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Massimo Longo received the Laurea degree in Physics in 1993. During his thesis work he acquired the know-how of the Metal Organic Vapour Phase Epitaxy process (MOVPE).
In 1994 he had an INFM post-lauream grant, working on the “Study of MOVPE growth of II-VI semiconductor layers” (Unit of Research in Lecce).
During 1994-97 he attended the PhD course in Physics. Research issues: 1) growth optimization and study of the chemical-physical processes taking place during the MOVPE growth of II-VI/GaAs heterostructures with applications for devices in the blue-green spectrum (ZnS, ZnSe, ZnTe, CdTe/ZnTe); 2) analysis of the correlation between the MOVPE growth mechanisms and the structural, optical and morphological properties of the grown epitaxial heterostructures. 3) Study of the use of alternative precursors and the nucleation mechanisms during the first growth instants of ZnTe on GaAs substrates.
During 1998-99 he worked with an INFM Post-Doc fellowship at the Unit of Research in Lecce. Research issues: MOVPE growth of quantum confined epitaxial nanostructures, based on III-V compounds (GaAs, InGaAs e AlGaAs) for infra-red oparating devices and nitride compounds (GaN, AlGaN ed InGaN) for optoelectronic devices operating in the blue-UV.
In 1999-2002 he had an INFM grant for the MOVPE growth of heterostrucures based on InP for micro- and optoelectronic applications; during such period he directed the installation of the MOVPE Laboratory of the University of Parma (Italy), operative since 2001.
From 2002 to 2007 he was a researcher for INFM (now CNR-INFM) at the Department of Physics of the University of Parma, being also responsible of the epitaxial growth activity. Main research issues: MOVPE growth of arsenide and phosphide compounds for high efficiency, multi quantum well solar cells, devoted to terrestrial applications and MOVPE growth of structures for the study of the effects of iron ion implantation for microelectronic applications. During 2002-2007 he also performed some didactic, orientating and organizing activity for the University of Parma.
From April 2007 to August 2020 he was a CNR-IMM researcher at the Agrate Brianza Unit of the Institute for Microelectronics and Microsystems (IMM) of the Italian National Council for Researches (CNR), where he leads the synthesis and functional analysis of nanostructured chalcogenides for phase change memories (PCM).
He was the Italian responsible of the bilateral project CNR with Spain (CSIC) “Synthesis and functional analysis of chalcogenide materials for phase change memory (PCM) and nanopatterning (NP) applications”, 2009-2010 and coordinator of the project CARIPLO-MONADS “MOCVD growth and study of chalcogenide NAnowires for phase change DeviceS”, 2010-2012 (http://monads.mdm.imm.cnr.it). He was coordinator of FP7-NMP SYNAPSE “"SYnthesis and functionality of chalcogenide Nanostructures for PhaSE change memories", 2012-2015 (http://synapse.mdm.imm.cnr.it).
From 2009 to 2019 he was key-person for CNR of the joint research program with Numonyx/Micron/STMicroelectronics related to PCM. As for the joint activities of CNR-IMM with Micron ed STMicroelectronics, he has been acting since 2009 as the key-person for PCM memories, organizing the characterization of the involved materials through the analysis of the electrical transport (I-V, resisitvity), magnetic field (Hall effect) and thermal properties (3 Ω method).
Since November 2018 he has been key investigator within the EU H2020 FET PROACT project SKYTOP, in relation to the MOCVD Synthesis of topological insulator chalcogenide materials for spintronic applications
Since January 2019 he has been Workpackage leader for the materials development in the EU project H2020 ICT BeforeHand (2019-2021), devoted to the study of chalcogenide heterostructures for innovative phase change devices combining memory and computation capabilities.
In September 2020 he moved to the Rome Unit of CNR-IMM, where he keeps dealing with the synthesis and study of chalcogenide materials.
In September 2023, he joined the Department of Chemical Science and Technologies at the University of Rome Tor Vergata, focusing on chemical synthesis techniques, including vapor-phase deposition of thin films and nanostructures on surfaces.
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Scientific reportsno. 1 (2024): 15713-15713
ACS applied materials & interfacesno. 43 (2023): 50237-50245
COATINGSno. 2 (2023): 428-428
Xin Li,Zhengfen Wan,Yinan Zhang,Yachao Zhang,Yanlei Hu,Zengji Yue, Arun Kumar,Raimondo Cecchini,Massimo Longo
Applied Physics Lettersno. 16 (2023)
arXiv (Cornell University) (2023)
Adriano Diaz Fattorini,Caroline Cheze,Inaki Lopez Garcia, Christian Petrucci,Marco Bertelli, Flavia Righi Riva,Simone Prili,Stefania M. S. Privitera,Marzia Buscema,Antonella Sciuto,Salvatore Di Franco,Giuseppe D'Arrigo,
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