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High Precision Assembly Line Synthesis for Molecules with Tailored Shapes

机译:定制形状分子的高精度装配线综合

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摘要

Molecular assembly lines, where molecules undergo iterative processes involving chain elongation and functional group manipulation are hallmarks of many processes found in Nature. We have sought to emulate Nature in the development of our own molecular assembly line through iterative homologations of boronic esters. Here we report a reagent (α-lithioethyl triispopropylbenzoate) which inserts into carbon-boron bonds with exceptionally high fidelity and stereocontrol. Through repeated iteration we have converted a simple boronic ester into a complex molecule (a carbon chain with ten contiguous methyl groups) with remarkably high precision over its length, its stereochemistry and therefore its shape. Different stereoisomers were targeted and it was found that they adopted different shapes (helical/linear) according to their stereochemistry. This work should now enable scientists to rationally design and create molecules with predictable shape, which could have an impact in all areas of molecular sciences where bespoke molecules are required.
机译:分子组装线中的分子经历了涉及链延长和官能团操纵的迭代过程,这是《自然》杂志中许多过程的标志。我们试图通过硼酸酯的迭代同源性在我们自己的分子组装生产线的开发中模仿自然。在这里我们报告了一种试剂(α-硫代乙基三异丙基苯甲酸酯),它以极高的保真度和立体控制插入到碳-硼键中。通过反复迭代,我们已将简单的硼酸酯转化为复杂的分子(具有10个连续甲基的碳链),在其长度,立体化学以及形状方面均具有极高的精度。针对不同的立体异构体,发现根据其立体化学,它们采用不同的形状(螺旋/线性)。现在,这项工作应使科学家能够合理地设计和创建可预测形状的分子,这可能会在需要定制分子的分子科学的所有领域产生影响。

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