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dc.contributor.authorPapatriantafyllopoulou, Constantinaen
dc.contributor.authorMoushi, Eleni E.en
dc.contributor.authorChristou, Georgeen
dc.contributor.authorTasiopoulos, Anastasios J.en
dc.creatorPapatriantafyllopoulou, Constantinaen
dc.creatorMoushi, Eleni E.en
dc.creatorChristou, Georgeen
dc.creatorTasiopoulos, Anastasios J.en
dc.date.accessioned2019-11-21T06:22:01Z
dc.date.available2019-11-21T06:22:01Z
dc.date.issued2016
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/55960
dc.description.abstractIn this review, aspects of the syntheses, structures and magnetic properties of giant 3d and 3d/4f paramagnetic metal clusters in moderate oxidation states are discussed. The term "giant clusters" is used herein to denote metal clusters with nuclearity of 30 or greater. Many synthetic strategies towards such species have been developed and are discussed in this paper. Attempts are made to categorize some of the most successful methods to giant clusters, but it will be pointed out that the characteristics of the crystal structures of such compounds including nuclearity, shape, architecture, etc. are unpredictable depending on the specific structural features of the included organic ligands, reaction conditions and other factors. The majority of the described compounds in this review are of special interest not only for their fascinating nanosized structures but also because they sometimes display interesting magnetic phenomena, such as ferromagnetic exchange interactions, large ground state spin values, single-molecule magnetism behaviour or impressively large magnetocaloric effects. In addition, they often possess the properties of both the quantum and the classical world, and thus their systematic study offers the potential for the discovery of new physical phenomena, as well as a better understanding of the existing ones. The research field of giant clusters is under continuous evolution and their intriguing structural characteristics and magnetism properties that attract the interest of synthetic Inorganic Chemists promise a brilliant future for this class of compounds. © 2016 The Royal Society of Chemistry.en
dc.sourceChemical Society Reviewsen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84961196170&doi=10.1039%2fc5cs00590f&partnerID=40&md5=823a09165e9aefb7c4ef549f9430e6af
dc.titleFilling the gap between the quantum and classical worlds of nanoscale magnetism: Giant molecular aggregates based on paramagnetic 3d metal ionsen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1039/c5cs00590f
dc.description.volume45
dc.description.issue6
dc.description.startingpage1597
dc.description.endingpage1628
dc.author.faculty002 Σχολή Θετικών και Εφαρμοσμένων Επιστημών / Faculty of Pure and Applied Sciences
dc.author.departmentΤμήμα Χημείας / Department of Chemistry
dc.type.uhtypeArticleen
dc.description.notes<p>Cited By :24</p>en
dc.source.abbreviationChem.Soc.Rev.en
dc.contributor.orcidTasiopoulos, Anastasios J. [0000-0002-4804-3822]
dc.contributor.orcidPapatriantafyllopoulou, Constantina [0000-0002-5652-7747]
dc.gnosis.orcid0000-0002-4804-3822
dc.gnosis.orcid0000-0002-5652-7747


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