立体中心
手性(物理)
螯合作用
烷基
化学
芳基
硼
吡啶
脱质子化
亲核细胞
电泳剂
立体化学
对映选择合成
药物化学
有机化学
催化作用
离子
夸克
物理
量子力学
手征对称破缺
Nambu–Jona Lasinio模型
作者
Yannick Stöckl,Ethan John Tait,Werner Frey,Sascha Wegner,Birgit Claasen,Anna Zens,Sabine Laschat
标识
DOI:10.1002/chem.202301324
摘要
Abstract Molecules stereogenic only at tetrahedral boron atoms show great promise for applications, for example as chiroptical materials, but are scarcely investigated due to their synthetic challenge. Hence, this study reports a two‐step synthesis of enantioenriched boron C , N ‐chelates. First, the diastereoselective complexation of alkyl/aryl borinates with chiral aminoalcohols furnished boron stereogenic heterocycles in up to 86 % yield and d.r. >98 : 2. Treatment of these O,N ‐complexes with chelate nucleophiles was surmised to transfer the stereoinformation via the ate‐complex into the C , N ‐products. This chirality transfer succeeded by substitution of the O,N ‐chelates with lithiated phenyl pyridine to give boron stereogenic C , N ‐chelates in up to 84 % yield and e.r. up to 97 : 3. The chiral aminoalcohol ligands could be recovered after isolation of the C,N ‐chelates. The chirality transfer tolerated alkyl, alkynyl and (hetero‐)aryl moieties at boron and could be further extended by post‐modification: transformations such as catalytic hydrogenations or sequential deprotonation/electrophilic trapping were feasible while maintaining the stereochemical integrity of the C,N ‐chelates. Structural aspects of the boron chelates were studied by variable temperature NMR and X‐ray diffraction.
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