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91探花
CMP
Credit: Jack Hobhouse

Prof Henry Snaith FRS

Professor of Physics

Sub department

  • Condensed Matter Physics

Research groups

  • Snaith group
  • Advanced Device Concepts for Next-Generation Photovoltaics
Henry.Snaith@physics.ox.ac.uk
Robert Hooke Building, room G21
  • About
  • Publications

Electronic Properties of Meso-Superstructured and Planar Organometal Halide Perovskite Films: Charge Trapping, Photodoping, and Carrier Mobility

ACS Nano American Chemical Society (ACS) 8:7 (2014) 7147-7155

Authors:

Tomas Leijtens, Samuel D Stranks, Giles E Eperon, Rebecka Lindblad, Erik MJ Johansson, Ian J McPherson, Ha虋kan Rensmo, James M Ball, Michael M Lee, Henry J Snaith

The emergence of perovskite solar cells

Nature Photonics Springer Nature 8:7 (2014) 506-514

Authors:

Martin A Green, Anita Ho-Baillie, Henry J Snaith

Lessons learned: From dye-sensitized solar cells to all-solid-state hybrid devices

Advanced Materials 26:24 (2014) 4013-4030

Authors:

P Docampo, S Guldin, T Leijtens, NK Noel, U Steiner, HJ Snaith

Abstract:

The field of solution-processed photovoltaic cells is currently in its second spring. The dye-sensitized solar cell is a widely studied and longstanding candidate for future energy generation. Recently, inorganic absorber-based devices have reached new record efficiencies, with the benefits of all-solid-state devices. In this rapidly changing environment, this review sheds light on recent developments in all-solid-state solar cells in terms of electrode architecture, alternative sensitizers, and hole-transporting materials. These concepts are of general applicability to many next-generation device platforms. The field of solution-processed photovoltaic cells is currently in its second spring, with solid-state devices incorporating novel inorganic absorbers reaching record efficiencies. This review sheds light on recent developments in all-solid-state solar cells in terms of electrode architecture, alternative sensitizers, and hole-transporting materials: concepts applicable to many next-generation device platforms. 漏 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Quantitative electron tomography investigation of a TiO2 based solar cell photoanode

Journal of Physics Conference Series IOP Publishing 522:1 (2014) 012063

Authors:

G Divitini, A Abrusci, F Di Fonzo, H Snaith, C Ducati

Supramolecular Halogen Bond Passivation of Organic鈥揑norganic Halide Perovskite Solar Cells

Nano Letters American Chemical Society (ACS) 14:6 (2014) 3247-3254

Authors:

Antonio Abate, Michael Saliba, Derek J Hollman, Samuel D Stranks, Konrad Wojciechowski, Roberto Avolio, Giulia Grancini, Annamaria Petrozza, Henry J Snaith

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