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Relevant publications

  1. Tuning electron transfer rates through molecular bridges in quantum dot sensitized oxides. H. Wang, E. R. McNellis, S. Kinge, M. Bonn and E. Cánovas*, Nano Letters. 13(11), 5311-5315 (2013).
  2. Interplay between structure, stoichiometry and electron transfer dynamics in SILAR-based quantum dot-sensitized oxides. H. Wang, I. Barceló, T. Lana-Villareal, R. Gómez, M. Bonn and E. Cánovas*. Nano Letters, 14(10), 5780-5786 (2014).
  3. Boosting power conversion efficiencies of quantum-dot-sensitized solar cells beyond 8% by recombination control. K. Zhao, Z. Pan, I. Mora-Seró, E. Cánovas, H. Wang, Y. Song, X. Gong, et al. Journal of the American Chemical Society 137 (16), 5602-5609 (2015).
  4. Phonon–electron scattering limits free charge mobility in methylammonium lead iodide perovskites. M. Karakus, S.A. Jensen, F. D’Angelo, D. Turchinovich, M. Bonn, E. Canovas*. The Journal of Physical Chemistry Letters 6 (24), 4991-4996 (2015).
  5. Dipolar Molecular Capping in Quantum Dot-Sensitized Oxides: Fermi Level Pinning Precludes Tuning Donor-Acceptor Energetics. H. I. Wang, H. Lu, Y. Nagata, M. Bonn and E. Cánovas*. ACS Nano 11(5), 4760 (2017).