吡嗪
化学
铬
三氟甲磺酸
反铁磁性
桥联配体
金属
基态
磁化率
磁铁
结晶学
凝聚态物理
立体化学
有机化学
原子物理学
物理
量子力学
催化作用
作者
Dandan Lou,Nathan J. Yutronkie,Itziar Oyarzabal,Long‐Fei Wang,Abhijit Adak,Vincent L. Nadurata,Rosa Diego,Elizaveta A. Suturina,Aaron Mailman,Pierre Dechambenoit,Mathieu Rouzières,Fabrice Wilhelm,А. Рогалев,Sébastien Bonhommeau,Corine Mathonière,Rodolphe Clérac
摘要
The attractive electronic properties of metal-pyrazine materials─electrical conductivity, magnetic order, and strong magnetic coupling─can be tuned in a wide range depending on the metal employed, as well as its ligand-imposed redox environment. Using solvent-directed synthesis to control the dimensionality of such systems, a discrete tetranuclear chromium(III) complex, exhibiting a rare example of bridging radical pyrazine, has been prepared from chromium(II) triflate and neutral pyrazine. The strong antiferromagnetic interaction between CrIII (S = 3/2) and radical pyrazine (S = 1/2) spins, theoretically estimated at about −932 K, leads to a thermally isolated ST = 4 ground state, which remains the only populated state observable even at room temperature.
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