Trystan Watson
Trystan Watson
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Quantifying losses in open-circuit voltage in solution-processable solar cells
J Yao, T Kirchartz, MS Vezie, MA Faist, W Gong, Z He, H Wu, J Troughton, ...
Physical review applied 4 (1), 014020, 2015
A one-step low temperature processing route for organolead halide perovskite solar cells
MJ Carnie, C Charbonneau, ML Davies, J Troughton, TM Watson, ...
Chemical communications 49 (72), 7893-7895, 2013
A transparent conductive adhesive laminate electrode for high‐efficiency organic‐inorganic lead halide perovskite solar cells
D Bryant, P Greenwood, J Troughton, M Wijdekop, M Carnie, M Davies, ...
Advanced Materials 26 (44), 7499-7504, 2014
Efficient, semitransparent neutral-colored solar cells based on microstructured formamidinium lead trihalide perovskite
GE Eperon, D Bryant, J Troughton, SD Stranks, MB Johnston, T Watson, ...
The journal of physical chemistry letters 6 (1), 129-138, 2015
Humidity resistant fabrication of CH3NH3PbI3 perovskite solar cells and modules
J Troughton, K Hooper, TM Watson
Nano Energy 39, 60-68, 2017
Highly efficient, flexible, indium-free perovskite solar cells employing metallic substrates
J Troughton, D Bryant, K Wojciechowski, MJ Carnie, H Snaith, ...
Journal of Materials Chemistry A 3 (17), 9141-9145, 2015
One-step deposition by slot-die coating of mixed lead halide perovskite for photovoltaic applications
G Cotella, J Baker, D Worsley, F De Rossi, C Pleydell-Pearce, M Carnie, ...
Solar Energy Materials and Solar Cells 159, 362-369, 2017
Observable hysteresis at low temperature in “hysteresis free” organic–inorganic lead halide perovskite solar cells
D Bryant, S Wheeler, BC O’Regan, T Watson, PRF Barnes, D Worsley, ...
The Journal of Physical Chemistry Letters 6 (16), 3190-3194, 2015
Ultra-fast dye sensitisation and co-sensitisation for dye sensitized solar cells
PJ Holliman, ML Davies, A Connell, BV Velasco, TM Watson
Chemical communications 46 (38), 7256-7258, 2010
Perovskite processing for photovoltaics: a spectro-thermal evaluation
AE Williams, PJ Holliman, MJ Carnie, ML Davies, DA Worsley, TM Watson
Journal of Materials Chemistry A 2 (45), 19338-19346, 2014
Ultrafast near-infrared sintering of a slot-die coated nano-silver conducting ink
M Cherrington, TC Claypole, D Deganello, I Mabbett, T Watson, ...
Journal of Materials Chemistry 21 (21), 7562-7564, 2011
An effective approach of vapour assisted morphological tailoring for reducing metal defect sites in lead-free,(CH3NH3) 3Bi2I9 bismuth-based perovskite solar cells for improved …
SM Jain, D Phuyal, ML Davies, M Li, B Philippe, C De Castro, Z Qiu, J Kim, ...
Nano Energy 49, 614-624, 2018
Photonic flash-annealing of lead halide perovskite solar cells in 1 ms
J Troughton, MJ Carnie, ML Davies, C Charbonneau, EH Jewell, ...
Journal of Materials Chemistry A 4 (9), 3471-3476, 2016
Consensus statement for stability assessment and reporting for perovskite photovoltaics based on ISOS procedures
MV Khenkin, EA Katz, A Abate, G Bardizza, JJ Berry, C Brabec, F Brunetti, ...
Nature Energy 5 (1), 35-49, 2020
Ultrafast near infrared sintering of TiO2 layers on metal substrates for dye‐sensitized solar cells
T Watson, I Mabbett, H Wang, L Peter, D Worsley
Progress in Photovoltaics: Research and Applications 19 (4), 482-486, 2011
The role of fullerenes in the environmental stability of polymer: fullerene solar cells
HKH Lee, AM Telford, JA Röhr, MF Wyatt, B Rice, J Wu, ...
Energy & Environmental Science 11 (2), 417-428, 2018
Rapid processing of perovskite solar cells in under 2.5 seconds
J Troughton, C Charbonneau, MJ Carnie, ML Davies, DA Worsley, ...
Journal of Materials Chemistry A 3 (17), 9123-9127, 2015
Transient optoelectronic analysis of the impact of material energetics and recombination kinetics on the open-circuit voltage of hybrid perovskite solar cells
S Wheeler, D Bryant, J Troughton, T Kirchartz, T Watson, J Nelson, ...
The Journal of Physical Chemistry C 121 (25), 13496-13506, 2017
Rapid, continuous in situ monitoring of dye sensitisation in dye-sensitized solar cells
T Watson, P Holliman, D Worsley
Journal of Materials Chemistry 21 (12), 4321-4325, 2011
All Printable Perovskite Solar Modules with 198 cm2 Active Area and Over 6% Efficiency
F De Rossi, JA Baker, D Beynon, KEA Hooper, SMP Meroni, D Williams, ...
Advanced Materials Technologies 3 (11), 1800156, 2018
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