﻿{"id":51879,"date":"2024-05-15T15:06:45","date_gmt":"2024-05-15T12:06:45","guid":{"rendered":"https:\/\/www.iceht.forth.gr\/events\/%cf%85%ce%b2%cf%81%ce%b9%ce%b4%ce%b9%ce%ba%ce%ac-%ce%bc%ce%b1%ce%b3%ce%bd%ce%b7%cf%84%ce%b9%ce%ba%ce%ac-%ce%bd%ce%b1%ce%bd%ce%bf%cf%8b%ce%bb%ce%b9%ce%ba%ce%ac-%ce%b1%cf%80%cf%8c-%cf%84%ce%b7%ce%bd\/"},"modified":"2024-05-15T15:08:04","modified_gmt":"2024-05-15T12:08:04","slug":"hybrid-magnetic-nanomaterials-from-the-deposition-of-single-molecule-magnets-on-functional-substrates","status":"publish","type":"ajde_events","link":"https:\/\/www.iceht.forth.gr\/en\/events\/hybrid-magnetic-nanomaterials-from-the-deposition-of-single-molecule-magnets-on-functional-substrates\/","title":{"rendered":"Hybrid Magnetic Nanomaterials from the Deposition of Single-Molecule Magnets on Functional Substrates"},"content":{"rendered":"<table width=\"0\">\n<tbody>\n<tr>\n<td width=\"152\"><strong>SPEAKER:<\/strong><\/td>\n<td width=\"508\"><strong>\u0398\u03b5\u03bf\u03c7\u03ac\u03c1\u03b7\u03c2 \u03a3\u03c4\u03b1\u03bc\u03b1\u03c4\u03ac\u03c4\u03bf\u03c2 , <\/strong>\u039a\u03b1\u03b8\u03b7\u03b3\u03b7\u03c4\u03ae\u03c2<\/p>\n<p>\u03a4\u03bc\u03ae\u03bc\u03b1 \u03a7\u03b7\u03bc\u03b5\u03af\u03b1\u03c2, \u03a0\u03b1\u03bd\u03b5\u03c0\u03b9\u03c3\u03c4\u03ae\u03bc\u03b9\u03bf \u03a0\u03b1\u03c4\u03c1\u03ce\u03bd<\/td>\n<\/tr>\n<tr>\n<td width=\"152\"><strong>SUBJECT:<\/strong><\/td>\n<td width=\"508\"><strong>Hybrid Magnetic Nanomaterials from the Deposition of Single-Molecule Magnets on Functional Substrates<\/strong><\/td>\n<\/tr>\n<tr>\n<td width=\"152\"><strong>LANGUAGE: <\/strong><\/td>\n<td width=\"508\"><strong>Greek, with slides in English<\/strong><\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p><strong>ABSTRACT<\/strong><\/p>\n<p>Quantum technologies might result in revolutionary improvements in terms of capacity, sensitivity and speed, and will be the decisive factor for success in many industries and markets. Molecular quantum spintronics is a relatively new research area which requires the advanced knowledge of many interdisciplinary fields, such as synthetic chemistry, physics, materials science and theory. The idea is to fabricate molecule-based devices to read and manipulate the spin states of the molecules and carry out basic quantum operations. One of the most appealing schemes involve the synthesis of chemically and structurally stable single-molecule magnets (SMMs), and the study of their interactions with functional substrates (i.e., graphene, carbon nanotubes, fullerenes, MoS2, nanoparticles, and MOFs) to enable surface-state spintronics and electrical spin manipulation. To achieve the fabrication of molecular compounds on a functional surface, two main approaches have been developed, namely the weak- or non-covalent method and the strong- or covalent (chemisorption) method. Non-covalent functionalization (physisorption or encapsulation methods) is achieved with molecules lacking a specific functional group to react with the surface but having a backbone that induces weak interactions with it (i.e., van der Waals or electrostatic interactions). Covalent linking often requires molecular functionalization and subsequently grafting of the resulting molecules on selected surfaces. We herein present our efforts toward: (a) the synthesis and characterization of new and high-performance SMMs using a molecular engineering approach, and (b) the deposition of selected SMMs on functional substrates for the preparation hybrid magnetic nanomaterials. The resulting inorganic and hybrid magnetic materials have been characterized with a variety of spectroscopic, physicochemical and electronic microscopy techniques, such as IR, UV\/Vis, XPS, XRD, Raman, MS, TGA, a HR-TEM, and SQUID.<\/p>\n<p>&nbsp;<\/p>\n<p><strong>Short CV<\/strong><\/p>\n<p>\u039f \u03ba. \u0398\u03b5\u03bf\u03c7\u03ac\u03c1\u03b7\u03c2 \u03a3\u03c4\u03b1\u03bc\u03b1\u03c4\u03ac\u03c4\u03bf\u03c2 \u03b5\u03af\u03bd\u03b1\u03b9 \u039a\u03b1\u03b8\u03b7\u03b3\u03b7\u03c4\u03ae\u03c2 \u0391\u03bd\u03cc\u03c1\u03b3\u03b1\u03bd\u03b7\u03c2 \u03a7\u03b7\u03bc\u03b5\u03af\u03b1\u03c2 \u03c3\u03c4\u03bf \u03a4\u03bc\u03ae\u03bc\u03b1 \u03a7\u03b7\u03bc\u03b5\u03af\u03b1\u03c2 \u03c4\u03bf\u03c5 \u03a0\u03b1\u03bd\u03b5\u03c0\u03b9\u03c3\u03c4\u03b7\u03bc\u03af\u03bf\u03c5 \u03a0\u03b1\u03c4\u03c1\u03ce\u03bd \u03ba\u03b1\u03b9 \u03c0\u03c1\u03ce\u03b7\u03bd \u03bc\u03ad\u03bb\u03bf\u03c2 \u0394\u0395\u03a0 (\u0395\u03c0\u03af\u03ba\u03bf\u03c5\u03c1\u03bf\u03c2 \u03ba\u03b1\u03b9 \u0391\u03bd\u03b1\u03c0\u03bb\u03b7\u03c1\u03c9\u03c4\u03ae\u03c2 \u039a\u03b1\u03b8\u03b7\u03b3\u03b7\u03c4\u03ae\u03c2) \u03c3\u03c4\u03bf \u03a4\u03bc\u03ae\u03bc\u03b1 \u03a7\u03b7\u03bc\u03b5\u03af\u03b1\u03c2 \u03c4\u03bf\u03c5 Brock University (Ontario, Canada). \u0397 \u03b5\u03c1\u03b5\u03c5\u03bd\u03b7\u03c4\u03b9\u03ba\u03ae \u03c4\u03bf\u03c5 \u03b4\u03c1\u03b1\u03c3\u03c4\u03b7\u03c1\u03b9\u03cc\u03c4\u03b7\u03c4\u03b1 \u03b5\u03c3\u03c4\u03b9\u03ac\u03b6\u03b5\u03c4\u03b1\u03b9 \u03ba\u03c5\u03c1\u03af\u03c9\u03c2 \u03c3\u03c4\u03b7 \u03c3\u03cd\u03bd\u03b8\u03b5\u03c3\u03b7, \u03c4\u03bf \u03b4\u03bf\u03bc\u03b9\u03ba\u03cc, \u03c6\u03b1\u03c3\u03bc\u03b1\u03c4\u03bf\u03c3\u03ba\u03bf\u03c0\u03b9\u03ba\u03cc \u03ba\u03b1\u03b9 \u03c6\u03c5\u03c3\u03b9\u03ba\u03bf\u03c7\u03b7\u03bc\u03b9\u03ba\u03cc \u03c7\u03b1\u03c1\u03b1\u03ba\u03c4\u03b7\u03c1\u03b9\u03c3\u03bc\u03cc \u03b1\u03bd\u03cc\u03c1\u03b3\u03b1\u03bd\u03c9\u03bd 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Chemical Society) \u03ba\u03b1\u03b9 \u00abHumboldt Research Fellowship for Experienced Researchers\u00bb\u00a0 \u03b1\u03c0\u03cc \u03c4\u03bf Alexander von Humboldt Foundation. \u0397 \u03b5\u03c1\u03b5\u03c5\u03bd\u03b7\u03c4\u03b9\u03ba\u03ae \u03b4\u03c1\u03b1\u03c3\u03c4\u03b7\u03c1\u03b9\u03cc\u03c4\u03b7\u03c4\u03b1 \u03c4\u03bf\u03c5 \u03ba. \u03a3\u03c4\u03b1\u03bc\u03b1\u03c4\u03ac\u03c4\u03bf\u03c5 \u03c9\u03c2 \u03b1\u03c5\u03c4\u03bf\u03b4\u03cd\u03bd\u03b1\u03bc\u03bf\u03c2 \u03b5\u03c1\u03b5\u03c5\u03bd\u03b7\u03c4\u03ae\u03c2 \u03ad\u03c7\u03b5\u03b9 \u03c7\u03c1\u03b7\u03bc\u03b1\u03c4\u03bf\u03b4\u03bf\u03c4\u03b7\u03b8\u03b5\u03af \u03b1\u03c0\u03cc \u03c4\u03b1: Natural Sciences and Engineering Research Council (NSERC) of Canada, Ontario Ministry of Research and Innovation, NSERC Research Tools and Instruments, \u03c4\u03bf \u0395\u03c0\u03b9\u03c7\u03b5\u03b9\u03c1\u03b7\u03c3\u03b9\u03b1\u03ba\u03cc \u03a0\u03c1\u03cc\u03b3\u03c1\u03b1\u03bc\u03bc\u03b1 \u00ab\u0391\u03bd\u03ac\u03c0\u03c4\u03c5\u03be\u03b7 \u0391\u03bd\u03b8\u03c1\u03ce\u03c0\u03b9\u03bd\u03bf\u03c5 \u0394\u03c5\u03bd\u03b1\u03bc\u03b9\u03ba\u03bf\u03cd, \u0395\u03ba\u03c0\u03b1\u03af\u03b4\u03b5\u03c5\u03c3\u03b7 \u03ba\u03b1\u03b9 \u0394\u03b9\u03b1 \u0392\u03af\u03bf\u03c5 \u039c\u03ac\u03b8\u03b7\u03c3\u03b7 2014-2020\u00bb, \u03ba\u03b1\u03b8\u03ce\u03c2 \u03ba\u03b1\u03b9 \u03b1\u03c0\u03cc \u0399\u03b4\u03b9\u03c9\u03c4\u03b9\u03ba\u03bf\u03cd\u03c2 \u03c6\u03bf\u03c1\u03b5\u03af\u03c2.<\/p>\n","protected":false},"author":11,"featured_media":31935,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_exactmetrics_skip_tracking":false,"_exactmetrics_sitenote_active":false,"_exactmetrics_sitenote_note":"","_exactmetrics_sitenote_category":0,"site-sidebar-layout":"default","site-content-layout":"","ast-site-content-layout":"default","site-content-style":"default","site-sidebar-style":"default","ast-global-header-display":"","ast-banner-title-visibility":"","ast-main-header-display":"","ast-hfb-above-header-display":"","ast-hfb-below-header-display":"","ast-hfb-mobile-header-display":"","site-post-title":"","ast-breadcrumbs-content":"","ast-featured-img":"","footer-sml-layout":"","theme-transparent-header-meta":"default","adv-header-id-meta":"","stick-header-meta":"default","header-above-stick-meta":"","header-main-stick-meta":"","header-below-stick-meta":"","astra-migrate-meta-layouts":"set","ast-page-background-enabled":"default","ast-page-background-meta":{"desktop":{"background-color":"","background-image":"","background-repeat":"repeat","background-position":"center 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href=\"https:\/\/www.iceht.forth.gr\/en\/events\/hybrid-magnetic-nanomaterials-from-the-deposition-of-single-molecule-magnets-on-functional-substrates\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Hybrid Magnetic Nanomaterials from the Deposition of Single-Molecule Magnets on Functional Substrates - FORTH \/ ICE-HT\" \/>\n<meta property=\"og:description\" content=\"SPEAKER: \u0398\u03b5\u03bf\u03c7\u03ac\u03c1\u03b7\u03c2 \u03a3\u03c4\u03b1\u03bc\u03b1\u03c4\u03ac\u03c4\u03bf\u03c2 , \u039a\u03b1\u03b8\u03b7\u03b3\u03b7\u03c4\u03ae\u03c2 \u03a4\u03bc\u03ae\u03bc\u03b1 \u03a7\u03b7\u03bc\u03b5\u03af\u03b1\u03c2, \u03a0\u03b1\u03bd\u03b5\u03c0\u03b9\u03c3\u03c4\u03ae\u03bc\u03b9\u03bf \u03a0\u03b1\u03c4\u03c1\u03ce\u03bd SUBJECT: Hybrid Magnetic Nanomaterials from the Deposition of Single-Molecule Magnets on Functional Substrates LANGUAGE: Greek, with slides in English ABSTRACT Quantum technologies might result in revolutionary improvements in terms of capacity, sensitivity and speed, and will be the decisive factor for success in many industries and [&hellip;]\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.iceht.forth.gr\/en\/events\/hybrid-magnetic-nanomaterials-from-the-deposition-of-single-molecule-magnets-on-functional-substrates\/\" \/>\n<meta property=\"og:site_name\" content=\"FORTH \/ ICE-HT\" \/>\n<meta property=\"article:modified_time\" content=\"2024-05-15T12:08:04+00:00\" \/>\n<meta property=\"og:image\" content=\"https:\/\/www.iceht.forth.gr\/wp-content\/uploads\/default_img\/def_seminar.jpg\" \/>\n\t<meta property=\"og:image:width\" content=\"2048\" \/>\n\t<meta property=\"og:image:height\" content=\"1365\" \/>\n\t<meta property=\"og:image:type\" content=\"image\/jpeg\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:label1\" content=\"Est. reading time\" \/>\n\t<meta name=\"twitter:data1\" 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