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新型镍-镧系元素-钨异核三金属化合物的合成、晶体结构、磁性及理论研究:理解混合多核配合物的单分子磁体行为

Synthesis, Crystal Structures, Magnetic Properties, and Theoretical Investigation of a New Series of Ni-Ln-W Heterotrimetallics: Understanding the SMM Behavior of Mixed Polynuclear Complexes.

作者信息

Vieru Veacheslav, Pasatoiu Traian D, Ungur Liviu, Suturina Elizaveta, Madalan Augustin M, Duhayon Carine, Sutter Jean-Pascal, Andruh Marius, Chibotaru Liviu F

机构信息

Theory of Nanomaterials Group, Katholieke Universiteit Leuven , Celestijnenlaan 200F, 3001 Heverlee, Belgium.

Inorganic Chemistry Laboratory, Faculty of Chemistry, University of Bucharest , Strada Dumbrava Rosie 23, 020464 Bucharest Romania.

出版信息

Inorg Chem. 2016 Dec 5;55(23):12158-12171. doi: 10.1021/acs.inorgchem.6b01669. Epub 2016 Nov 18.

Abstract

The polynuclear compounds containing anisotropic metal ions often exhibit efficient barriers for blocking of magnetization at fairly arbitrary geometries. However, at variance with mononuclear complexes, which usually become single-molecule magnets (SMM) under the sole requirement of a highly axial crystal field at the metal ion, the factors influencing the SMM behavior in polynuclear complexes, especially, with weakly axial magnetic ions, still remain largely unrevealed. As an attempt to clarify these conditions, we present here the synthesis, crystal structures, magnetic behavior, and ab initio calculations for a new series of Ni-Ln-W trimetallics, [(CN)W(CN)Ni(HO)(valpn)Ln(HO)]·HO (Ln = Y 1, Eu 2, Gd 3, Tb 4, Dy 5, Lu 6). The surprising finding is the absence of the magnetic blockage even for compounds involving strongly anisotropic Dy and Tb metal ions. This is well explained by ab initio calculations showing relatively large transversal components of the g-tensor in the ground exchange Kramers doublets of 1 and 4 and large intrinsic tunneling gaps in the ground exchange doublets of 3 and 5. In order to get more insight into this behavior, another series of earlier reported compounds with the same trinuclear [WNiLn] core structure, [(CN)W(CN)Ni(dmf)(valdmpn)Ln(dmf)]·HO (Ln = Gd 7, Tb 8a, Dy 9, Ho 10), [(CN)W(CN)Ni(HO)(valdmpn)Tb(dmf)(HO)]·HO·0.5dmf 8b, and [(CN)W(CN)Ni(HO)(valdmpn)Er(dmf)(HO)]·HO·0.5dmf 11, has been also investigated theoretically. In this series, only 8b exhibits SMM behavior which is confirmed by the present ab initio calculations. An important feature for the entire series is the strong ferromagnetic coupling between Ni(II) and W(V), which is due to an almost perfect trigonal dodecahedron geometry of the octacyano wolframate fragment. The reason why only 8b is an SMM is explained by positive zero-field splitting on the nickel site, precluding magnetization blocking in complexes with fewer axial Ln ions. Further analysis has shown that, in the absence of ZFS on Ni ion, all compounds in the two series (except those containing Y and Gd) would be SMMs. The same situation arises for perfectly axial ZFS on Ni(II) with the main anisotropy axis parallel to the main magnetic axis of Ln(III) ions. In all other cases the ZFS on Ni(II) will worsen the SMM properties. The general conclusion is that the design of efficient SMMs on the basis of such complexes should involve isotropic or weekly anisotropic metal ions, such as Mn(II), Fe(III), etc., along with strongly axial lanthanides.

摘要

含有各向异性金属离子的多核化合物在相当任意的几何形状下通常都表现出有效的磁化阻挡屏障。然而,与单核配合物不同,单核配合物通常在金属离子处具有高度轴向晶体场这一唯一要求下成为单分子磁体(SMM),影响多核配合物中SMM行为的因素,尤其是对于弱轴向磁性离子,在很大程度上仍未被揭示。作为阐明这些条件的一次尝试,我们在此展示了一系列新型Ni-Ln-W三金属化合物[(CN)W(CN)Ni(HO)(valpn)Ln(HO)]·HO(Ln = Y 1、Eu 2、Gd 3、Tb 4、Dy 5、Lu 6)的合成、晶体结构、磁行为以及从头算计算。令人惊讶的发现是,即使对于涉及强各向异性Dy和Tb金属离子的化合物,也不存在磁阻挡现象。这通过从头算计算得到了很好的解释,计算表明1和4的基态交换克莱默斯双态中g张量具有相对较大的横向分量,3和5的基态交换双态中具有较大的固有隧穿间隙。为了更深入了解这种行为,还对另一系列先前报道的具有相同三核[WNiLn]核心结构的化合物[(CN)W(CN)Ni(dmf)(valdmpn)Ln(dmf)]·HO(Ln = Gd 7、Tb 8a、Dy 9、Ho 10)、[(CN)W(CN)Ni(HO)(valdmpn)Tb(dmf)(HO)]·HO·0.5dmf 8b以及[(CN)W(CN)Ni(HO)(valdmpn)Er(dmf)(HO)]·HO·0.5dmf 11进行了理论研究。在这个系列中,只有8b表现出SMM行为,这在当前的从头算计算中得到了证实。整个系列的一个重要特征是Ni(II)和W(V)之间的强铁磁耦合,这是由于八氰基钨酸盐片段几乎完美的三角十二面体几何形状。只有8b是SMM的原因可以通过镍位点上的正零场分裂来解释,这排除了具有较少轴向Ln离子的配合物中的磁化阻挡。进一步分析表明,在镍离子上不存在零场分裂的情况下,两个系列中的所有化合物(除了含有Y和Gd的那些)都将是SMM。当Ni(II)上具有完美轴向零场分裂且主各向异性轴与Ln(III)离子的主磁轴平行时,也会出现同样的情况。在所有其他情况下,Ni(II)上的零场分裂会使SMM性质变差。总的结论是,基于此类配合物设计高效的SMM应该涉及各向同性或弱各向异性金属离子,如Mn(II)、Fe(III)等,以及强轴向镧系元素。

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