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Borylative Heterocyclization without Air-Free Techniques

机译:没有无空气技术的促进杂环

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In contrast to previously reported borylative heterocyclization methods, a reaction here proceeds without air-free techniques to access synthetically useful borylated thiophenes, benzothiophenes, and isocoumarins. A comparison of stability/decomposition rates in air of several catecholboronic ester (Bcat) compounds derived from different heterocycle cores showed a strong dependence on the heterocycle structure. Lessons learned from this comparison were then harnessed for the development of borylative heterocyclization reactions under ambient-atmosphere conditions and with wet solvent. In contrast to literature reports suggesting general moisture sensitivity, a subset of Bcat products resulting from this technique were chromatography-stable and directly isolable, obviating the requirement for an extra synthetic transformation into more stable boron species, such as pinacolboronic esters (Bpin), for isolation. The isolated Bcat products were amenable to various downstream functionalization reactions, including reactions that were not accessible with their better-known Bpin counterparts, showing the complementarity of Bcat reaction partners and expanding their known chemistry. These results suggest the value of conceptual revisitation of substitution and solvent influence on stability and isolability of organo-Bcat compound classes and lay the groundwork for development of additional practical borylative methods in air.
机译:与之前报道的borylative heterocyclization方法中,反应在这里没有无空气的技术转移到访问合成有用borylated噻吩,苯并噻吩,和异香豆素。的稳定性/分解速率在几个catecholboronic酯(BCAT)从不同的杂环核衍生的化合物的空气的比较显示在杂环上结构的很强的依赖性。然后,从该比较吸取的教训套着用于borylative heterocyclization反应的环境气氛条件下,并用湿溶剂的发展。在对比文献报道表明一般湿度敏感性,从这种技术得到的BCAT的产品的一个子集是色谱 - 稳定和直接可分离,消除了对额外的合成转化的要求成更稳定的硼类,如pinacolboronic酯(BPIN),用于隔离。将分离的BCAT产物适合于各种下游官能化反应,包括那些不与它们更好知BPIN同行访问的反应,呈现出BCAT反应伙伴的互补性和扩大它们的已知的化学反应。这些结果表明在有机BCAT化合物类的稳定性和isolability替代和溶剂的影响的概念再访的值,并为在空气中附加实用borylative方法发展的基础。

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