Third-order nonlinearities in silicon at telecom wavelengths M Dinu, F Quochi, H Garcia Applied physics letters 82 (18), 2954-2956, 2003 | 841 | 2003 |
Correlated electron–hole plasma in organometal perovskites M Saba, M Cadelano, D Marongiu, F Chen, V Sarritzu, N Sestu, C Figus, ... Nature communications 5 (1), 5049, 2014 | 646 | 2014 |
Optical determination of Shockley-Read-Hall and interface recombination currents in hybrid perovskites V Sarritzu, N Sestu, D Marongiu, X Chang, S Masi, A Rizzo, S Colella, ... Scientific reports 7 (1), 44629, 2017 | 225 | 2017 |
Absorption F-sum rule for the exciton binding energy in methylammonium lead halide perovskites N Sestu, M Cadelano, V Sarritzu, F Chen, D Marongiu, R Piras, M Mainas, ... The journal of physical chemistry letters 6 (22), 4566-4572, 2015 | 202 | 2015 |
Excited state properties of hybrid perovskites M Saba, F Quochi, A Mura, G Bongiovanni Accounts of chemical research 49 (1), 166-173, 2016 | 183 | 2016 |
Gain amplification and lasing properties of individual organic nanofibers F Quochi, F Cordella, A Mura, G Bongiovanni, F Balzer, HG Rubahn Applied Physics Letters 88 (4), 2006 | 164 | 2006 |
Solution-processable near-IR photodetectors based on electron transfer from PbS nanocrystals to fullerene derivatives K Szendrei, F Cordella, MV Kovalenko, M Böberl, G Hesser, M Yarema, ... Advanced Materials 21 (6), 683-+, 2009 | 162 | 2009 |
Random laser action in self-organized para-sexiphenyl nanofibers grown by hot-wall epitaxy F Quochi, F Cordella, R Orru, JE Communal, P Verzeroli, A Mura, ... Applied Physics Letters 84 (22), 4454-4456, 2004 | 117 | 2004 |
One-dimensional random lasing in a single organic nanofiber F Quochi, F Cordella, A Mura, G Bongiovanni, F Balzer, HG Rubahn The Journal of Physical Chemistry B 109 (46), 21690-21693, 2005 | 111 | 2005 |
The role of excitons in 3D and 2D lead halide perovskites D Marongiu, M Saba, F Quochi, A Mura, G Bongiovanni Journal of Materials Chemistry C 7 (39), 12006-12018, 2019 | 106 | 2019 |
Exciton–exciton interaction and optical gain in colloidal CdSe/CdS dot/rod nanocrystals M Saba, S Minniberger, F Quochi, J Roither, M Marceddu, A Gocalinska, ... Advanced Materials 21 (48), 4942-4946, 2009 | 101 | 2009 |
Strongly driven semiconductor microcavities: from the polariton doublet to an ac stark triplet F Quochi, G Bongiovanni, A Mura, JL Staehli, B Deveaud, RP Stanley, ... Physical review letters 80 (21), 4733, 1998 | 100 | 1998 |
Structure and Emission Properties of Er3Q9 (Q = 8-Quinolinolate) F Artizzu, P Deplano, L Marchio, ML Mercuri, L Pilia, A Serpe, F Quochi, ... Inorganic chemistry 44 (4), 840-842, 2005 | 97 | 2005 |
Can trihalide Lead perovskites support continuous wave lasing? M Cadelano, V Sarritzu, N Sestu, D Marongiu, F Chen, R Piras, R Corpino, ... Advanced Optical Materials 3 (11), 1557-1564, 2015 | 91 | 2015 |
Colloidal Bi2S3 Nanocrystals: Quantum Size Effects and Midgap States M Aresti, M Saba, R Piras, D Marongiu, G Mula, F Quochi, A Mura, ... Advanced Functional Materials 24 (22), 3341-3350, 2014 | 89 | 2014 |
Direct or indirect bandgap in hybrid lead halide perovskites? V Sarritzu, N Sestu, D Marongiu, X Chang, Q Wang, S Masi, S Colella, ... Advanced Optical Materials 6 (10), 1701254, 2018 | 87 | 2018 |
Optical properties of strained antimonide-based heterostructures M Dinu, JE Cunningham, F Quochi, J Shah Journal of applied physics 94 (3), 1506-1512, 2003 | 82 | 2003 |
Near infrared light emission quenching in organolanthanide complexes F Quochi, R Orru, F Cordella, A Mura, G Bongiovanni, F Artizzu, ... Journal of applied physics 99 (5), 2006 | 79 | 2006 |
New Insights on Near‐Infrared Emitters Based on Er‐quinolinolate Complexes: Synthesis, Characterization, Structural, and Photophysical Properties F Artizzu, L Marchiò, ML Mercuri, L Pilia, A Serpe, F Quochi, R Orru, ... Advanced Functional Materials 17 (14), 2365-2376, 2007 | 77 | 2007 |
Highly emissive nanostructured thin films of organic host–guests for energy conversion J Moreau, U Giovanella, JP Bombenger, W Porzio, V Vohra, L Spadacini, ... ChemPhysChem 10 (4), 647-653, 2009 | 74 | 2009 |