During the past decade, dimerization of two isocyanides has proven to be an efficient and useful tool for the construction of nitrogen-containing heterocycles [
12-
21]. In this context, the cycloaddition of
α-acidic isocyanides with another aryl isocyanides has drawn considerable attention (
Scheme 1) [
16-
21]. In 1999, Grigg and co-workers firstly disclosed the homo-cycloaddition of isocyanoacetate to produce imidazoles [
16]. Six years later, an elegant cross-cycloaddition of aryl isocyanides with
α-acidic isocyanides was achieved by the group of Yamamoto for catalytic synthesis of imidazoles (
Scheme 1a) [
17]. After that, Hong's [
18] and Bi's [
19] groups independently extended this reaction for preparation of 1, 4-diaryl- and 1, 4, 5-trisubstituted imidazoles (
Scheme 1a). Recently, we found a [4 + 2] rather than [3 + 2] cycloaddition with
α-substituted isocyanoacetamides and aryl isocyanides to access fused pyridones (
Scheme 1b) [
20]. Mechanistically, the above isocyanide-based [3 + 2] and [4 + 2] cycloadditions are all initiated by the nucleophilic attack of
α-carbanion to the other isocyano group. Thus, the new reactivity profiles of these two isocyanides are still needed to explore for the divergent heterocycle syntheses. In continuation of our studies on isonitrile chemistry [
22-
25], we herein report a copper-catalyzed chemoselective heterocycloaddition of two different isocyanides for the synthesis of benzopyrroloazepinones (
Scheme 1c). Unlike the previous isocyanide-based [3 + 2] and [4 + 2] reactions [
20], this domino transformation is triggered by the chemoselective attack of substituted tosylmethyl isocyanides (sTosMIC) to the C=C double bond of
o-cinnamoyl arylisocyanides. Notably, the azepinone ring is formed by an isocyanide insertion into the C–Cu bond of the in situ generated transient pyrrolocuprate intermediate.