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Macrocyclization Reactions: The Importance of Conformational, Configurational, and Template-Induced Preorganization

机译:大环化反应:构象,构型和模板诱导的预组织的重要性

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摘要

The success of a given macrocyclization reaction involves a very delicate balance of many different factors. First, a proper understanding of the basic thermodynamic and kinetic concepts underlying these processes is essential in defining the strategies to obtain the targeted cyclic structures and the experimental elements to be optimized. essential element for achieving high yields in a macrocyclization process is the appropriate selection of the disconnection site. This defines the reaction used for the key step, which will clearly affect the overall process, but also delineates the nature and structure of the immediate linear precursor. The presence of structural elements, including configurational elements, able to induce a favorable folding of this linear precursor in such a way that both reactive ends approach with the proper orientation provides significant enhancements in macrocyclizations. The use of templates of very different natures is a versatile strategy to overcome the limitations of the other macrocyclization strategies. The use of templates has allowed the preparation of a variety of macrocyclic structures in better yields and usually in shorter reaction times, and often allows easier purification protocols.
机译:给定的大环化反应的成功涉及许多不同因素的非常微妙的平衡。首先,对这些过程背后的基本热力学和动力学概念的正确理解对于定义获得目标循环结构和要优化的实验元素的策略至关重要。在大环化过程中获得高产量的基本要素是适当选择断开位点。这定义了关键步骤所用的反应,这将明显影响整个过程,但也描述了直接线性前体的性质和结构。结构元素(包括构型元素)的存在能够以这种方式诱导两个线性末端的顺向折叠,以使两个反应性末端均以适当的取向接近,从而大大增强了环化反应。使用性质非常不同的模板是一种通用的策略,可以克服其他宏环化策略的局限性。模板的使用允许以更高的收率且通常以更短的反应时间来制备各种大环结构,并且通常允许更容易的纯化方案。

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