Mono (imidazolin-2-iminato) actinide complexes: synthesis and application in the catalytic dimerization of aldehydes ISR Karmel, N Fridman, M Tamm, MS Eisen Journal of the American Chemical Society 136 (49), 17180-17192, 2014 | 81 | 2014 |
Structures and photophysics of lophine and double lophine derivatives N Fridman, M Kaftory, S Speiser Sensors and Actuators B: Chemical 126 (1), 107-115, 2007 | 64 | 2007 |
Nitrogen lewis acids A Pogoreltsev, Y Tulchinsky, N Fridman, M Gandelman Journal of the American Chemical Society 139 (11), 4062-4067, 2017 | 62 | 2017 |
A di-copper-peptoid in a noninnocent borate buffer as a fast electrocatalyst for homogeneous water oxidation with low overpotential G Ruan, P Ghosh, N Fridman, G Maayan Journal of the American Chemical Society 143 (28), 10614-10623, 2021 | 61 | 2021 |
Water oxidation catalysis by mono-and binuclear iron corroles W Sinha, A Mahammed, N Fridman, Z Gross ACS Catalysis 10 (6), 3764-3772, 2020 | 49 | 2020 |
Addition of E–H (E= N, P, C, O, S) bonds to heterocumulenes catalyzed by benzimidazolin-2-iminato actinide complexes H Liu, N Fridman, M Tamm, MS Eisen Organometallics 36 (20), 3896-3903, 2017 | 47 | 2017 |
Mixed imidazolin-2-iminato–Cp* thorium (IV) complexes: Synthesis and reactivity toward oxygen-containing substrates ISR Karmel, N Fridman, M Tamm, MS Eisen Organometallics 34 (12), 2933-2942, 2015 | 44 | 2015 |
Facile H/D exchange at (hetero) aromatic hydrocarbons catalyzed by a stable trans-dihydride N-heterocyclic carbene (NHC) iron complex S Garhwal, A Kaushansky, N Fridman, LJW Shimon, G Ruiter Journal of the American Chemical Society 142 (40), 17131-17139, 2020 | 43 | 2020 |
Catalytic addition of alcohols into carbodiimides promoted by organoactinide complexes H Liu, M Khononov, N Fridman, M Tamm, MS Eisen Inorganic chemistry 56 (6), 3153-3157, 2017 | 42 | 2017 |
Design concept for α-hydrogen-substituted nitroxides M Amar, S Bar, MA Iron, H Toledo, B Tumanskii, LJW Shimon, ... Nature communications 6 (1), 6070, 2015 | 41 | 2015 |
Catalytic regeneration of a Th–H bond from a Th–O bond through a mild and chemoselective carbonyl hydroboration T Ghatak, K Makarov, N Fridman, MS Eisen Chemical Communications 54 (78), 11001-11004, 2018 | 39 | 2018 |
Structures and chromogenic properties of bisimidazole derivatives N Fridman, S Speiser, M Kaftory Crystal growth & design 6 (7), 1653-1662, 2006 | 39 | 2006 |
Frustrated Lewis Pairs Comprising Nitrogen Lewis Acids for Si–H Bond Activation I Avigdori, A Pogoreltsev, A Kaushanski, N Fridman, M Gandelman Angewandte Chemie International Edition 59 (52), 23476-23479, 2020 | 37 | 2020 |
Actinide complexes possessing six-membered N-heterocyclic iminato moieties: synthesis and reactivity T Ghatak, N Fridman, MS Eisen Organometallics 36 (7), 1296-1302, 2017 | 37 | 2017 |
Amide-templated iodoplumbates: extending lead-iodide based hybrid semiconductors S Eppel, N Fridman, G Frey Crystal Growth & Design 15 (9), 4363-4371, 2015 | 36 | 2015 |
Effect of Selective CF3 Substitution on the Physical and Chemical Properties of Gold Corroles K Sudhakar, A Mizrahi, M Kosa, N Fridman, B Tumanskii, M Saphier, ... Angewandte Chemie International Edition 56 (33), 9837-9841, 2017 | 35 | 2017 |
Dimethylsilyl bis (amidinate) actinide complexes: synthesis and reactivity towards oxygen containing substrates ISR Karmel, T Elkin, N Fridman, MS Eisen Dalton Transactions 43 (29), 11376-11387, 2014 | 34 | 2014 |
One-pot conversion of fluorophores to phosphorophores M Soll, K Sudhakar, N Fridman, A Müller, B Röder, Z Gross Organic letters 18 (22), 5840-5843, 2016 | 33 | 2016 |
Crystal structures and solution spectroscopy of lophine derivatives N Fridman, M Kaftory, Y Eichen, S Speiser Journal of Molecular Structure 917 (2-3), 101-109, 2009 | 33 | 2009 |
Copper Complexes of CF3-Substituted Corroles for Affecting Redox Potentials and Electrocatalysis K Sudhakar, A Mahammed, QC Chen, N Fridman, B Tumanskii, Z Gross ACS Applied Energy Materials 3 (3), 2828-2836, 2020 | 32 | 2020 |