自旋交叉化合物协同性的结构见解。

IF 1.3 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
H Shahed, N Sharma, M Angst, J Voigt, J Perßon, P Prakash, K W Törnroos, D Chernyshov, H Gildenast, M Ohl, G Saffarini, A Grzechnik, K Friese
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引用次数: 0

摘要

自旋交叉(SCO)化合物是具有广泛工业应用前景的材料。然而,对它们的转变性质及其对物理性质的影响的基本理解仍在热烈探索中;它们转变的微观知识对于调整它们的性质至关重要。本文试图通过单晶X射线衍射、磁化和DSC测量,将SCO化合物Fe(PM-Bia)2(NCS)2(PM=N-2'-吡啶亚甲基和Bia=4-氨基联苯)的正交和单斜多晶型的宏观物理性质的变化与微观结构变化相关联。讨论了宏观性质对协同性的依赖性,强调了氢键、π-π和范德华相互作用的作用。基于Slichter-Drickamer模型对熵、焓和协同性进行了数值计算。基于磁化强度对温度扫描速率的依赖性,探讨了磁性能的粒度依赖性以及两种多晶型的热交换和动力学行为,并提出了计算非平衡自旋相分数的理论模型。还报道了正交多晶型的扫描速率依赖性两步行为,而单斜多晶型不存在这种行为。此外,研究发现,同步加速器辐射的辐射剂量影响了自旋交叉过程,并将过渡区转移到较低的温度,这意味着自旋交叉可以随着辐射损伤而调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structural insight into the cooperativity of spin crossover compounds.

Structural insight into the cooperativity of spin crossover compounds.

Structural insight into the cooperativity of spin crossover compounds.

Structural insight into the cooperativity of spin crossover compounds.

Spin-crossover (SCO) compounds are promising materials for a wide variety of industrial applications. However, the fundamental understanding of their nature of transition and its effect on the physical properties are still being fervently explored; the microscopic knowledge of their transition is essential for tailoring their properties. Here an attempt is made to correlate the changes in macroscopic physical properties with microscopic structural changes in the orthorhombic and monoclinic polymorphs of the SCO compound Fe(PM-Bia)2(NCS)2 (PM = N-2'-pyridylmethylene and Bia = 4-aminobiphenyl) by employing single-crystal X-ray diffraction, magnetization and DSC measurements. The dependence of macroscopic properties on cooperativity, highlighting the role of hydrogen bonding, π-π and van der Waals interactions is discussed. Values of entropy, enthalpy and cooperativity are calculated numerically based on the Slichter-Drickamer model. The particle size dependence of the magnetic properties is probed along with the thermal exchange and the kinetic behavior of the two polymorphs based on the dependence of magnetization on temperature scan rate and a theoretical model is proposed for the calculation of the non-equilibrium spin-phase fraction. Also a scan-rate-dependent two-step behavior observed for the orthorhombic polymorph, which is absent for the monoclinic polymorph, is reported. Moreover, it is found that the radiation dose from synchrotron radiation affects the spin-crossover process and shifts the transition region to lower temperatures, implying that the spin crossover can be tuned with radiation damage.

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来源期刊
Acta crystallographica Section B, Structural science, crystal engineering and materials
Acta crystallographica Section B, Structural science, crystal engineering and materials CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
3.60
自引率
5.30%
发文量
0
期刊介绍: Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials publishes scientific articles related to the structural science of compounds and materials in the widest sense. Knowledge of the arrangements of atoms, including their temporal variations and dependencies on temperature and pressure, is often the key to understanding physical and chemical phenomena and is crucial for the design of new materials and supramolecular devices. Acta Crystallographica B is the forum for the publication of such contributions. Scientific developments based on experimental studies as well as those based on theoretical approaches, including crystal-structure prediction, structure-property relations and the use of databases of crystal structures, are published.
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