Solvent-directed intramolecular hydrofunctionalization of readily available o-alkynoylphenols 1 was successfully achieved under reagent-free conditions. The hydrofunctionalization of 1 occurred by nucleophilic attack on the phenolic oxygen followed by consecutive migration of the phenolic H atom to the alkyne center, eventually affording γ-benzopyranones 2. The phenol O–H group forms intramolecular H-bonds
在无试剂条件下成功实现了容易获得的邻炔基酚1的溶剂导向分子内氢官能化。1的氢官能化通过对酚氧的亲核攻击随后酚氢原子连续迁移到炔烃中心而发生,最终得到 γ-苯并吡喃酮2。酚 O-H 基团与羰基形成分子内 H 键,我们预测这些 H 键在极性溶剂存在下可以扭曲成它们最优选的构象。区域选择性 6 -endo-dig环化似乎在热力学上优于 5 -exo-dig循环化,由 DFT 计算支持。该策略之所以引人注目,是因为它无试剂、区域选择性、原子经济性高、原子、碳和反应质量效率高。
Sulfoxide-mediated approach to flavones through one-pot Knoevenagel condensation/oxa-Michael addition/sulfoxide elimination process of β-(o-hydroxyaryl)-ketosulfone with arylaldehydes
gram-scale synthesis of flavones is described by a one-pot straightforward sulfoxide-mediated Knoevenagel condensation/intermolecular oxa-Michael annulation/sulfoxide elimination process of β-(o-hydroxyaryl)-ketosulfones (dual nucleophile) and arylaldehydes (dual electrophile). The expeditious synthetic route sets up flavones, including the bond formation of one CO and one double CC bonds via a formal (5 + 1)
在本文中,通过一锅法直接亚砜介导的 Knoevenagel 缩合/分子间 oxa-Michael 环化/β-(o-羟基芳基)-酮砜(双亲核试剂)和芳基醛(双亲电试剂)。快速合成路线建立了黄酮,包括通过形式 (5 + 1) 环加成形成一个 C O 键和一个双 C C 键。此外,其中,化合物70 亿可能是进一步开发药物以造福抗衰老领域的绝佳起点。
Synthesis of Fluorescent 5-(2-Hydroxyaryl)-7-substituted-2,3-dihydro-1<i>H</i>-1, 4-diazepines and Related Fluorescent 1,5-Benzodiazepines
作者:Philip L. Southwick、Chih Hsin Chou、Thomas E. Fink、Jack R. Kirchner
DOI:10.1055/s-1985-31206
日期:——
Annigeri,A.C.; Siddappa,S., Indian Journal of Chemistry, 1964, vol. 2, p. 413 - 415
作者:Annigeri,A.C.、Siddappa,S.
DOI:——
日期:——
SOUTHWICK, PH. L.;CHOU, CHIH, HSIN;FINK, T. E.;KIRCHNER, J. R., SYNTHESIS, BRD, 1985, N 3, 339-341
作者:SOUTHWICK, PH. L.、CHOU, CHIH, HSIN、FINK, T. E.、KIRCHNER, J. R.