Gabriele Seguini
Senior Technologist @Cnr-Imm Istituto Per La Microelettronica E Microsistemi
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WORK HISTORY
Senior Technologist @Cnr-Imm Istituto Per La Microelettronica E Microsistemi
Agrate Brianza, IT
EDUCATION
Università degli Studi di Milano
Laurea
Liceo Scientifico "F. Lussana"
High School Diploma
SKILLS
ABOUT GABRIELE SEGUINI
Gabriele Seguini obtained the Master Degree in Physics at the University of Milan in 2003 with a thesis on the “Determination of energy barrier at the oxide/silicon interface by means of Internal Photoemission” completed at the INFM-MDM Laboratory of Agrate Brianza. In 20••••07 he received a INFM fellowship to expand his studies on the energy band alignment of metal/oxide/semiconductor systems. In 20••••09 he contributed as research assistant to the project “MATRIX” funded by Fondazione Cariplo, with the fabrication of MOS devices for the characterization of oxide embedded metal and semiconducting nanocrystal arrays. In 20••••11 he was research assistant within the European Project “NANOBLOCK”, to work on the fabrication of nanodevices using block copolymer based technologies and on the electrical-optical characterization of low dimensional semiconductors. Since 2011 Gabriele Seguini is Technologist at the Agrate Unit of CNR-IMM. In 20••••14 he contributed to the European project \"NANOPV” developing advanced technologies for the preparation and characterization of nanostructured materials for third generation photovoltaics cells. In 20••••16, within the European project “3DMetChem IT\" he designed, developed and characterized nanofabrication technologies for the production of metrology standards Since 2016 he is involved in the European project “Ions4SET\" to develop bottom-up nanofabrication processes for fabricating single electron transistors. Since 2016 he is Contact Person at the Agrate Unit for the Micro/nanofabrication Technological Area of CNR-IMM. Currently, his main scientific interests include the development of self-assembled and bottom up approaches for the synthesis of nanostructured materials with typical size below 20nm. His research focuses both on the fundamental aspects of self-assembly processes and on the exploitation of self-assembled polymers for synthesizing nanosctructured materials and nanoscaled devices.
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