Díaz-Gallifa Pau, Fabelo Oscar, Pasán Jorge, Cañadillas-Delgado Laura, Rodríguez-Carvajal Juan, Lloret Francesc, Julve Miguel, Ruiz-Pérez Catalina
Laboratorio de Rayos X y Materiales Moleculares, Departamento de Física, Universidad de La Laguna, Tenerife , Avda. Astrofísico Francisco Sánchez s/n, E-38204, La Laguna, Tenerife Spain.
Inorg Chem. 2014 Jun 2;53(11):5674-83. doi: 10.1021/ic500443t. Epub 2014 May 15.
A novel cobalt(II) complex of formula [Co2(cbut)(H2O)3]n (1) (H4cbut = 1,2,3,4-cyclobutanetetracarboxylic acid) has been synthesized under hydrothermal conditions and its crystal structure has been determined by means of synchrotron radiation and neutron powder diffraction. The crystal structure of 1 consists of layers of cobalt(II) ions extending in the bc-plane which are pillared along the crystallographic a-axis through the skeleton of the cbut(4-) ligand. Three crystallographically independent cobalt(II) ions [Co(1), Co(2), and Co(3)] occur in 1. They are all six-coordinate with four carboxylate-oxygens [Co(1)-Co(3)] and two cis-[Co(1)] or trans-water molecules [Co(2) and Co(3)] building distorted octahedral surroundings. Regular alternating double oxo(carboxylate) [between Co(1) and Co(1a)] and oxo(carboxylate) plus one aqua and a syn-syn carboxylate bridges [between Co(1) and Co(2)] occur along the crystallographic b-axis, the values of the cobalt-cobalt separation being 3.1259(8) and 3.1555(6) Å, respectively. These chains are connected to the Co(3) atoms through the OCO carboxylate along the [011] direction leading to the organic-inorganic bc-layers with Co(1)-OCO(anti-syn)-Co(3) and Co(2)-OCO(anti-anti)-Co(3) distances of 5.750(2) and 4.872(1) Å. The shortest interlayer cobalt-cobalt separation through the cbut(4-) skeleton along the crystallographic a-axis is 7.028(2) Å. Variable-temperature magnetic susceptibility measurements show the occurrence of antiferromagnetic ordering with a Néel temperature of 5.0 K, followed by a field-induced ferromagnetic transition under applied dc fields larger than 1500 Oe. The magnetic structure of 1 has been elucidated at low temperatures in zero field by neutron powder diffraction measurements and was found to be formed by ferromagnetic chains running along the b-axis which are antiferromagnetically coupled with the Co(3) ions through the c-axis giving rise to noncompensated magnetic moments within each bc-layer (ferrimagnetic plane). The occurrence of an antitranslation operation between these layers produces a weak interlayer antiferromagnetic coupling along the a-axis which is overcome by dc fields greater than 1500 Oe resulting in a phase transition toward a ferromagnetic state (metamagnetic behavior).
通过水热法合成了一种新型的化学式为[Co₂(cbut)(H₂O)₃]ₙ (1)(H₄cbut = 1,2,3,4 - 环丁烷四羧酸)的钴(II)配合物,并利用同步辐射和中子粉末衍射确定了其晶体结构。1的晶体结构由在bc平面延伸且沿晶轴a通过cbut(4-)配体骨架支撑的钴(II)离子层组成。1中存在三个晶体学独立的钴(II)离子[Co(1)、Co(2)和Co(3)]。它们均为六配位,四个羧酸根氧原子[Co(1) - Co(3)]以及两个顺式[Co(1)]或反式水分子[Co(2)和Co(3)]构成扭曲的八面体环境。沿晶轴b方向规则交替出现双氧(羧酸根)[Co(1)和Co(1a)之间]以及氧(羧酸根)加一个水和一个顺 - 顺羧酸根桥[Co(1)和Co(2)之间],钴 - 钴间距值分别为3.1259(8) Å和3.1555(6) Å。这些链通过[011]方向的OCO羧酸根与Co(3)原子相连,形成具有Co(1) - OCO(反 - 顺) - Co(3)和Co(2) - OCO(反 - 反) - Co(3)间距分别为5.750(2) Å和4.872(1) Å的有机 - 无机bc层。沿晶轴a通过cbut(4-)骨架的最短层间钴 - 钴间距为7.028(2) Å。变温磁化率测量表明存在反铁磁有序,奈尔温度为5.0 K,随后在大于1500 Oe的直流磁场下发生场致铁磁转变。通过中子粉末衍射测量在零场低温下阐明了1的磁结构,发现其由沿b轴的铁磁链组成,这些链通过c轴与Co(3)离子反铁磁耦合,在每个bc层(亚铁磁平面)内产生未补偿的磁矩。这些层之间的反平移操作导致沿a轴存在弱的层间反铁磁耦合,当直流磁场大于1500 Oe时这种耦合被克服,从而导致向铁磁态的相变(变磁行为)。