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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

Role of the crystallization substrate on the photoluminescence properties of organo-lead mixed halides perovskites

APL Materials AIP Publishing 2:8 (2014) 081509

Authors:

Michele De Bastiani, Valerio D’Innocenzo, Samuel D Stranks, Henry J Snaith, Annamaria Petrozza
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Polystyrene templated porous titania wells for quantum dot heterojunction solar cells.

ACS applied materials & interfaces 6:16 (2014) 14247-14252

Authors:

Cheng Cheng, Michael M Lee, Nakita K Noel, Gareth M Hughes, James M Ball, Hazel E Assender, Henry J Snaith, Andrew AR Watt

Abstract:

Polystyrene spheres are used to template TiO2 with a single layer of 300 nm wells which are infilled with PbS quantum dots to form a heterojunction solar cell. The porous well device has an efficiency of 5.7% while the simple planar junction is limited to 3.2%. Using a combination of optical absorption and photocurrent transient decay measurement we determined that the performance enhancement comes from a combination of enhanced optical absorption and increased carrier lifetime.
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Impact of Molecular Charge-Transfer States on Photocurrent Generation in Solid State Dye-Sensitized Solar Cells Employing Low-Band-Gap Dyes

The Journal of Physical Chemistry C American Chemical Society (ACS) 118:30 (2014) 16825-16830

Authors:

Sai Santosh Kumar Raavi, Pablo Docampo, Christian Wehrenfennig, Marcelo JP Alcocer, Golnaz Sadoughi, Laura M Herz, Henry J Snaith, Annamaria Petrozza
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Influence of Thermal Processing Protocol upon the Crystallization and Photovoltaic Performance of Organic–Inorganic Lead Trihalide Perovskites

The Journal of Physical Chemistry C American Chemical Society (ACS) 118:30 (2014) 17171-17177

Authors:

Michael Saliba, Kwan Wee Tan, Hiroaki Sai, David T Moore, Trent Scott, Wei Zhang, Lara A Estroff, Ulrich Wiesner, Henry J Snaith
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Electronic properties of meso-superstructured and planar organometal halide perovskite films: charge trapping, photodoping, and carrier mobility.

ACS nano 8:7 (2014) 7147-7155

Authors:

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

Abstract:

Solution-processed organometal trihalide perovskite solar cells are attracting increasing interest, leading to high performances over 15% in thin film architectures. Here, we probe the presence of sub gap states in both solid and mesosuperstructured perovskite films and determine that they strongly influence the photoconductivity response and splitting of the quasi-Fermi levels in films and solar cells. We find that while the planar perovskite films are superior to the mesosuperstructured films in terms of charge carrier mobility (in excess of 20 cm(2) V(-1) s(-1)) and emissivity, the planar heterojunction solar cells are limited in photovoltage by the presence of sub gap states and low intrinsic doping densities.
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