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Chemistry


Title:Conducting Molecular Nanomagnet of Dy(III) with Partially Charged TCNQ Radicals
Author(s):Zhang X; Xie H; Ballesteros-Rivas M; Woods TJ; Dunbar KR;
Address:"Department of Chemistry, Texas A&M University, P.O. Box 30012, College Station, TX, 77842-3012, USA"
Journal Title:Chemistry
Year:2017
Volume:20170510
Issue:31
Page Number:7448 - 7452
DOI: 10.1002/chem.201701590
ISSN/ISBN:1521-3765 (Electronic) 0947-6539 (Linking)
Abstract:"Bifunctional electrically conducting single-molecule magnets are highly promising platforms for non-volatile memory devices and quantum computing applications. The development of these molecular materials, however, has largely been hindered by the lack of straightforward synthetic methods. Herein a facile and modular approach is demonstrated for the realization of bifunctional materials that does not require electrochemical or chemical oxidation to obtain partially charged organic radicals. Magnetic and electrical conductivity studies reveal that the Dy(III) compound exhibits slow relaxation of the magnetization between 5.0-8.0 K and semiconducting behavior over the range 180-350 K. DC magnetic fields have been found to suppress the quantum tunneling of the magnetization and affect the spin-canted antiferromagnetic interactions"
Keywords:Tcnq dysprosium electrical conductivity magnetic properties single-molecule magnet pi-pi stacking interactions;
Notes:"PubMed-not-MEDLINEZhang, Xuan Xie, Haomiao Ballesteros-Rivas, Maria Woods, Toby J Dunbar, Kim R eng Germany 2017/04/13 Chemistry. 2017 Jun 1; 23(31):7448-7452. doi: 10.1002/chem.201701590. Epub 2017 May 10"

 
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