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基于(氟苄基)吡啶鎓与[M(mnt)₂]单阴离子(M = Ni、Pd或Pt;mnt²⁻ = 马来二腈二硫醇盐)衍生物的准一维分子磁体:合成、晶体结构及磁性质

Quasi-one-dimensional molecular magnets based on derivatives of (fluorobenzyl)pyridinium with the [M(mnt)2] monoanion (M = Ni, Pd or Pt; mnt2- = maleonitriledithiolate): syntheses, crystal structures and magnetic properties.

作者信息

Ren X M, Nishihara S, Akutagawa T, Noro S, Nakamura T, Fujita W, Awaga K, Ni Z P, Xie J L, Meng Q J, Kremer R K

机构信息

Research Institute for Electronic Science, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Dalton Trans. 2006 Apr 28(16):1988-94. doi: 10.1039/b514278d. Epub 2006 Jan 23.

DOI:10.1039/b514278d
PMID:16609769
Abstract

The syntheses, structural characterizations and magnetic behaviors of three new complexes, 1-(3',4',5'-trifluorobenzyl)pyridinium [M(mnt)2]- [M = Ni (1), Pd (2) or Pt (3)], are reported. These complexes are isomorphous and their prominent structural character is that the [M(mnt)2]- anions form columnar stacks, in which the dimerization was observed. Complexes 2 and 3 are diamagnetic, while 1 possesses an energy gap of 2474 K. For crystal 4, 1-(4'-fluorobenzyl)pyridinium [Ni(mnt)2] (its structure and magnetic susceptibility were briefly reported earlier), the magnetic behavior can be divided into two regimes, namely, weakly ferromagnetic coupling above 93 K and strongly antiferromagnetic coupling below 93 K. A transition occurs at 93 K which switches the magnetic exchange nature from ferromagnetic to antiferromagnetic. A sharp thermal abnormality with lambda-shape, associated with the transition, appears from its heat capacity measurement to indicate that the transition is first order. The temperature dependences of the superlattice diffractions revealed the existence of the pretransitional phenomena up to at least 140 K. The unusual magnetic behavior of 4, such as the origin of the ferromagnetic interaction in the high temperature phase and what causes the spin transition, are discussed further.

摘要

报道了三种新型配合物1-(3',4',5'-三氟苄基)吡啶鎓[M(mnt)₂]-[M = Ni (1)、Pd (2) 或Pt (3)]的合成、结构表征和磁行为。这些配合物是同晶型的,其突出的结构特征是[M(mnt)₂]-阴离子形成柱状堆积,其中观察到二聚化。配合物2和3是抗磁性的,而1具有2474 K的能隙。对于晶体4,1-(4'-氟苄基)吡啶鎓[Ni(mnt)₂](其结构和磁化率先前已简要报道),磁行为可分为两个区域,即93 K以上为弱铁磁耦合,93 K以下为强反铁磁耦合。在93 K处发生转变,该转变将磁交换性质从铁磁转变为反铁磁。从其热容测量中出现了与该转变相关的尖锐的λ形热异常,表明该转变是一级的。超晶格衍射的温度依赖性揭示了至少在140 K之前存在预转变现象。进一步讨论了4的异常磁行为,例如高温相中铁磁相互作用的起源以及导致自旋转变的原因。

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