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Electronic characterization of silicon intercalated chevron graphene nanoribbons on Au(111)
Deniz, O., Sánchez-Sánchez, C., Jaafar, R., Kharche, N., Liang, L., Meunier, V., … Ruffieux, P. (2018). Electronic characterization of silicon intercalated chevron graphene nanoribbons on Au(111). Chemical Communications, 54(13), 1619-1622. https://doi.org/10.1039/C7CC08353J
On-surface cyclization of <i>ortho</i>-Dihalotetracenes to four- and six-membered rings
Sánchez-Sánchez, C., Nicolaï, A., Rossel, F., Cai, J., Liu, J., Feng, X., … Meunier, V. (2017). On-surface cyclization of ortho-Dihalotetracenes to four- and six-membered rings. Journal of the American Chemical Society, 139(48), 17617-17623. https://doi.org/10.1021/jacs.7b10026
On-surface synthesis of BN-substituted heteroaromatic networks
Sánchez-Sánchez, C., Brüller, S., Sachdev, H., Müllen, K., Krieg, M., Bettinger, H. F., … Ruffieux, P. (2015). On-surface synthesis of BN-substituted heteroaromatic networks. ACS Nano, 9(9), 9228-9235. https://doi.org/10.1021/acsnano.5b03895
On-surface synthesis of graphene nanoribbons with zigzag edge topology
Ruffieux, P., Wang, S., Yang, B., Sánchez-Sánchez, C., Liu, J., Dienel, T., … Fasel, R. (2016). On-surface synthesis of graphene nanoribbons with zigzag edge topology. Nature, 531(7595), 489-492. https://doi.org/10.1038/nature17151
On‐surface synthesis and characterization of acene‐based nanoribbons incorporating four‐membered rings
Sánchez‐Sánchez, C., Dienel, T., Nicolaï, A., Kharche, N., Liang, L., Daniels, C., … Fasel, R. (2019). On‐surface synthesis and characterization of acene‐based nanoribbons incorporating four‐membered rings. Chemistry: A European Journal, 25(52), 12074-12082. https://doi.org/10.1002/chem.201901410
Purely armchair or partially chiral: noncontact atomic force microscopy characterization of dibromo-bianthryl-based graphene nanoribbons grown on Cu(111)
Sánchez-Sánchez, C., Dienel, T., Deniz, O., Ruffieux, P., Berger, R., Feng, X., … Fasel, R. (2016). Purely armchair or partially chiral: noncontact atomic force microscopy characterization of dibromo-bianthryl-based graphene nanoribbons grown on Cu(111). ACS Nano, 10(8), 8006-8011. https://doi.org/10.1021/acsnano.6b04025
Revealing the electronic structure of silicon intercalated armchair graphene nanoribbons by scanning tunneling spectroscopy
Deniz, O., Sánchez-Sánchez, C., Dumslaff, T., Feng, X., Narita, A., Müllen, K., … Ruffieux, P. (2017). Revealing the electronic structure of silicon intercalated armchair graphene nanoribbons by scanning tunneling spectroscopy. Nano Letters, 17(4), 2197-2203. https://doi.org/10.1021/acs.nanolett.6b04727
Toward cove-edged low band gap graphene nanoribbons
Liu, J., Li, B. W., Tan, Y. Z., Giannakopoulos, A., Sanchez-Sanchez, C., Beljonne, D., … Müllen, K. (2015). Toward cove-edged low band gap graphene nanoribbons. Journal of the American Chemical Society, 137(18), 6097-6103. https://doi.org/10.1021/jacs.5b03017