Abstract

The stability of all fullerenes (closed carbon cages composed of pentagons and hexagons) can be explained by a simple empirical rule that forbids direct pentagon pentagon junctions (the isolated pentagon rule). Among thousands of possible fullerene structures, only one was predicted to violate this rule, namely, C2v-symmetric (#11188)C72. In this work, we present the synthesis and isolation of this elusive fullerene cage for the first time. The C2v-C72 cage was captured by in situ chlorination to form C72Cl4, whose structure was unambiguously determined by single-crystal X-ray analysis. The chlorination pattern and resulting stability of C72Cl4 are discussed.

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