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Advanced ferromagnets

Donnio, B., Garcia-Vazquez, P., Gallani, J.-L., Guillon, D. and Terazzi, E. (2007) Dendronized Ferromagnetic Gold Nanopartides Self-Organized in a Thermotropic Cubic Phase. Advanced Materials, 19, 3534-3539. [Pg.396]

Buchachenko, A.L. (1990) Organic and molecular ferromagnetics advances and problems, Russ. Chem. Rev., 59,307-319. [Pg.243]

D conjugated arrays of ferromagnetically linked spin sites remain a topic of active pursuit, with modification due to advances since Malaga s proposal [ref 93] cf. Morita Y, Suzuki S, Sato K, Takui T. Nat Chem 2011 3 197-204. [Pg.163]

Sutter, J.R, Kahn, M.L., and Kahn, O. (1999) Conclusive demonstration of the ferromagnetic nature of the interaction between holmium(lll) and aminoxyl radicals. Advanced Materials, 11, 863-865. [Pg.401]

Lustrous white, hard, ferromagnetic metal face-centered Cubic crystals, mp 1555". bp (calc) 2837" (3110 K) D. R. Stull. G. C. Sinke, Thermodynamic Properties of the Elements, Advances in Chemistry Series 18 (A.C.S.. Washington, 1956). d 8-90. Heat capacity (25 ) 6.23 cal/g -atom/°C. Mohs hardness 3-8. Latent heat of fusion 73 cal/g. Electrical resistivity (20 ) 6.844 uohms-cm. E taq) Ni/Ni2 0.250 V. Stable in air at ordinary temp burns in oxygen, forming NiO not affected by water decomposes steam at a red heat. Slowly attacked by dil hydrochloric or sulfuric acid readily attacked by nitric acid. Not attacked by fused alkali hydroxides. [Pg.1027]


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See also in sourсe #XX -- [ Pg.173 ]




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