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Melamine-Bridged Bis(porphyrin-ZnII) Receptors: Molecular Recognition Properties

机译:三聚氰胺桥联的双(卟啉-ZnII)受体:分子识别特性。

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Dimeric metalloporphyrin hosts with tweezer-like structures have been synthesized by reacting the cyanuric chloride scaffold, CC, with 5-(4-aminophenyl)-10,15,20-triphenylporphyrin, P, and 5-(4- aminophenyl)-10,15,20-trimesitylporphyrin, M, to yield the homoconjugates free bases PP and MM and the heterodyad PM. Metalation with Zn(II), gives three structurally related ditopic receptors P(Zn)P(Zn), P(Zn)M(Zn), and M(Zn)M(Zn) with differential steric hindrance and conformational rigidity. The solution structure and supramolecular properties of these porphyrin dimers have been investigated as isolated molecules and in the presence of aliphatic R,ω-diamines of general formula H2N-(CH2)n-NH2 (n=4-8) by spectroscopic and theoretical studies includingmultidimensionalNMR, UV-vis, molecular modeling, and computational NMRmethods. Binding constants in the range 4.2 106 to 3.4 107M-1 are observed in dichloromethane at 298K, with a 3 orders ofmagnitude increase as compared to monodentate nBuNH2, thus indicating the occurrence of a host-guest ditopic interaction. Linear correlation graphs are obtained by plotting the Soret band shift (, cm-1) of the complex as a function of the diamine chain length. Combined NMRevidence and OPLS 2005 Force Field conformational analysis point to amutual adaption of both the binding partners in the host-guest complex,whose geometry is mainly dictated by the steric impact of the bulky substituents at the porphyrin periphery.
机译:通过将氰尿酰氯支架CC与5-(4-氨基苯基)-10,15,20-三苯基卟啉P和5-(4-氨基苯基)-10反应合成了具有镊子状结构的二聚金属卟啉主体15,20-三甲叉基卟啉,M,得到均轭的游离碱PP和MM以及杂二聚体PM。用Zn(II)进行金属化,可得到三个结构相关的位错受体P(Zn)P(Zn),P(Zn)M(Zn)和M(Zn)M(Zn),它们具有不同的位阻和构象刚度。通过光谱学和理论研究,研究了这些卟啉二聚体的溶液结构和超分子性质,它们是分离的分子,并且在通式为H2N-(CH2)n-NH2(n = 4-8)的脂肪族R,ω-二胺存在下包括多维NMR,UV-vis,分子建模和NMR计算方法。在298K的二氯甲烷中观察到结合常数在4.2 106至3.4 107M-1范围内,与单齿nBuNH2相比,结合常数增加了3个数量级,因此表明发生了宿主-客体对位相互作用。线性相关图是通过将配合物的Soret带位移(,cm-1)绘制为二胺链长的函数获得的。 NMRevidence和OPLS 2005 Force Field构象分析相结合,表明宿主-客体复合物中两个结合配偶体的相互适应性,其几何形状主要由卟啉外围大体积取代基的空间影响所决定。

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