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Curved graphene nanoribbons derived from tetrahydropyrene-based polyphenylenes $\less$i$\greater$via$\less$/i$\greater$ one-pot K-region oxidation and Scholl cyclization

Reference

Sebastian Obermann, Wenhao Zheng, Jason Melidonie, Steffen Böckmann, Silvio Osella, Nicolás Arisnabarreta, L. Andrés Guerrero-León, Felix Hennersdorf, David Beljonne, Jan J. Weigand, Mischa Bonn, Steven De Feyter, Michael Ryan Hansen, Hai I. Wang, Ji Ma, Xinliang Feng, "Curved graphene nanoribbons derived from tetrahydropyrene-based polyphenylenes $\less$i$\greater$via$\less$/i$\greater$ one-pot K-region oxidation and Scholl cyclization", In Chemical Science, Royal Society of Chemistry (RSC), vol. 14, no. 32, pp. 8607–8614, 2023. [doi]

Bibtex

@article{Obermann_2023,
doi = {10.1039/d3sc02824k},
url = {https://doi.org/10.1039%2Fd3sc02824k},
year = 2023,
publisher = {Royal Society of Chemistry ({RSC})},
volume = {14},
number = {32},
pages = {8607--8614},
author = {Sebastian Obermann and Wenhao Zheng and Jason Melidonie and Steffen Böckmann and Silvio Osella and Nicol{\'{a}}s Arisnabarreta and L. Andr{\'{e}}s Guerrero-Le{\'{o}}n and Felix Hennersdorf and David Beljonne and Jan J. Weigand and Mischa Bonn and Steven De Feyter and Michael Ryan Hansen and Hai I. Wang and Ji Ma and Xinliang Feng},
title = {Curved graphene nanoribbons derived from tetrahydropyrene-based polyphenylenes $\less$i$\greater$via$\less$/i$\greater$ one-pot K-region oxidation and Scholl cyclization},
journal = {Chemical Science}
}

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Organic / Polymer Path, Prof. Feng

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