A ROOM-TEMPERATURE ORGANOMETALLIC MAGNET BASED ON PRUSSIAN BLUE

被引:1501
作者
FERLAY, S [1 ]
MALLAH, T [1 ]
OUAHES, R [1 ]
VEILLET, P [1 ]
VERDAGUER, M [1 ]
机构
[1] UNIV PARIS 11,INST ELECTR FONDAMENTALE,CNRS,URA 22,F-91405 ORSAY,FRANCE
关键词
D O I
10.1038/378701a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
THE rational design of molecular compounds that exhibit spontaneous magnetic ordering might enable one to tailor magnetic properties ties for specific applications in magnetic memory devices(1-4). In such materials synthesized previously(5-17), however, the underlying weak magnetic interactions are incapable of maintaining ordering at ambient temperatures. One remarkable exception is a compound derived from vanadium and tetracyanoethylene(18), but the material is amorphous and fragile, and consequently the molecular interactions responsible for its striking properties are not understood. Here we demonstrate another route to the synthesis of a room-temperature organometallic magnet, in which we combine a hexacyanometalate [M(CN)6](q-) with a Lewis acid L(p+). If L and M are transition-metal ions, then the orbital interactions in the resulting compound can be described by well understood principles(21-24), and it is therefore possible to choose the metals to tune the compound's magnetic properties-in particular, the magnetic ordering (Curie) temperature T-c(refs 21-26). We have synthesized a room-temperature magnetic material (T-c=315 K) that belongs to the Prussian blue family of compounds(27) (where M is chromium and L is vanadium), demonstrating that transition-metal hexacyano complexes are promising components for the construction of molecule-based high-T-c magnets.
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收藏
页码:701 / 703
页数:3
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[21]   Room temperature synthesis of high-entropy Prussian blue analogues [J].
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[22]   ROOM-TEMPERATURE ORGANOMETALLIC CHIRAL LIQUID-CRYSTALS - AZOXYMERCURY COMPLEXES [J].
OMENAT, A ;
GHEDINI, M .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1994, (11) :1309-1310
[23]   Designing Chiral Organometallic Nanosheets with Room-Temperature Multiferroicity and Topological Nodes [J].
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[24]   ORGANOMETALLIC CHEMISTRY PERFORMED IN ROOM-TEMPERATURE CHLOROALUMINATE MOLTEN-SALTS [J].
CARLIN, RT ;
SULLIVAN, T .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1991, 202 :97-ANYL
[25]   TOWARD A THEORY OF THE ROOM-TEMPERATURE ORGANOMETALLIC CHARGE-TRANSFER FERROMAGNET [J].
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HOFFMANN, R .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (02) :350-356
[26]   Improved Synthesis of the V(tetracyanoethylene)xuy(solvent) Room-Temperature Magnet: Doubling of the Magnetization at Room Temperature [J].
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Vazquez, C. ;
Zhou, P. .
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[27]   ROOM-TEMPERATURE PULSED OPERATION OF BLUE LASER-DIODES [J].
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OZAWA, M ;
NAKAYAMA, N ;
NAKANO, K ;
IKEDA, M ;
ISHIBASHI, A ;
MORI, Y .
ELECTRONICS LETTERS, 1994, 30 (05) :415-416
[28]   Local structural order in the disordered vanadium tetracyanoethylene room-temperature molecule-based magnet [J].
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Islam, Z ;
Lang, J ;
Kmety, C ;
Srajer, G ;
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Epstein, AJ ;
Miller, JS .
PHYSICAL REVIEW B, 2004, 70 (05) :054422-1
[29]   ROOM-TEMPERATURE [J].
CRAYTON, MA .
SCIENCE, 1980, 208 (4444) :552-552
[30]   Theoretical Calculations of Structure and Exchange Coupling of a Room-Temperature Molecular Magnet [J].
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Girtu, Mihai A. .
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