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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Heteroatom substitution effects in spin crossover dinuclear complexes
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Heteroatom substitution effects in spin crossover dinuclear complexes

机译:旋转交叉二核配合物中的杂原子取代作用

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摘要

We probe the effect of heteroatom substitution on the spin crossover (SCO) properties of dinuclear materials of the type [Fe-2(NCX)(4)(R-trz)(5)]S (X = S, Se; S = solvent; R-trz = (E)-N-(furan-2-ylmethylene)-4H-1,2,4-triazol-4-amine (furtrz); (E)-N-(thiophen-2-ylmethylene)-4H-1,2,4-triazole-4-amine (thtrz)). For the furtrz family ([Fe-2(NCX)(4)(furtrz)(5)]furtrzMeOH; X = S (furtrz-S) and X = Se (furtrz-Se)) gradual and incomplete one-step SCO transitions are observed (furtrz-S (T-1/2 = 172 K) and furtrz-Se (T-1/2 = 205 K)) and a structural evolution from [HS-HS] to [HS-LS] per dinuclear species. Contrasting this, within the thtrz family ([Fe-2(NCX)(4)(thtrz)(5)]4MeOH; X = S (thtrz-S) and X = Se (thtrz-Se)) more varied SCO transitions are observed, with thtrz-S being SCO-inactive (high spin) and thtrz-Se showing a rare complete two-step SCO transition (T-1/2(1,T-2) = 170, 200 K) in which the Fe-II sites transition from [HS-HS] to [HS-LS] to [LS-LS] per dinuclear unit with no long range ordering of spin-states at the intermediate plateau. Detailed structure-function analyses have been conducted within this growing dinuclear family to rationalise these diverse spin-switching properties.
机译:我们探讨杂原子取代对[Fe-2(4)(4)(R-Trz)(5)] S(x = s,se; s =的分核材料的旋转交叉(SCO)性能的影响溶剂; R-TRZ =(E)-N-(呋喃-2-基亚甲基)-4H-1,2,4-三唑-4-胺(furtrz);(E)-N-(噻吩-2-基亚甲基) -4H-1,2,4-三唑-4-胺(THTRZ))。对于Furtrz家族([Fe-2(NCX)(4)(Furtrz)(5)] furtrzmeoh; x = s(furtrz-s)和x = se(furtrz-se))逐渐和不完整的一步的SCO转换观察到(Furtrz-s(T-1/2 = 172k)和Furtrz-Se(T-1/2 = 205 k))和每条核物种[HS-HS]的结构演化和来自[HS-LS]的结构演变。对比Thtrz家族([Fe-2(NCX)(4)(4)(ThtrZ)(5)] 4MeOH; X = S(ThtrZ-S)和X = SE(THTRZ-SE))更加多样化的SCO转换观察到THTRZ-S的SCO-无活性(高旋转)和THTRZ-SE,显示稀有完整的两步SCO转换(T-1/2(1,T-2)= 170,200k),其中FE -II站点从[HS-HS]到[HS-LS]到[LS-LS]对[LS-LS],在中间高原上没有长距离排序的旋转状态。在这种不断增长的二维族中进行了详细的结构函数分析,以合理化这些不同的自旋开关性能。

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