Moledo Vicente Guedes Anderson, Sodré de Abreu Leandro, Maldonado Igor Antunes Vogel, Fernandes William Silva, Cardozo Thiago Messias, A Allão Cassaro Rafael, Scarpellini Marciela, Poneti Giordano
Instituto de Química, Universidade Federal do Rio de Janeiro Rio de Janeiro RJ 21941-909 Brazil
RSC Adv. 2023 Jul 4;13(29):20050-20057. doi: 10.1039/d3ra03235c. eCollection 2023 Jun 29.
This work reports the synthesis, structural, spectroscopic and magnetic investigation of two complexes, [Co(bmimapy)(3,5-DTBCat)]PF·HO (1) and [Co(bmimapy)(TCCat)]PF·HO (2), where bmimapy is an imidazolic tetradentate ancillary ligand and 3,5-DTBCat and TCCat are the 3,5-di--butyl-catecholate and tetrachlorocatecholate anions, respectively. Their structures have been elucidated using single crystal X-ray diffraction, showing a pseudo-octahedral cobalt ion bound to a chelating dioxolene ligand and the ancillary bmimapy ligand in a folded conformation. Magnetometry displayed an entropy-driven, incomplete, Valence Tautomeric (VT) process for 1 in the 300-380 K temperature range, while 2 displayed a temperature independent, diamagnetic low-spin cobalt(iii)-catecholate charge distribution. This behaviour was interpreted on the basis of the cyclic voltammetric analysis, allowing the estimation of the free energy difference associated with the VT interconversion of +8 and +96 kJ mol for 1 and 2, respectively. A DFT analysis of this free energy difference highlighted the ability of the methyl-imidazole pendant arm of bmimapy favouring the onset of the VT phenomenon. This work introduces the imidazolic bmimapy ligand to the scientific community working in the field of valence tautomerism, increasing the library of ancillary ligands to prepare temperature switchable molecular magnetic materials.
本工作报道了两种配合物[Co(bmimapy)(3,5 - DTBCat)]PF·HO (1)和[Co(bmimapy)(TCCat)]PF·HO (2)的合成、结构、光谱和磁性研究,其中bmimapy是一种咪唑型四齿辅助配体,3,5 - DTBCat和TCCat分别是3,5 - 二叔丁基 - 儿茶酚阴离子和四氯儿茶酚阴离子。通过单晶X射线衍射阐明了它们的结构,显示出一个伪八面体钴离子与一个螯合二氧戊环配体以及呈折叠构象的辅助配体bmimapy相连。磁性测量表明,在300 - 380 K温度范围内,配合物1存在熵驱动的、不完全的价态互变异构(VT)过程,而配合物2呈现出与温度无关的抗磁性低自旋钴(III)-儿茶酚电荷分布。基于循环伏安分析对这种行为进行了解释,分别估算出配合物1和2与VT互变相关的自由能差为 +8和 +96 kJ mol。对该自由能差的密度泛函理论(DFT)分析突出了bmimapy的甲基咪唑侧链有利于VT现象发生的能力。这项工作将咪唑型bmimapy配体引入到价态互变异构领域的科研群体中,增加了用于制备温度可切换分子磁性材料的辅助配体库。