Articles dans des revues avec comité de lecture (223)

  1. 70. Roche, G. H., Wantz, G., Dautel, O., Thuau, D., Valvin, P., Clevers, S., Tjoutis, T., Chambon, S., Flot, D., Geerts, Y., & Moreau, J. J. (2017). π-Conjugated Organosilica Semiconductors: Toward Robust Organic Electronics. Advanced Electronic Materials, 3(9), 1700218. doi:10.1002/aelm.201700218
  2. 71. Tsutsui, Y., Schweicher, G., Chattopadhyay, B., Sakurai, T., Arlin, J.-B., Ruzié, C., Aliev, A., Ciesielski, A., Colella, S., Kennedy, A. R., Lemaur, V., Olivier, Y., Hadji, R., Sanguinet, L., Castet, F., Osella, S., Dudenko, D., Beljonne, D., Cornil, J., Samori, P., Seki, S., & Geerts, Y. (2016). Unraveling Unprecedented Charge Carrier Mobility through Structure Property Relationship of Four Isomers of Didodecyl[1]benzothieno[3,2-b][1]benzothiophene. Advanced materials, 28(33), 7106–7114. doi:10.1002/adma.201601285
  3. 72. Ruzié, C., Karpinska, J., Laurent, A., Sanguinet, L., Hunter, S., Anthopoulos, T. D., Lemaur, V., Cornil, J., Kennedy, A. R., Fenwick, O., Samori, P., Schweicher, G., Chattopadhyay, B., & Geerts, Y. (2016). Design, synthesis, chemical stability, packing, cyclic voltammetry, ionisation potential, and charge transport of [1]benzothieno[3,2-: B] [1]benzothiophene derivatives. Journal of Materials Chemistry C, 4, 4863-4879. doi:10.1039/c6tc01409g
  4. 73. Martinez-Tong, D., Gbabode, G., Ruzié, C., Chattopadhyay, B., Schweicher, G., Kennedy, A. R., Geerts, Y., & Sferrazza, M. (2016). Self-assembled Pi-conjugated organic nanoplates: from hexagonal to triangular motifs. RSC Advances, 6, 44921-44931. doi:10.1039/C6RA06431K
  5. 74. Illig, S., Eggeman, A. S., Troisi, A., Jiang, L., Warwick, C., Nikolka, M., Schweicher, G., Yeates, S. G., Geerts, Y., Anthony, J. E., & Sirringhaus, H. (2016). Reducing dynamic disorder in small molecule organic semiconductors by suppressing large-amplitude thermal motions. Nature communications, 7, 10736. doi:10.1038/ncomms10510
  6. 75. Roche, G. H., Tsai, Y.-T., Clevers, S., Thuau, D., Castet, F., Geerts, Y., Moreau, J. J., Wantz, G., & Dautel, O. (2016). The role of H-bonds in the solid state organization of [1]benzothieno[3,2-b] [1]benzothiophene (BTBT) structures: Bis(hydroxy-hexyl)-BTBT, as a functional derivative offering efficient air stable organic field effect transistors (OFETs). Journal of Materials Chemistry C, 4(28), 6742-6749. doi:10.1039/c6tc01814a
  7. 76. Martinez-Tong, D., Ruzié, C., Geerts, Y., & Sferrazza, M. (2016). structural evolution of an organic semiconducting molecule onto a soft substrate. ChemPhysChem, 17, 1174. doi:10.1002/cphc.201501144
  8. 77. Fraboni, B., Fraleoni-Morgera, A., Geerts, Y., Morpurgo, A., & Podzorov, V. (2016). organic single crystals an essentials step to new physics and higher performances of optoelectronic devices. Advanced functional materials, 26, 2229. doi:10.1002/adfm.201504924
  9. 78. Jones, A., Chattopadhyay, B., Geerts, Y., & Resel, R. (2016). substrate-induced and thin-film phases : polymorphism of organic materials on surfaces. Advanced functional materials, 26, 2233. doi:10.1002/adfm.201503169
  10. 79. Cai, R., Kassa, H. G., Haouari, R., Marrani, A., Geerts, Y., Ruzié, C., Van Breemen, A. J., Gelinck, G. H., Nysten, B., Hu, Z., & Jonas, A. M. (2016). organic ferroelectric/semiconducting nanowire hybrid layer for memory storage. Nanoscale, 8, 5968. doi:10.1039/c6nr00049e
  11. 80. Schweicher, G., Lemaur, V., Niebel, C., Ruzié, C., Diao, Y., Goto, O., Lee, W. Y., Kim, Y., Arlin, J.-B., Karpinska, J., Kennedy, A. R., Parkin, S. R., Olivier, Y., Mannsfeld, S., Cornil, J., Geerts, Y., & Bao, Z. (2015). Bulky End-Capped [1]Benzothieno[3,2-b]benzothiophenes: Reaching High-Mobility Organic Semiconductors by Fine Tuning of the Crystalline Solid-State Order. Advanced materials, 27(19), 3066-3072. doi:10.1002/adma.201500322
  12. 81. El Gemayel, M., Börjesson, K., Herder, M., Duong, D. T., Hutchison, J. A., Ruzié, C., Schweicher, G., Salleo, A., Geerts, Y., Hecht, S., Orgiu, E., & Samori, P. (2015). Optically switchable transistors by simple incorporation of photochromic systems into small-molecule semiconducting matrices. Nature communications, 6, 6330. doi:10.1038/ncomms7330

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