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首页> 外文期刊>Bulletin of the Korean Chemical Society >Effect of Cation Substitution on the Lattice Vibration and Crystal Structure
of Magnetic RuSr1.9A0.1GdCu2O8 (A = Ca, Sr, and Ba) Superconductors
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Effect of Cation Substitution on the Lattice Vibration and Crystal Structure
of Magnetic RuSr1.9A0.1GdCu2O8 (A = Ca, Sr, and Ba) Superconductors

机译:阳离子取代对RuSt 1.9 A 0.1 GdCu 2 O 8 晶格振动和晶格结构的影响SUB>(A = Ca,Sr和Ba)超导体

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The lattice vibration and crystal structure of alkaline earth metal-substituted RuSr1.9A0.1GdCu2O8 (A = Ca, Sr, and Ba) have been investigated with micro-Raman spectroscopy. The present RuSr1.9A0.1GdCu2O8 materials show not only several weak Raman peaks corresponding to the vibrations of OCu and ORu but also strong characteristic phonon lines related to OSr vibration mode. A comparison between the frequency of OSr vibration and the bond distances of (Ru?OSr) and (Cu?OSr) in the present ruthenocuprates reveals that the vibration energy of OSr is mainly dependent on the bond distance of (Ru?OSr). The peak splitting of the OSr phonon lines was observed for the unsubstituted RuSr2GdCu2O8, suggesting the existence of two different (Ru?OSr) bond distances. Such a peak splitting caused by the appearance of low-energy shoulder reflects the presence of internal charge transfer pathway from the RuO2 plane to the superconductive CuO2 one. After the substitution of Sr with Ca or Ba, the low-energy shoulder peak of OSr vibration becomes suppressed, underscoring the depression of internal charge transfer between the RuO2 and CuO2 planes. The weakened role of RuO2 layer as charge reservoir in the RuSr1.9A0.1GdCu2O8 (A = Ca, Ba) would be responsible for the depression of Tc upon the Ca/Ba substitution.
机译:用显微拉曼光谱研究了碱土金属取代的RuSr1.9A0.1GdCu2O8(A = Ca,Sr和Ba)的晶格振动和晶体结构。目前的RuSr1.9A0.1GdCu2O8材料不仅显示出与OCu和ORu的振动相对应的几个弱拉曼峰,而且还显示了与OSr振动模式有关的强特征声子线。通过比较目前的钌铜矿中OSr振动的频率与(Ru?OSr)和(Cu?OSr)的键距,可以看出OSr的振动能量主要取决于(Ru?OSr)的键距。对于未取代的RuSr2GdCu2O8,观察到OSr声子谱线的峰分裂,表明存在两个不同的(Ru?OSr)键距。由低能肩峰的出现引起的这种峰分裂反映了从RuO2平面到超导CuO2的内部电荷转移途径的存在。用Ca或Ba替代Sr后,OSr振动的低能肩峰变得受到抑制,这突出了RuO2和CuO2平面之间内部电荷转移的抑制。 RuSr1.9A0.1GdCu2O8(A = Ca,Ba)中RuO2层作为电荷储库的作用减弱,可能是Ca / Ba取代后Tc降低的原因。

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