Jacob Steven D, Brooks Joshua L, Frontier Alison J
Department of Chemistry, University of Rochester , Rochester, New York 14627, United States.
J Org Chem. 2014 Nov 7;79(21):10296-302. doi: 10.1021/jo501914w. Epub 2014 Oct 17.
The 1,6-conjugate addition of nucleophiles to dienyl diketones produces either cyclopentenone or 2H-pyran products with high selectivity through either Nazarov (4π) or 6π electrocyclization, respectively. The outcome of the reaction is dependent upon the nature of the nucleophile used. Nucleophiles that are anionic or easily deprotonated exclusively produce cyclopentenones via Nazarov cyclization, whereas the neutral nucleophile DABCO promotes 6π cyclization to afford 2H-pyrans. Experimental evidence is presented for both retro-4π and -6π electrocyclization in these systems, lending support to the bifurcated mechanistic hypothesis proposed for these cyclizations.
亲核试剂与二烯基二酮发生的1,6-共轭加成反应,分别通过纳扎罗夫(4π)或6π电环化反应,以高选择性生成环戊烯酮或2H-吡喃产物。反应结果取决于所使用亲核试剂的性质。阴离子型或易于去质子化的亲核试剂仅通过纳扎罗夫环化反应生成环戊烯酮,而中性亲核试剂1,4-二氮杂双环[2.2.2]辛烷(DABCO)则促进6π环化反应以生成2H-吡喃。本文给出了这些体系中4π和6π逆电环化反应的实验证据,为这些环化反应所提出的分叉机理假说提供了支持。