Select Publications
Conference Presentations
, 2020, 'Self-interest Distributed Economic Model Predictive Control for Renewable Energy Generation and Battery Energy Storage', presented at The International Coalition for Energy Storage and Innovation, Sydney, 02 March 2020 - 04 March 2021
, 2020, 'Charging Control of Vanadium Redox Batteries Under Time-Varying Input Power with Optimal Flow-Rate', presented at The International Coalition For Energy Storage And Innovation (ICESI-2020), Sydney, Australia, 02 March 2020 - 05 March 2020
, 2019, 'An Overview Of Current Developments And Challenges Of Redox Flow Batteries', presented at International Coalition for Energy Storage and Innovation and Pacific Power Source Symposium, Big Island, Hawaii, USA
, 2019, 'Performance enhancing stack geometry concepts', presented at The International Flow Battery Forum, Lyon, France
, 2018, 'Current Development Trends and Challenges for Redox-Flow Batteries', presented at ModVal, Aarau, Switzerland
, 2018, 'Design and Development of a Vanadium Oxygen Fuel Cell', presented at Meeting of The Material Research Society (MRS), Boston, MA, USA
, 2018, 'Today’s Challenges for Redox-Flow Batteries', presented at Meeting of The Materials Research Society (MRS), Phoenix, AZ, USA
, 2018, 'Vanadium – Oxygen Hybrid Fuel cell: Design & Performance', presented at The International Flow Battery Forum, Lausanne, Switzerland
Conference Abstracts
, 1987, 'MEMBRANE EVALUATION FOR VANADIUM REDOX CELL', in JOURNAL OF THE ELECTROCHEMICAL SOCIETY, ELECTROCHEMICAL SOC INC, Vol. 134, pp. C458 - C458, https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:A1987J647200789&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=891bb5ab6ba270e68a29b250adbe88d1
Patents
, 2023, METHOD OF MONITORING INDIVIDUAL ANODE CURRENTS IN AN ELECTROLYTIC CELL SUITABLE FOR THE HALL-HEROULT ELECTROLYSIS PROCESS, Patent No. Canada - CA3012163; Europe/France/Germany/Iceland/Norway - 3417094;, Patent Agent:Canadian Patent Office, https://www.ic.gc.ca/opic-cipo/cpd/eng/patent/3012163/summary.html
, 2023, METHOD FOR ESTIMATING DYNAMIC STATE VARIABLES IN AN ELECTROLYTIC CELL SUITABLE FOR THE HALL-HEROULT ELECTROLYSIS PROCESS, Patent No. CA3012166, Patent Agent:Canadian Patent Office, https://www.ic.gc.ca/opic-cipo/cpd/eng/patent/3012166/summary.html
, 2022, Method for estimating dynamic state variables in an electrolytic cell suitable for the Hall-Heroult electrolysis process, Patent No. Gulf Cooperation Council - GC0011924
, 2009, Novel Vanadium Halide Redox Flow Battery, Australia, Patent No. 2004219551
, 2009, Novel Vanadium Halide Redox Flow Battery, South Africa, Patent No. 2005/7835
, 2009, Novel Vanadium Halide Redox Flow Battery, New Zealand, Patent No. 542932
, 2009, Novel Vanadium Halide Redox Flow Battery, China, Patent No. ZL200480006979.8
, 2009, Vanadium Polyhalide Redox Flow Battery, USA, Patent No. 7320844
, 2009, Vanadium Polyhalide Redox Flow Battery, Europe, Patent No. 1425807
, 2009, Vanadium Polyhalide Redox Flow Battery, Australia, Patent No. 2002328660
, 2002, All-Vanadium Redox Battery Containing High Energy Density Solutions, Patent No.
, 2002, Vanadium Chloride/Polyhalide Redox Flow Battery, Patent No.
, 2002, Vanadium Redox Battery Electrolyte Process, Patent No.
, 2001, Bipolar electrodes for aluminium electrolysis, Patent No.
, 2001, Flexible conducting plastic electrode and process for its preparation, Patent No.
, 2001, Gelled electrolyte vanadium battery, Patent No.
, 2001, Stabilised electrolyte solutions, methods of preparation thereof and redox cells and batteries containing stabilised electrolyte solutions, Patent No.
, 2001, Vanadium chloride/polyhalide redox flow battery, Patent No.
, 2001, Vanadium Redox battery electrolyte process, Patent No.
Preprints
, 2022, Electrolyte Flow Rate Control for Vanadium Redox Flow Batteries using the Linear Parameter Varying Framework, http://dx.doi.org/10.48550/arxiv.2201.12812
, Solubility of Vanadium Pentoxide (V2o5) in Sulfuric Acid Solutions for Vanadium Flow Battery, http://dx.doi.org/10.2139/ssrn.4058918