High energy density in silver niobate ceramics Y Tian, L Jin, H Zhang, Z Xu, X Wei, ED Politova, SY Stefanovich, ... Journal of Materials Chemistry A 4 (44), 17279-17287, 2016 | 367 | 2016 |
Phase transitions in bismuth-modified silver niobate ceramics for high power energy storage Y Tian, L Jin, H Zhang, Z Xu, X Wei, G Viola, I Abrahams, H Yan Journal of Materials Chemistry A 5 (33), 17525-17531, 2017 | 324 | 2017 |
Phase transitions in tantalum-modified silver niobate ceramics for high power energy storage Y Tian, L Jin, Q Hu, K Yu, Y Zhuang, G Viola, I Abrahams, Z Xu, X Wei, ... Journal of Materials Chemistry A 7 (2), 834-842, 2019 | 207 | 2019 |
Development of soluble glasses for biomedical use Part I: In vitro solubility measurement K Franks, I Abrahams, JC Knowles Journal of Materials Science: Materials in Medicine 11, 609-614, 2000 | 197 | 2000 |
Silver niobate based lead-free ceramics with high energy storage density Z Yan, D Zhang, X Zhou, H Qi, H Luo, K Zhou, I Abrahams, H Yan Journal of Materials Chemistry A 7 (17), 10702-10711, 2019 | 165 | 2019 |
Investigation of thermal parameters and crytallisation in a ternary CaO–Na2O–P2O5-based glass system K Franks, I Abrahams, G Georgiou, JC Knowles Biomaterials 22 (5), 497-501, 2001 | 137 | 2001 |
Defect chemistry of the BIMEVOXes I Abrahams, F Krok Journal of Materials Chemistry 12 (12), 3351-3362, 2002 | 130 | 2002 |
Investigation of the solubility and ion release in the glass system K2O–Na2O–CaO–P2O5 JC Knowles, K Franks, I Abrahams Biomaterials 22 (23), 3091-3096, 2001 | 128 | 2001 |
Giant energy storage density in PVDF with internal stress engineered polar nanostructures X Ren, N Meng, H Zhang, J Wu, I Abrahams, H Yan, E Bilotti, MJ Reece Nano Energy 72, 104662, 2020 | 121 | 2020 |
Structure of lithium nickel phosphate I Abrahams, KS Easson Acta Crystallographica Section C: Crystal Structure Communications 49 (5 …, 1993 | 120 | 1993 |
Lithium ion conductivity and thermal behaviour of glasses and crystallised glasses in the system Li2O–Al2O3–TiO2–P2O5 I Abrahams, E Hadzifejzovic Solid State Ionics 134 (3-4), 249-257, 2000 | 112 | 2000 |
Poly (butylcyanoacrylate) nanoparticles for topical delivery of 5-fluorouracil M Simeonova, R Velichkova, G Ivanova, V Enchev, I Abrahams International journal of pharmaceutics 263 (1-2), 133-140, 2003 | 99 | 2003 |
Defect structure of quenched γ-BICOVOX by combined X-ray and neutron powder diffraction I Abrahams, F Krok, JAG Nelstrop Solid State Ionics 90 (1-4), 57-65, 1996 | 89 | 1996 |
Quenching of IR luminescence of erbium, neodymium, and ytterbium β-diketonate complexes by ligand C− H and C− D bonds RHC Tan, M Motevalli, I Abrahams, PB Wyatt, WP Gillin The Journal of Physical Chemistry B 110 (48), 24476-24479, 2006 | 88 | 2006 |
A model for the mechanism of low temperature ionic conduction in divalent-substituted γ-BIMEVOXes I Abrahams, F Krok Solid State Ionics 157 (1-4), 139-145, 2003 | 81 | 2003 |
Synthesis and characterization of doped nano-sized ceria–zirconia solid solutions X Weng, B Perston, XZ Wang, I Abrahams, T Lin, S Yang, JRG Evans, ... Applied Catalysis B: Environmental 90 (3-4), 405-415, 2009 | 80 | 2009 |
Direct Syntheses of Mixed Ion and Electronic Conductors La4Ni3O10 and La3Ni2O7 from Nanosized Coprecipitates X Weng, P Boldrin, I Abrahams, SJ Skinner, JA Darr Chemistry of Materials 19 (18), 4382-4384, 2007 | 74 | 2007 |
Significantly enhanced energy storage density of sandwich-structured (Na 0.5 Bi 0.5) 0.93 Ba 0.07 TiO 3/P (VDF–HFP) composites induced by PVP-modified two-dimensional platelets C Jiang, D Zhang, K Zhou, X Zhou, H Luo, I Abrahams Journal of Materials Chemistry A 4 (46), 18050-18059, 2016 | 71 | 2016 |
Structure and oxide ion conductivity mechanism in Bi2Al4O9 by combined X-ray and high-resolution neutron powder diffraction and 27Al solid state NMR I Abrahams, AJ Bush, GE Hawkes, T Nunes Journal of Solid State Chemistry 147 (2), 631-636, 1999 | 71 | 1999 |
Enhanced thermoelectric performance of Sn-doped Cu 3 SbS 4 K Chen, C Di Paola, B Du, R Zhang, S Laricchia, N Bonini, C Weber, ... Journal of Materials Chemistry C 6 (31), 8546-8552, 2018 | 68 | 2018 |