首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Identical anomalous Raman relaxation exponent in a family of single ion magnets: towards reliable Raman relaxation determination?
【24h】

Identical anomalous Raman relaxation exponent in a family of single ion magnets: towards reliable Raman relaxation determination?

机译:在一家单离子磁铁家族中相同的异常拉曼放松指数:朝向可靠的拉曼松弛测定?

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Propeller-like lanthanide complexes with suitable chiral ligand scaffolds are highly desired as they combine chirality with possible magnetic bistability. However, the library of relevant chiral lanthanide-based molecules is quite limited. Herein we present the preparation, structures, magnetic behavior as well as EPR studies of a series of propeller-shaped lanthanide Single Ion Magnets (SIMs). Coordination of the smallest helicene-type molecule 1,10-phenanthroline-N,N'-dioxide (phendo) to Ln(III) ions results in the formation of homoleptic complexes [Ln(III)(phendo)(4)](NO3)(3)center dot xMeOH (Ln = Gd, Er, Yb) Gd, Er and Yb, where four phendos encircle the metal center equatorially in a four-bladed propeller fashion. The magnetization dynamics in these systems is studied by magnetic measurements and EPR spectroscopy for non-diluted as well as solid state dilutions of Er and Yb in a diamagnetic [Y-III(phendo)(4)](NO3)(3)center dot xMeOH (Y) matrix. Careful analysis of the slow magnetic relaxation in the diluted samples can be described by a combination of Raman and Orbach relaxation mechanisms. The most important finding concerns the identical power law tau approximate to T-3 describing the anomalous Raman relaxation for all three reported compounds diluted in the Y matrix. This identical power law strongly suggests that the exponent of the Raman relaxation process in the series of solid-state diluted isostructural compounds is practically independent of the metal ion (as long as the molar mass changes are negligible) and highlights a possible experimental strategy towards reliable Raman relaxation determination.
机译:具有合适的手性配体支架的螺旋桨状镧系元络合物非常需要,因为它们与可能的磁性体活性相结合的血管性。然而,相关的手性镧系元素的分子库非常有限。在此我们提出了一系列螺旋桨形镧系元素单离子磁铁(SIMS)的制备,结构,磁性行为以及EPR研究。最小的甲肾上腺素型分子1,10-菲咯啉-N,N'二氧化氮(Phendo)至Ln(III)离子的配位导致杂种复合物[LN(III)(Phendo)(4)]的形成(NO3 )(3)中心点XMEOH(LN = GD,ER,YB)GD,ER和YB,其中四个PHENDOS以四刃螺旋桨方式均衡金属中心。通过磁测量和EPR光谱研究这些系统中的磁化动力学,用于非稀释以及硅基胺[Y-III(Phendo)(4)](NO3)(3)中心点中的ER和Yb的固态稀释液。 XMEOH(Y)基质。仔细分析稀释的样品中的缓慢磁性松弛可以通过拉曼和Orbach松弛机构的组合来描述。最重要的发现涉及相同的动力法近似于T-3,描述了在Y基质中稀释的所有三种所报道的化合物的异常拉曼弛豫。这种相同的幂律强烈表明,该系列固态稀释的肌肉化合物中拉曼弛豫过程的指数实际上与金属离子(只要摩尔质量变化可忽略不计)并且突出了可靠的可能实验策略拉曼放松决心。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号