Publications

No. of publications: 862

No. papers:

No. Books, Book chapters and proceedings: 10

H-Index: 109

Web of Science Researcher Identifier: G-1422-2015

CRIS Identifier (FAU): 101483880

  • 1) Materials Science – Nanotubes See the Light. D.M. Guldi, Nature, 2007, 447, 50.
  • 2) Endohedral Fullerenes for the Advancement of Organic Photovoltaic Devices. R.B. Ross, C.M. Cardona, D.M. Guldi, S.S. Gayathri, M.O. Reese, N. Kopidakis, J.H. Peet, G.C. Bazan, E. Van Keuren, B.C. Holloway, M. Drees, Nature Materials, 2009, 8, 208.
  • 3) Manipulating Single-Wall Carbon Nanotubes by Chemical Doping and Charge Transfer with Perylene Dyes. C. Ehli, C. Oelsner, D.M. Guldi, A. Mateo-Alonso, M. Prato, C. Schmidt, C. Backes, F. Hauke, A. Hirsch, Nature Chemistry, 2009, 1, 243.
  • 4) Controlling the Crystalline Three-Dimensional Order in Bulk Materials by Single-Wall Carbon Nanotubes. J. Lopez-Andarias, J.L. Lopez, C. Atienza, F.G. Brunetti, C. Romero-Nieto, D.M. Guldi, N. Martin, Nature Communications, 2014, 5, 3763.
  • 5) Electron Transfer Through Rigid Organic Molecular Wires Enhanced by Electronic and Electron-Vibration Coupling. J. Sukegawa, C. Schubert, X.Z. Zhu, H. Tsuji, D.M. Guldi, E. Nakamura, Nature Chemistry, 2014, 6, 899.
  • 6) Unified Model for Singlet Fission Within a Non-Conjugated Covalent Pentacene Dimer. B.S. Basel, J. Zirzlmeier, C. Hetzer, B.T. Phelan, M.D. Krzyaniak, S.R. Reddy, P.B. Coto, N.E. Horwitz, R.M. Young, F.J. White, F. Hampel, T. Clark, M. Thoss, R.R. Tykwinski, M.R. Wasielewski, D.M. Guldi, Nature Communications, 2017, 8, 15171.
  • 7) The Energy Transfer Enabled Biocompatible Disulfide–Ene Reaction. M. Teders, C. Henkel, L. Anhäuser, F. Strieth-Kalthoff, A. Gómez-Suárez, R. Kleinmans, A. Kahnt, A. Rentmeister, D.M. Guldi, F. Glorius, Nature Chemistry, 2018, 10, 981.
  • 8) Hierarchical Organization of Perylene Bisimides and Polyoxometalates for Photo-assisted Water Oxidation. M. Bonchio, Z. Syrgiannis, M. Burian, E. Pizzolato, K. Dirian, F. Rigodanza, G.A. Volpato, G. La Ganga, N. Marino, N. Demitri, S. Berardi, H. Amenitsch, D.M. Guldi, S. Caramori, C.A. Bignozzi, A. Sartorel, M. Prato, Nature Chemistry, 2019, 11, 146.
  • 9) Red Edge Effect and Chromoselective Photocatalysis with Amorphous Covalent Triazine-based Frameworks. Y. Zou, S. Abednatanzi, P. Gohari Derakhshandeh, S. Mazzanti, C.M. Schuesslbauer, D. Cruz, P. Van Der Voort, J.-W. Shi, A. Antonietti, D.M. Guldi, A. Savateev, Nature Communications, 2022, 13, 2171.
  • 10) A digital twin to overcome long-time challenges in photovoltaics. L. Luer, I.M. Peters, A.S. Smith, E. Dorschky, B.M. Eskofier, F. Liers, J. Franke, M. Sjarov, M. Brossog, D.M. Guldi, A. Maier, C.J. Brabec, Joule, 2024, 8, 295.

  • 1) Organic Functionalization of Carbon Nanotubes. V. Georgakilas, K. Kordatos, M. Prato, D.M. Guldi, M. Holzinger, A. Hirsch, J. Am. Chem. Soc., 2002, 124, 760.
  • 2) Excited State Properties of C60 Fullerene Derivatives. D.M. Guldi, M. Prato, Acc. Chem. Res. 2000, 33, 695.
  • 3) Molecular Design of Strong SWNT/Polyelectrolyte Multilayers Composites. A.A. Mamedov, N.A. Kotov, M. Prato, D.M. Guldi, J.P. Wicksted, A. Hirsch, Nature Materials, 2002, 1, 190.
  • 4) Fullerene-Porphyrin Architectures; Photosynthetic Antenna and Reaction Center Models. D.M. Guldi, Chem. Soc. Rev., 2002, 31, 22.
  • 5) Covalent and Noncovalent Phthalocyanine-Carbon Nanostructure Systems: Synthesis, Photoinduced Electron Transfer, and Application to Molecular Photovoltaics. G. Bottari, G. de la Torre, D.M. Guldi, T. Torres. Chem. Rev., 2010, 110, 6768.
  • 6) Decorating Carbon Nanotubes with Metal or Semiconductor Nanoparticles. V. Georgakilas, D. Gournis, V. Tzitzios, L. Pasquato, D.M. Guldi, M. Prato, J. Mater. Chem., 2007, 26, 2679.
  • 7) Fullerenes: Three Dimensional Electron Acceptor Molecules. D.M. Guldi, Chem. Commun., 2000, 321.
  • 8) Endohedral Fullerenes for the Advancement of Organic Photovoltaic Devices. R.B. Ross, C.M. Cardona, D.M. Guldi, S.S. Gayathri, M.O. Reese, N. Kopidakis, J.H. Peet, G.C. Bazan, E. Van Keuren, B.C. Holloway, M. Drees, Nature Materials, 2009, 8, 208.
  • 9) Modulating Charge Separation and Charge Recombination Dynamics in Porphyrin-Fullerene Linked Dyad and Triads; Marcus-Normal versus Inverted Region. H. Imahori, K. Tamaki, D.M. Guldi, C. Luo, M. Fujitsuka, O. Ito, Y. Sakata, S. Fukuzumi, J. Am. Chem. Soc, 2001, 123, 2607.
  • 10) Materials for Organic Solar Cells: The C60 / π-Conjugated Oligomer Approach. J.L. Segura, N. Martín, D.M. Guldi, Chem. Soc. Rev., 2005, 34, 31.