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通过惰性非晶态分子掺杂剂将高自旋铁(II)配合物激活至热自旋交叉。

Activating a high-spin iron(II) complex to thermal spin-crossover with an inert non-isomorphous molecular dopant.

作者信息

Halcrow Malcolm A, Vasili Hari Babu, Pask Christopher M, Kulak Alexander N, Cespedes Oscar

机构信息

School of Chemistry, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK.

School of Physics and Astronomy, University of Leeds, W. H. Bragg Building, Leeds, LS2 9JT, UK.

出版信息

Dalton Trans. 2024 Apr 23;53(16):6983-6992. doi: 10.1039/d4dt00443d.

Abstract

[Fe(bpp)][ClO] (bpp = 2,6-bis{pyrazol-1-yl}pyridine; monoclinic, 2/) is high-spin between 5-300 K, and crystallises with a highly distorted molecular geometry that lies along the octahedral-trigonal prismatic distortion pathway. In contrast, [Ni(bpp)][ClO] (monoclinic, 2) adopts a more regular, near-octahedral coordination geometry. Gas phase DFT minimisations (ω-B97X-D/6-311G**) of [M(bpp)] complexes show the energy penalty associated with that coordination geometry distortion runs as M = Fe (HS) ≈ Mn (HS) < Zn ≈ Co (HS) ≲ Cu ≪ Ni ≪ Ru (LS; HS = high-spin, LS = low-spin). Slowly crystallised solid solutions [FeNi(bpp)][ClO] with = 0.53 (1a) and 0.74 (2a) adopt the 2 lattice, while = 0.87 (3a) and 0.94 (4a) are mixed-phase materials with the high-spin 2/ phase as the major component. These materials exhibit thermal spin-transitions at = 250 ± 1 K which occurs gradually in 1a, and abruptly and with narrow thermal hysteresis in 2a-4a. The transition proceeds to 100% completeness in 1a and 2a; that is, the 26% Ni doping in 2a is enough to convert high-spin [Fe(bpp)][ClO] into a cooperative, fully SCO-active material. These results were confirmed crystallographically for 1a and 2a, which revealed similarities and differences between these materials and the previously published [FeNi(bpp)][BF] series. Rapidly precipitated powders with the same compositions (1b-4b) mostly resemble 1a-4a, except that 2b is a mixed-phase material; 2b-4b also contain a fraction of amorphous solid in addition to the two crystal phases. The largest iron fraction that can be accommodated by the 2 phase in this system is 0.7 ± 0.1.

摘要

[Fe(bpp)][ClO](bpp = 2,6 - 双{吡唑 - 1 - 基}吡啶;单斜晶系,2/)在5 - 300 K之间为高自旋态,其晶体结构具有高度扭曲的分子几何形状,处于八面体 - 三角棱柱体畸变路径上。相比之下,[Ni(bpp)][ClO](单斜晶系,2)采用更规则的近八面体配位几何形状。[M(bpp)]配合物的气相DFT最小化(ω - B97X - D/6 - 311G**)表明,与该配位几何形状畸变相关的能量惩罚顺序为M = Fe(高自旋)≈ Mn(高自旋)< Zn ≈ Co(高自旋)≲ Cu ≪ Ni ≪ Ru(低自旋;HS = 高自旋,LS = 低自旋)。缓慢结晶的固溶体[FeNi(bpp)][ClO],其中 = 0.53(1a)和0.74(2a)采用2晶格,而 = 0.87(3a)和0.94(4a)是混合相材料,以高自旋2/相为主要成分。这些材料在 = 250 ± 1 K时表现出热自旋转变,在1a中转变逐渐发生,在2a - 4a中转变突然且热滞回窄。在1a和2a中转变进行到100%完全;也就是说,2a中26%的Ni掺杂足以将高自旋的[Fe(bpp)][ClO]转变为一种协同的、完全具有自旋交叉活性的材料。对于1a和2a,这些结果通过晶体学得到证实,揭示了这些材料与先前发表的[FeNi(bpp)][BF]系列之间的异同。具有相同组成的快速沉淀粉末(1b - 4b)大多类似于1a - 4a,不同之处在于2b是混合相材料;2b - 4b除了两个晶相外还含有一部分非晶态固体。在该体系中,2相能够容纳的最大铁含量分数为0.7 ± 0.1。

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