Denmark Scott E, Collins William R, Cullen Matthew D
Roger Adams Laboratory, Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.
J Am Chem Soc. 2009 Mar 18;131(10):3490-2. doi: 10.1021/ja900187y.
Sulfenium and selenenium ions undergo a stereospecific transfer from the corresponding three-membered ring species ("-iranium ions") to unactivated alkenes with varying facility. The thiiranium and seleniranium hexafluoroantimonates could be generated by treatment of the corresponding chloro sulfides or selenides with silver hexafluoroantimonate, followed by removal of the silver chloride by filtration. Clean (1)H, (13)C, and (77)Se NMR spectra could be recorded for these species. Treatment of the S-phenylthiiranium ion with an alkene leads to a slow transfer of the sulfenium group at 0 degrees C. However, the S-methylthiiranium ion did not transfer the sulfenium group, even at room temperature. On the other hand, both the Se-phenyl- and Se-butylseleniranium ions transferred the selenenium moiety instantaneously at -70 degrees C. By measuring the equilibrium position for these transfers from both directions, the relative stability of the 1-phenylseleniranium ions could be established: cis-tetramethylene < trans-2,3-dipropyl approximately trans-2,3-diisopropyl < cis-hexamethylene.
锍离子和硒离子会以不同的难易程度从相应的三元环物种(“-铱离子”)立体定向转移至未活化的烯烃上。硫杂环丙烷和硒杂环丙烷六氟锑酸盐可通过用六氟锑酸银处理相应的氯硫化物或氯硒化物,然后通过过滤除去氯化银来制备。可以记录这些物种的清晰的氢-1、碳-13和硒-77核磁共振谱。在0℃下,用烯烃处理S-苯基硫杂环丙烷离子会导致锍基团缓慢转移。然而,即使在室温下,S-甲基硫杂环丙烷离子也不会转移锍基团。另一方面,Se-苯基和Se-丁基硒杂环丙烷离子在-70℃下都会瞬间转移硒部分。通过测量这些转移在两个方向上的平衡位置,可以确定1-苯基硒杂环丙烷离子的相对稳定性:顺式-四亚甲基<反式-2,3-二丙基≈反式-2,3-二异丙基<顺式-六亚甲基。