Abstract
The synthesis of π-extended [12]cycloparaphenylene (CPP) derivatives from a kinked triangular macrocycle is presented. Depending on the reaction conditions for reductive aromatization, either a hexaphenylbenzene cyclohexamer or its C2-symmetric congener was obtained. Their structures were confirmed by NMR spectroscopy or X-ray crystallographic analysis. With the support of DFT calculations, a mechanistic explanation for the unexpected formation of the oval shaped bis(cyclohexadiene)-bridged C2-symmetric macrocycle is provided. The here employed congested hexaphenylbenzene mode of connectivity in conjunction with a non-strained precursor improves oxidative cyclodehydrogenation toward the formation of ultrashort carbon nanotubes (CNT)s. Thus, this strategy can pave the way for new conceptual approaches of a solution-based bottom-up synthesis of CNTs.
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CITATION STYLE
Golling, F. E., Osella, S., Quernheim, M., Wagner, M., Beljonne, D., & Müllen, K. (2015). π-extended [12]cycloparaphenylenes: From a hexaphenylbenzene cyclohexamer to its unexpected C2-symmetric congener. Chemical Science, 6(12), 7072–7078. https://doi.org/10.1039/c5sc02547h
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