Pask Christopher M, Greatorex Sam, Kulmaczewski Rafal, Baldansuren Amgalanbaatar, McInnes Eric J L, Bamiduro Faith, Yamada Mihoko, Yoshinari Nobuto, Konno Takumi, Halcrow Malcolm A
School of Chemistry, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK.
School of Chemistry and Photon Science Institute, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Chemistry. 2020 Apr 9;26(21):4833-4841. doi: 10.1002/chem.202000101. Epub 2020 Mar 30.
Annealing [FeL ][BF ] ⋅2 H O (L=2,6-bis-[5-methyl-1H-pyrazol-3-yl]pyridine) affords an anhydrous material, which undergoes a spin transition at T =205 K with a 65 K thermal hysteresis loop. This occurs through a sequence of phase changes, which were monitored by powder diffraction in an earlier study. [CuL ][BF ] ⋅2 H O and [ZnL ][BF ] ⋅2 H O are not perfectly isostructural but, unlike the iron compound, they undergo single-crystal-to-single-crystal dehydration upon annealing. All the annealed compounds initially adopt the same tetragonal phase but undergo a phase change near room temperature upon re-cooling. The low-temperature phase of [CuL ][BF ] involves ordering of its Jahn-Teller distortion, to a monoclinic lattice with three unique cation sites. The zinc compound adopts a different, triclinic low-temperature phase with significant twisting of its coordination sphere, which unexpectedly becomes more pronounced as the crystal is cooled. Synchrotron powder diffraction data confirm that the structural changes in the anhydrous zinc complex are reproduced in the high-spin iron compound, before the onset of spin-crossover. This will contribute to the wide hysteresis in the spin transition of the iron complex. EPR spectra of copper-doped [Fe Cu L ][BF ] imply its low-spin phase contains two distinct cation environments in a 2:1 ratio.
对[FeL][BF]·2H₂O(L = 2,6 - 双 - [5 - 甲基 - 1H - 吡唑 - 3 - 基]吡啶)进行退火处理可得到一种无水材料,该材料在T = 205 K时发生自旋转变,热滞回线为65 K。这是通过一系列相变发生的,在早期研究中通过粉末衍射对这些相变进行了监测。[CuL][BF]·2H₂O和[ZnL][BF]·2H₂O并非完全同构,但与铁化合物不同的是,它们在退火时会发生单晶到单晶的脱水过程。所有退火后的化合物最初都采用相同的四方相,但在重新冷却至室温附近时会发生相变。[CuL][BF]的低温相涉及其 Jahn - Teller 畸变的有序化,形成具有三个独特阳离子位点的单斜晶格。锌化合物采用不同结构的三斜低温相,其配位球有显著扭曲,并且出人意料的是,随着晶体冷却,这种扭曲会更加明显。同步辐射粉末衍射数据证实,在自旋交叉开始之前,无水锌配合物中的结构变化在高自旋铁化合物中也会重现。这将导致铁配合物自旋转变中出现较宽的滞后现象。掺铜的[Fe₁₋ₓCuₓL][BF]的电子顺磁共振光谱表明其低自旋相包含两种比例为2:1的不同阳离子环境。