both in monofunctional receptors and thiacalixarenes. The thiacalixarene attached thiourea groups are well separated from each other, but respective urea groups are much closer to each other and have mutual parallel orientation making the bisurea derivative a better preorganized receptor as compared to bisthiourea. Binding of Cl~-, F~-, H2PO_4~- and AcO~- anions in chloroform and DMSO was studied by spectrophotomet-ric and NMR titrations. In chloroform both bisurea and bisthiourea thiacalix[4]arenes bind anions 3-5 times stronger than corresponding monofunctional compounds in spite of better preorganization of the urea derivative. In DMSO simultaneous deprotonation of ureido NH groups of receptors and hydrogen bonding reactions are observed. Deprotonation by H2PO_4~- is accompanied by a strong association between liberated H3PO4 and H2PO_4~- (log K = 3.9). For hydrogen bonding associations the binding constants of H2PO_4~- and AcO~- with bisurea thiacalixarene are up to two orders of magnitude larger than those with corresponding monofunctional receptor, but with bisthiourea thiacalixarene the effect is less than two-fold. Thus in this solvent in contrast to chloroform the preorganization is an important factor.
机译:由两个(CH2)2NH(C = X)NHC6H4-NO2-p基团(X = S,O)和两个相关的单功能受体MeO(CH2)功能化的1,3-交替构型的两个thiacalix [4]芳烃制备)2 NH(C = X)NHC 6 H 4 -NO 2 -p,并通过X射线晶体结构表征。硫脲基和脲基衍生物分别在单官能受体和硫杂杯芳烃中均具有E,Z和E,E构象。硫杂杯形碳烯连接的硫脲基团彼此很好地分开,但是各个脲基团彼此更接近并且具有相互平行的取向,这使得比苏脲比双硫脲成为更好的预组织受体。通过分光光度法和NMR滴定法研究了Cl〜-,F〜-,H2PO_4-和AcO_-在氯仿和DMSO中的结合。在氯仿中,尽管尿素衍生物的预组织更好,但比苏拉和双硫脲硫杂杯[4]芳烃的结合力比相应的单官能化合物强3-5倍。在DMSO中,观察到受体的脲基NH基团同时去质子化和氢键反应。 H2PO_4〜-的去质子作用与释放的H3PO4和H2PO_4〜-之间的强烈关联相关(log K = 3.9)。对于氢键缔合,H 2 PO 4-和AcO-与Bisurea硫杂杯形芳烃的结合常数比具有相应单官能受体的结合常数大两个数量级,而与Bithiourea Thiacalixarene联用常数则小于两倍。因此,在这种溶剂中,与氯仿相反,预组织是重要的因素。

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