首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Magnetic Frustration and Spin Disorder in Isostructural M(mu-OH2)(2)[Au(CN)(2)](2) (M = Mn, Fe, Co) Coordination Polymers Containing Double Aqua-Bridged Chains: SQUID and mu SR Studies
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Magnetic Frustration and Spin Disorder in Isostructural M(mu-OH2)(2)[Au(CN)(2)](2) (M = Mn, Fe, Co) Coordination Polymers Containing Double Aqua-Bridged Chains: SQUID and mu SR Studies

机译:含双水桥链的同构M(mu-OH2)(2)[Au(CN)(2)](2)(M = Mn,Fe,Co)配位聚合物中的磁挫败和自旋紊乱:SQUID和mu SR学习

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A series of isostructural M(mu-OH2)(2)[Au(CN)(2)](2) (M = Co, Fe, and Mn) coordination polymers was synthesized from the reaction of M(II) with [(Bu4N)-Bu-n][Au(CN)(2)]. The basic structural motif for these polymers is analogous to that of previously reported Cu(II)- and Ni(II)-containing polymers and contains repeating double aqua bridges between metal centers that yield a chain structure with pendant [Au(CN)(2)](-) units. The aqueous reaction with Fe(III) yields Fe(mu-OH2)(mu-OH)[Au(CN)(2)](2), which has a similar structure. The magnetic properties of these polymers were investigated by a combination of SQUID magnetometry and zero-field muon spin relaxation. The double aqua bridges were found to mediate ferromagnetic interactions along the chains in the Co(II)-containing polymer, whereas intrachain antiferromagnetic interactions are present in the Fe(II)-, Fe(III)-, and Mn(II)-containing polymers. Weak magnetic interchain interactions mediated through hydrogen bonds, involving the bridging water molecules and the pendant cyanide groups, are also present. In zero field, the interchain interactions yield a phase transition to a disordered spin-frozen magnetic state below 2-5 K for every polymer. However, the degree of spin disorder varies considerably, depending on the metal center,
机译:由M(II)与[[(M = -OH2)(2)[Au(CN)(2)] [2)(M = Co,Fe和Mn)配位聚合物合成了一系列同构结构的M(mu-OH2)(2) Bu4N)-Bu-n] [Au(CN)(2)]。这些聚合物的基本结构基序与先前报道的含Cu(II)和Ni(II)的聚合物类似,并且在金属中心之间包含重复的双水桥,从而产生带有侧链[Au(CN)(2)的链结构。 )](-) 单位。与Fe(III)的水反应产生Fe(mu-OH2)(mu-OH)[Au(CN)(2)](2),其结构相似。这些聚合物的磁性能通过SQUID磁力测量法和零场μ子自旋弛豫的组合进行了研究。发现双水桥在含Co(II)的聚合物中沿链介导铁磁相互作用,而链内反铁磁相互作用存在于含Fe(II),Fe(III)和Mn(II)中聚合物。还存在通过氢键介导的弱磁性链间相互作用,涉及桥连的水分子和氰化侧基。在零场中,对于每种聚合物,链间相互作用在2-5 K以下产生相转变为无序的自旋冷冻磁态。但是,自旋失调的程度因金属中心而异,

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