论文标题
一维铁磁链化合物$ m $(NCS)$ _ 2 $(thiouRea)$ _ 2 $; $ m $ = ni,co
Magnetic ground-state of the one-dimensional ferromagnetic chain compounds $M$(NCS)$_2$(thiourea)$_2$; $M$ = Ni, Co
论文作者
论文摘要
两种基于异构分子的磁铁的磁性特性,ni(ncs)$ _ {2} $(thiouRea)$ _ {2} $,$ s $ = 1,[thiouRea = sc(nh $ _2 $ _2 $ _ 2 $)$ _ 2 $]和CO(NCS)使用多种技术来表征其与结构参数的关系,并确定由自旋取代引起的磁变化。除了类似于Ising($ d <0 $)单离子各向异性($ d _ {\ rm {co}} \ sim $ -100 k,$ d _ $ -100 k,$ d _ {晶体和电子结构结合DC场磁力测定法,确认高度准确的维度行为,以及铁磁内交换交互$ J _ {\ rm {co}} \+4 $ k和$ j and $ j _&j _ {\ rm {\ rm {ni}} \ sim+sim+sim+j ni $ k' $ \ sim-0.1 $ K。电子电荷和旋转密度映射揭示了通过空间交换,作为一种机制,可以解释$ j $ - 价值的较大差异,尽管从结构的角度来看,这两种材料中高度相似的交换途径。可以将这两种物种与类似的化合物$ m $ cl $ _2 $(thiourea)$ _ 4 $,$ m $ = ni(ii)(ii)(dtn)和co(ii)(dtc)进行比较,在那里DTN可以携带两个磁场诱导的量子关键点。 DTN和DTC与此处研究的化合物的直接比较表明,将Halide Cl $^ - $离子代替为NCS $^ - $离子,从而导致结构和磁性属性发生了巨大变化。
The magnetic properties of the two isostructural molecule-based magnets, Ni(NCS)$_{2}$(thiourea)$_{2}$, $S$ = 1, [thiourea = SC(NH$_2$)$_2$] and Co(NCS)$_{2}$(thiourea)$_{2}$, $S$ = 3/2, are characterised using several techniques in order to rationalise their relationship with structural parameters and ascertain magnetic changes caused by substitution of the spin. Zero-field heat capacity and muon-spin relaxation measurements reveal low-temperature long-range ordering in both compounds, in addition to Ising-like ($D < 0$) single-ion anisotropy ($D_{\rm{Co}} \sim$ -100 K, $D_{\rm{Ni}} \sim$ -10 K). Crystal and electronic structure, combined with DC-field magnetometry, affirm highly quasi-one-dimensional behaviour, with ferromagnetic intrachain exchange interactions $J_{\rm{Co}}\approx+4$ K and $J_{\rm{Ni}}\sim+100$ K and weak antiferromagnetic interchain exchange, on the order of $J'$ $\sim-0.1$ K. Electron charge and spin-density mapping reveals through-space exchange as a mechanism to explain the large discrepancy in $J$-values despite, from a structural perspective, the highly similar exchange pathways in both materials. Both species can be compared to the similar compounds $M$Cl$_2$(thiourea)$_4$, $M$ = Ni(II) (DTN) and Co(II) (DTC), where DTN is know to harbour two magnetic field-induced quantum critical points. Direct comparison of DTN and DTC with the compounds studied here shows that substituting the halide Cl$^-$ ion, for the NCS$^-$ ion, results in a dramatic change in both the structural and magnetic properties.