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首页> 外文期刊>Crystal growth & design >Structural and Magnetic Studies on Two-Dimensional Square Planar Lattice Magnets Composed of Organic Radical Cation Salts (Benzo[1,2-d:4,5-d′]Bis[1,3,2]dithiazolyl-2-zolium)·X (X = TlBr_4, TlI_4, and InI_4)
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Structural and Magnetic Studies on Two-Dimensional Square Planar Lattice Magnets Composed of Organic Radical Cation Salts (Benzo[1,2-d:4,5-d′]Bis[1,3,2]dithiazolyl-2-zolium)·X (X = TlBr_4, TlI_4, and InI_4)

机译:有机自由基阳离子盐(苯并[1,2-d:4,5-d']双[1,3,2]二噻唑基-2-唑鎓)·X组成的二维方形平面晶格磁铁的结构和磁性研究(X = TlBr_4,TlI_4和InI_4)

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The magnetostructural correlation was investigated in three organic radical cation salts based on the monocation of benzo[1,2-d:4,5-d′]bis[1,3,2]dithiazolyl (BBDTA), which is an S = 1/2 system, and the tetrahedral diamagnetic monoanions, TlBr_4~? (1), TlI_4~? (2), and InI_4~? (3), by analysis of their crystal structures and magnetic properties. X-ray diffraction studies showed that these three salts consisted of alternatively stacked layers of the diamagnetic anions layers and the organic cation layers in which BBDTA~+ formed a square planar lattice, which is rare in organic radical crystals. 1 exhibited canted antiferromagnetism with an antiferromagnetic interaction in the organic cation layer below 11.6 K, whereas 2 and 3 showed metamagnetism with a ferromagnetic interaction in the organic cation layer below 8.9 and 11.3 K, respectively. Their intra- and interlayer magnetic coupling constants, 2J/kB and zJ′/kB, were estimated to be ?11.2 and ?4.1 K for 1, +11.4 and ?3.7 K for 2, and +12.8 and ?2.3 K for 3, respectively, using a two-dimensional square planar S = 1/2 Heisenberg model with mean field approximation. A consideration of the molecular orbitals showed that the differences in the intralayer magnetic interactions in 1 and, 2 or 3, originate in the molecular orientation of BBDTA~+ in the organic cation layer. Overlap relation between the singly occupied molecular orbitals (SOMOs) of the nearest neighbor BBDTA~+ pairs was found in 1, whereas an orthogonal relation was found in 2 and 3.
机译:基于苯并[1,2-d:4,5-d']双[1,3,2]二噻唑基(BBDTA)的单阳离子,研究了三种有机自由基阳离子盐的磁结构相关性,S = 1 / 2体系和四面体抗磁性单阴离子TlBr_4〜? (1),TlI_4〜? (2)和InI_4〜? (3)通过分析其晶体结构和磁性能。 X射线衍射研究表明,这三种盐由反磁性阴离子层和有机阳离子层的交替堆叠层组成,其中BBDTA +形成正方形平面晶格,这在有机自由基晶体中是罕见的。 1展示了倾斜的反铁磁性,在低于11.6 K的有机阳离子层中具有反铁磁相互作用,而2和3展示了偏磁性,在低于8.9和11.3 K的有机阳离子层中具有铁磁相互作用。它们的层内和层间磁耦合常数2J / kB和zJ'/ kB估计分别为1,11.2和4.1K,2 +11.4和3.7K,3 +12.8和2.3K。分别使用具有均场近似的二维正方形平面S = 1/2 Heisenberg模型。对分子轨道的考虑表明,在1和2或3中层内磁相互作用的差异源自有机阳离子层中BBDTA +的分子取向。在1中发现最邻近的BBDTA〜+对的单占据分子轨道(SOMO)之间的重叠关系,而在2和3中发现正交关系。

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