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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Induction, control, and rationalization of supramolecular chirogenesis using metalloporphyrin tweezers: a structure-function correlation
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Induction, control, and rationalization of supramolecular chirogenesis using metalloporphyrin tweezers: a structure-function correlation

机译:使用金属卟啉镊子的超分子膀胱发生的诱导,控制和合理化:结构功能相关性

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Supramolecular chirogenesis is one of the most rudimentary topics in the interdisciplinary sciences and essentially deals with various natural processes and innovative modern technologies. A comprehensive and rigorous understanding of such phenomenon is necessary to have a clear insight into the fundamental mechanisms and the various controlling factors, which would eventually lead to a range of practical applications of chiral supramolecular science. Metalloporphyrin tweezers have been extensively employed for such chirogenic processes due to their exciting physicochemical and tunable spectral properties, large stabilities, easily available synthetic protocols, and excellent abilities to form molecular assemblies. During the last few decades, various metalloporphyrin tweezers have been developed and considerably utilized by several research groups for assigning the absolute configuration to a variety of chiral diamines, conjugates of primary and secondary amines, amino alcohols, secondary alcohols, alpha-chiral carboxylic acids, etc. Our group has been at the forefront in trying to establish the structure-property correlation in this important area of interdisciplinary research. A brief account of our systematic investigation for understanding the underpinning mechanism of chirality induction and control at the molecular level over the last few years is presented in this Perspective article. The comprehensive understanding of such mechanistic details will be helpful in understanding various natural processes and designing modern technologies for various chirogenic functions in the fields of molecular sensors, nanotechnology, and supramolecular chemistry.
机译:超分子chirogenesis是在跨学科的科学最基本的课题之一,并与各种自然过程和创新的现代技术本质上交易。这种现象的全面而严格的理解是需要有一个清晰的洞察基本机制和各种控制因素,最终将导致一系列的手性超分子科学的实际应用。金属卟啉镊子已被广泛地用于这样的手性源性过程由于其令人兴奋的物理化学和可变分光特性,大稳定性,容易获得的合成方案,和优异的能力,以形成分子组装。在过去的几十年中,各种金属卟啉镊子已经开发并通过几个研究小组分配的绝对构型的各种手性二胺,伯和仲胺,氨基醇,仲醇,α-手性羧酸的偶联物的显着的利用,等我们集团一直走在了前列,试图建立跨学科研究的这一重要领域的结构 - 性能关系。我们理解的手性诱导和控制的托底机制,在过去的几年中,分子水平系统研究的简要介绍,提出这一观点文章。这样的机械细节的全面的了解将是理解各种自然过程和设计中的分子传感器,纳米技术和超分子化学领域的各种手性源性功能现代技术的帮助。

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