Ionic liquids and their solid-state analogues as materials for energy generation and storage DR MacFarlane, M Forsyth, PC Howlett, M Kar, S Passerini, JM Pringle, ... Nature Reviews Materials 1 (2), 1-15, 2016 | 625 | 2016 |
Electro-synthesis of ammonia from nitrogen at ambient temperature and pressure in ionic liquids F Zhou, LM Azofra, M Ali, M Kar, AN Simonov, C McDonnell-Worth, C Sun, ... Energy & Environmental Science 10 (12), 2516-2520, 2017 | 582 | 2017 |
Fundamentals of ionic liquids: from chemistry to applications DR MacFarlane, M Kar, JM Pringle John Wiley & Sons, 2017 | 257 | 2017 |
Ionic liquid electrolytes as a platform for rechargeable metal–air batteries: a perspective M Kar, TJ Simons, M Forsyth, DR MacFarlane Physical chemistry chemical physics 16 (35), 18658-18674, 2014 | 173 | 2014 |
Mg cathode materials and electrolytes for rechargeable Mg batteries: a review Z Ma, DR MacFarlane, M Kar Batteries & Supercaps 2 (2), 115-127, 2019 | 136 | 2019 |
New dimensions in salt–solvent mixtures: a 4th evolution of ionic liquids DR MacFarlane, AL Chong, M Forsyth, M Kar, R Vijayaraghavan, ... Faraday discussions 206, 9-28, 2018 | 129 | 2018 |
Supported ionic liquid gel membrane electrolytes for flexible supercapacitors X Zhang, M Kar, TC Mendes, Y Wu, DR MacFarlane Advanced Energy Materials 8 (15), 1702702, 2018 | 117 | 2018 |
Task-specific thioglycolate ionic liquids for heavy metal extraction: synthesis, extraction efficacies and recycling properties S Platzer, M Kar, R Leyma, S Chib, A Roller, F Jirsa, R Krachler, ... Journal of hazardous materials 324, 241-249, 2017 | 104 | 2017 |
Chelating ionic liquids for reversible zinc electrochemistry M Kar, B Winther-Jensen, M Forsyth, DR MacFarlane Physical Chemistry Chemical Physics 15 (19), 7191-7197, 2013 | 95 | 2013 |
Novel and versatile room temperature ionic liquids for energy storage M Kar, O Tutusaus, DR MacFarlane, R Mohtadi Energy & Environmental Science 12 (2), 566-571, 2019 | 87 | 2019 |
Phase change materials for renewable energy storage at intermediate temperatures K Matuszek, M Kar, JM Pringle, DR MacFarlane Chemical Reviews 123 (1), 491-514, 2022 | 82 | 2022 |
Ionic liquid electrolytes for reversible magnesium electrochemistry M Kar, Z Ma, LM Azofra, K Chen, M Forsyth, DR MacFarlane Chemical communications 52 (21), 4033-4036, 2016 | 82 | 2016 |
Electrochemical cycling of Mg in Mg [TFSI] 2/tetraglyme electrolytes Z Ma, M Kar, C Xiao, M Forsyth, DR MacFarlane Electrochemistry Communications 78, 29-32, 2017 | 81 | 2017 |
Lithium doped N, N-dimethyl pyrrolidinium tetrafluoroborate organic ionic plastic crystal electrolytes for solid state lithium batteries L Jin, P Howlett, J Efthimiadis, M Kar, D Macfarlane, M Forsyth Journal of materials chemistry 21 (27), 10171-10178, 2011 | 80 | 2011 |
Ionic liquids–further progress on the fundamental issues M Kar, NV Plechkova, KR Seddon, JM Pringle, DR MacFarlane Australian Journal of Chemistry 72 (2), 3-10, 2018 | 68 | 2018 |
Three-dimensionally reinforced freestanding cathode for high-energy room-temperature sodium–sulfur batteries A Ghosh, A Kumar, A Roy, MR Panda, M Kar, DR MacFarlane, S Mitra ACS applied materials & interfaces 11 (15), 14101-14109, 2019 | 63 | 2019 |
Stable zinc cycling in novel alkoxy-ammonium based ionic liquid electrolytes M Kar, B Winther-Jensen, M Armand, TJ Simons, O Winther-Jensen, ... Electrochimica Acta 188, 461-471, 2016 | 60 | 2016 |
Effect of mixed anions on the physicochemical properties of a sodium containing alkoxyammonium ionic liquid electrolyte M Hilder, M Gras, CR Pope, M Kar, DR MacFarlane, M Forsyth, LA O’Dell Physical Chemistry Chemical Physics 19 (26), 17461-17468, 2017 | 51 | 2017 |
Lewis Acid–Base Interactions between Polysulfides and Boehmite Enables Stable Room‐Temperature Sodium–Sulfur Batteries A Ghosh, A Kumar, T Das, A Ghosh, S Chakraborty, M Kar, ... Advanced Functional Materials 30 (50), 2005669, 2020 | 50 | 2020 |
Ion dynamics in a mixed‐cation alkoxy‐ammonium ionic liquid electrolyte for sodium device applications CR Pope, M Kar, DR MacFarlane, M Armand, M Forsyth, LA O'Dell ChemPhysChem 17 (20), 3187-3195, 2016 | 49 | 2016 |