Mowdawalla Cyrus, Ahmed Faiz, Li Tian, Pham Kiet, Dave Loma, Kim Grace, Hyatt I F Dempsey
Department of Chemistry and Biochemistry, Adelphi University, 1 South Ave., Garden City, NY, 11530, USA.
Beilstein J Org Chem. 2018 May 14;14:1039-1045. doi: 10.3762/bjoc.14.91. eCollection 2018.
The reactivity of benzyl hypervalent iodine intermediates was explored in congruence with the reductive iodonio-Claisen rearrangement (RICR) to show that there may be an underlying mechanism which expands the reasoning behind the previously known C-C bond-forming reaction. By rationalizing the hypervalent iodine's metal-like properties it was concluded that a transmetallation mechanism could be occurring with metalloid groups such as silicon and boron. Hypervalent iodine reagents such as Zefirov's reagent, cyclic iodonium reagents, iodosobenzene/BF, and PhI(OAc)/BF or triflate-based activators were tested. A desirable facet of the reported reaction is that iodine(I) is incorporated into the product thus providing greater atom economy and a valuable functional group handle for further transformations. The altering of the RICR's -selectivity to form -selective products with benzyl hypervalent iodine intermediates suggests a mechanism that involves hypervalent iodine-guided electrophilic substitution (HIGES).
研究了苄基高价碘中间体的反应活性,并与还原碘鎓-克莱森重排(RICR)相结合,结果表明可能存在一种潜在机制,这一机制拓展了此前已知的碳-碳键形成反应背后的推理。通过对高价碘类似金属性质的合理化分析,得出可能与硅和硼等类金属基团发生金属转移机制的结论。测试了如泽菲罗夫试剂、环状碘鎓试剂、亚碘酰苯/BF、PhI(OAc)/BF或基于三氟甲磺酸盐的活化剂等高价碘试剂。该反应一个理想的方面是碘(I)被并入产物中,从而提供了更高的原子经济性以及用于进一步转化的有价值的官能团处理方式。用苄基高价碘中间体改变RICR的选择性以形成选择性产物,这表明存在一种涉及高价碘引导的亲电取代(HIGES)的机制。