Department of Chemistry , University of Southampton , Southampton , Hampshire SO17 1BJ , U.K.
Faculty of Dentistry , University of Al-Ameed , Karbala , P.O. Box No. 198, Iraq.
J Org Chem. 2019 Dec 6;84(23):15173-15183. doi: 10.1021/acs.joc.9b02174. Epub 2019 Nov 13.
The oxidative cyclization of 1,5-dienes by metal-oxo species is a powerful method for stereocontrolled synthesis of tetrahydrofuran diols (THF-diols), structural motifs present in many bioactive natural products. Oxidative cyclization of (2,6)-octa-2,6-diene catalyzed by OsO/NMO has been studied using density functional theory (DFT) calculations (M06-2X/aug-cc-pVDZ/Hay-Wadt VDZ (n+1) ECP), highlighting the remarkable effect of acid on the fate of the first intermediate, an Os(VI) dioxoglycolate. A strong acid promotes cyclization of the Os(VI) dioxoglycolate, or its NMO complex, through protonation of an oxo ligand to give more electrophilic species. By contrast, in the absence of acid, reoxidation may occur to afford the Os(VIII) trioxoglycolate, which is shown to favor conventional "second cycle" dihydroxylation reactivity rather than cyclization. The results of the calculations are consistent with experimental results for reactions of OsO/NMO with 1,5-dienes with acid (oxidative cyclization) and without acid (second cycle osmylation/dihydroxylation). Detailed evaluation of potential catalytic cycles supports oxidation of the cyclized Os(IV) THF-diolate intermediate to the corresponding Os(VI) species followed by slow hydrolysis and, finally, regeneration of OsO.
金属氧物种对 1,5-二烯的氧化环化是立体控制合成四氢呋喃二醇(THF-二醇)的有效方法,THF-二醇是许多生物活性天然产物中的结构基序。OsO/NMO 催化的(2,6)-辛-2,6-二烯的氧化环化已通过密度泛函理论(DFT)计算(M06-2X/aug-cc-pVDZ/Hay-Wadt VDZ(n+1)ECP)进行了研究,突出了酸对第一个中间体(Os(VI) 二氧代二甘醇酸)命运的显著影响。强酸通过对一个氧配体进行质子化,促进 Os(VI) 二氧代二甘醇酸或其 NMO 配合物的环化,从而生成更具亲电性的物质。相比之下,在没有酸的情况下,可能会发生再氧化,生成 Os(VIII) 三氧代二甘醇酸,它显示出有利于传统的“第二循环”二羟化反应性,而不是环化。计算结果与 OsO/NMO 与 1,5-二烯的反应的实验结果一致,这些反应有酸(氧化环化)和没有酸(第二循环高碘酸化/二羟化)。对潜在催化循环的详细评估支持将环化的 Os(IV) THF-二醇化物中间体氧化为相应的 Os(VI) 物种,然后缓慢水解,最后再生 OsO。