Browse by UCL people
Group by: Type | Date
Number of items: 7.
Article
Kulkarni, N;
Cho, JIS;
Jervis, R;
Roberts, EPL;
Francesco, I;
Kok, MDR;
Shearing, PR;
(2022)
The effect of non-uniform compression on the performance of polymer electrolyte fuel cells.
Journal of Power Sources
, 521
, Article 23097. 10.1016/j.jpowsour.2021.230973.
|
Kulkarni, N;
Cho, JIS;
Rasha, L;
Owen, RE;
Wu, Y;
Ziesche, R;
Hack, J;
... Brett, DJL; + view all
(2019)
Effect of cell compression on the water dynamics of a polymer electrolyte fuel cell using in-plane and through-plane in-operando neutron radiography.
Journal of Power Sources
, 439
, Article 227074. 10.1016/j.jpowsour.2019.227074.
|
Kulkarni, N;
Jervis, R;
Kok, M;
Iacoviello, F;
Meyer, Q;
Daniel, B;
(2019)
The effect of non-uniform compression and flow-field arrangements on membrane electrode assemblies - X-ray computed tomography characterisation and effective parameter determination.
Journal of Power Sources
, 426
pp. 97-110.
10.1016/j.jpowsour.2019.04.018.
|
Kulkarni, N;
Meyer, Q;
Hack, J;
Jervis, R;
Iacoviello, F;
Ronaszegi, K;
Adcock, P;
... Brett, DJL; + view all
(2019)
Examining the effect of the secondary flow-field on polymer electrolyte fuel cells using X-ray computed radiography and computational modelling.
International Journal of Hydrogen Energy
, 44
(2)
pp. 1139-1150.
10.1016/j.ijhydene.2018.11.038.
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Robinson, JB;
Xi, K;
Kumar, RV;
Ferrari, AC;
Au, H;
Titirici, M-M;
Parra-Puerto, A;
... Shearing, PR; + view all
(2021)
2021 roadmap on lithium sulfur batteries.
Journal of Physics: Energy
, 3
(3)
, Article 031501. 10.1088/2515-7655/abdb9a.
|
Wu, Y;
Cho, JIS;
Whiteley, M;
Rasha, L;
Neville, TP;
Ziesche, R;
Xu, R;
... Brett, DJL; + view all
(2020)
Characterization of water management in metal foam flow-field based polymer electrolyte fuel cells using in-operando neutron radiography.
International Journal of Hydrogen Energy
, 45
(3)
pp. 2195-2205.
10.1016/j.ijhydene.2019.11.069.
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Thesis
Kulkarni, Nivedita Narendra;
(2020)
Advancements in Polymer Electrolyte Fuel Cell Architecture and Performance using Electrochemical Modelling and Advanced Characterisations.
Doctoral thesis (Ph.D), UCL.
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