Jabeur Wiem, Korb Marcus, Hamdi Mohamed, Holub Mariia, Princík Dávid, Zeleňák Vladimír, Sanchez-Coronilla Antonio, Shalash Marwan, Čižmár Erik, Naïli Houcine
Laboratory Physico Chemistry of the Solid State, Department of Chemistry, Faculty of Sciences of Sfax, Sfax University POBOX 1171 3000 Sfax Tunisia
The University of Western Australia, School of Molecular Sciences 35 Stirling Highway, Crawley Perth Western Australia 6009 Australia.
RSC Adv. 2024 Aug 12;14(34):25048-25061. doi: 10.1039/d4ra02149e. eCollection 2024 Aug 5.
A mononuclear cobalt(ii) complex [CHN][CoCl(CHN)] (I) was synthesized and structurally characterized. Single crystal X-ray diffraction analysis indicates that monometallic Co(ii) ions acted as coordination nodes in a distorted octahedral geometry, giving rise to a supramolecular architecture. The latter is made up of a ½ unit form composed of an anionic element [CoCl(CHN)] and one 2-amino-4-methylpyrimidinium cation [CHN]. The crystalline arrangement of this compound adopts the sandwich form where inorganic parts are sandwiched between the organic sheets following the [100] direction. More information regarding the structure hierarchy has been supplied based on Hirshfeld surface analysis; the X⋯H (X = N, Cl) interactions play a crucial role in stabilizing the self-assembly process of I, complemented by the intervention of π⋯π electrostatic interaction created between organic entities. Thermal analyses were carried out to study the thermal behavior process. Static magnetic measurements and calculations of compound I revealed the easy-axis anisotropy character of the central Co(ii) ion. Two-channel field-induced slow-magnetic relaxation was observed; the high-frequency channel is characterized by underbarrier relaxation with = 16.5 cm, and the low-frequency channel involves a direct relaxation process affected by the phonon-bottleneck effect.
合成并表征了单核钴(II)配合物[CHN][CoCl(CHN)](I)的结构。单晶X射线衍射分析表明,单金属Co(II)离子在扭曲的八面体几何结构中作为配位节点,形成了一种超分子结构。后者由一个由阴离子元素[CoCl(CHN)]和一个2-氨基-4-甲基嘧啶阳离子[CHN]组成的1/2单元形式构成。该化合物的晶体排列采用夹心形式,其中无机部分沿[100]方向夹在有机层之间。基于 Hirshfeld 表面分析提供了更多关于结构层次的信息;X⋯H(X = N,Cl)相互作用在稳定 I 的自组装过程中起着关键作用,有机实体之间产生的π⋯π静电相互作用也起到了辅助作用。进行了热分析以研究热行为过程。化合物 I 的静态磁测量和计算揭示了中心 Co(II)离子的易轴各向异性特征。观察到双通道场诱导的慢磁弛豫;高频通道的特征是具有 = 16.5 cm 的势垒下弛豫,低频通道涉及受声子瓶颈效应影响的直接弛豫过程。