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Molecular Assemblies of Porphyrins and Macrocyclic Receptors: Recent Developments in Their Synthesis and Applications

机译:卟啉和大环受体的分子组装:它们的合成和应用的最新进展。

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摘要

Metalloporphyrins which form the core of many bioenzymes and natural light harvesting or electron transport systems, exhibit a variety of selective functional properties depending on the state and surroundings with which they exist in biological systems. The specificity and ease with which they function in each of their bio-functions appear to be largely governed by the nature and disposition of the protein globule around the porphyrin reaction center. Synthetic porphyrin frameworks confined within or around a pre-organized molecular entity like the protein network in natural systems have attracted considerable attraction, especially in the field of biomimetic reactions. At the same time a large number of macrocyclic oligomers such as calixarenes, resorcinarenes, spherands, cyclodextrins and crown ethers have been investigated in detail as efficient molecular receptors. These molecular receptors are synthetic host molecules with enclosed interiors, which are designed three dimensionally to ensure strong and precise molecular encapsulation/recognition. Due to their complex structures, enclosed guest molecules reside in an environment isolated from the outside and as a consequence, physical properties and chemical reactions specific to that environment in these guest species can be identified. The facile incorporation of such molecular receptors into the highly photoactive and catalytically efficient porphyrin framework allows for convenient design of useful molecular systems with unique structural and functional properties. Such systems have provided over the years attractive model systems for the study of various biological and chemical processes, and the design of new materials and molecular devices. This review focuses on the recent developments in the synthesis of porphyrin assemblies associated with cyclodextrins, calixarenes and resorcinarenes and their potential applications in the fields of molecular encapsulation/recognition, and chemical catalysis.
机译:形成许多生物酶和自然光收集或电子传输系统核心的金属卟啉,根据它们在生物系统中所处的状态和周围环境,表现出多种选择性功能特性。它们在每种生物功能中发挥功能的特异性和难易程度似乎主要受卟啉反应中心周围蛋白质球的性质和位置的控制。限于自然系统中蛋白质网络之类的预组织分子实体之内或周围的合成卟啉骨架吸引了相当大的吸引力,特别是在仿生反应领域。同时,已经详细研究了大量大环低聚物,例如杯芳烃,间苯二芳烃,球体,环糊精和冠醚作为有效的分子受体。这些分子受体是具有封闭内部结构的合成主体分子,该结构在三维上进行了设计,以确保强大而精确的分子封装/识别。由于其复杂的结构,封闭的客体分子位于与外界隔离的环境中,因此,可以识别这些客体物种中特定于该环境的物理特性和化学反应。容易将此类分子受体掺入高度光敏和催化高效的卟啉骨架中,可以方便地设计具有独特结构和功能特性的有用分子系统。多年来,此类系统为各种生物和化学过程的研究以及新材料和分子装置的设计提供了有吸引力的模型系统。这篇综述集中在与环糊精,杯芳烃和间苯二芳烃有关的卟啉组装体的合成及其在分子包封/识别和化学催化领域的潜在应用方面的最新进展。

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