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A Rare Water and Hydroxyl-Extended One-Dimensional Dysprosium(III) Chain and Its Magnetic Dilution Effect

机译:稀有水和羟基延伸的一维镝(III)链及其磁性稀释效应

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摘要

A novel water and hydroxyl-extended one-dimensional dysprosium(III) chain was hydrothermally obtained, which exhibits a relatively high spin-reversal energy barrier of 88.7 K and intrachain ferromagnetic interaction with the coupling constant J(exch) = 3.04 cm(-1) calculated by fitting magnetic susceptibilities using POLY_ANISO program based on ab initio calculations. To deeply understand the respective role of the single-ion anisotropy and intrachain exchange on the effective energy barrier, three crystallographically isostructural analogues containing isotropic Gd(III)-, diamagnetic Y(III)-, as well as Y(III)-doped Dy0.05Y0.95 were prepared and characterized structurally and magnetically. Due to the absence of significant intrachain exchange interaction, the effective energy barrier of the Dy0.05Y0.95 decreased by 9.9 K as compared with that of parent dysprosium(III) chain. Thus, it can be concluded that the intrachain ferromagnetic coupling and the magnetic anisotropy of the Dy(III) ion synergistically enhance the effective energy barrier of the dysprosium(III) chain, in which the single-ion anisotropy becomes more predominant.
机译:利用新的水和羟基延伸的一维镝(III)链,其具有88.7k的相对高的旋转逆转能屏障和与耦合常数J(Exch)= 3.04cm(-1)内颈铁磁性相互作用(-1通过使用基于AB Initio计算的Poly_Aniso程序来计算通过拟合磁敏性。为了深深地了解单离子各向异性和颈内部交换对有效能量屏障的各自作用,含有各向同性Gd(III) - ,二磁性Y(III) - ,以及Y(III)的三种晶形上是晶体的性能类似物在结构和磁性上制备和表征.05Y0.95。由于没有显着的颈内交换相互作用,与母体镝(III)链相比,DY0.05​​Y0.95的有效能量屏障减少了9.9 k。因此,可以得出结论,颈内磁性耦合和Dy(III)离子的磁各向异性协同增强了镝(III)链的有效能量屏障,其中单离子各向异性变得更加主要。

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    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

    Nanjing Normal Univ Sch Phys Sci &

    Technol Jiangsu Key Lab NSLSCS Nanjing 210023 Jiangsu Peoples R China;

    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

    Tianjin Normal Univ Tianjin Key Lab Struct &

    Performance Funct Mol Key Lab Inorgan Organ Hybrid Funct Mat Chem Coll Chem Minist Educ Tianjin 300387 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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