首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Core-level photoemission spectra of Mo0.3Cu0.7Sr2ErCu2Oy, a superconducting perovskite derivative. Unconventional structure-property relationships
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Core-level photoemission spectra of Mo0.3Cu0.7Sr2ErCu2Oy, a superconducting perovskite derivative. Unconventional structure-property relationships

机译:超导钙钛矿衍生物Mo0.3Cu0.7Sr2ErCu2Oy的核心能级发射光谱。非常规的结构-财产关系

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Detailed studies of the electronic states for Mo0.3Cu0.7Sr2ErCu2Oy samples with different oxygen contents are presented here. The influence of oxygenation on the electronic states for the Mo0.3Cu0.7Sr2ErCu2Oy system from the semiconducting to the superconducting state has been investigated by means of X-ray photoelectron spectroscopy (XPS). The XPS studies show that Mo is in a mixed Mo-V and Mo-VI oxidation state and Mo-V is predominant over the Mo-VI in the as-prepared (AP) sample. Yet annealing under an oxygen atmosphere enhances the MoVI state. At the same time, a reduction in the copper species is observed. In the Cu 2p spectra, a larger energy separation between the satellite and main peaks (E-S-E-M) and a lower intensity ratio (I-S/I-M) are found to correlate with higher values of the superconducting transition temperature (T-C). Analysis of these spectra within the Configuration Interaction (CI) model suggests that higher values of T-C are related to lower values of the O 2p-Cu 3d charge transfer energy. The change in the Sr 3d and O 1s core level spectra correlates with the oxygen insertion in the (Mo/Cu) O1+delta chain site, after oxygenation. The hole concentration (P-h) in the copper plane has been obtained using the room temperature thermoelectric power (TEP) value; this shows an increasing tendency with increasing T-C, after oxygenation. From these experimental results, one observes that T-C increases with decreasing charge transfer energy. This is, indeed, opposite to the accepted views and occurs in parallel with the shortening of the apical copper-oxygen distance (Cu2-O2) and the increasing of the CuO2 plane buckling angle.
机译:这里介绍了具有不同氧含量的Mo0.3Cu0.7Sr2ErCu2Oy样品的电子态的详细研究。通过X射线光电子能谱(XPS)研究了Mo0.3Cu0.7Sr2ErCu2Oy系统中氧合对电子态从半导体态到超导态的影响。 XPS研究表明,Mo处于混合的Mo-V和Mo-VI氧化状态,并且在制备的(AP)样品中Mo-V占Mo-VI的优势。然而,在氧气气氛下退火会增强MoVI态。同时,观察到铜种类的减少。在Cu 2p光谱中,发现卫星峰和主峰之间的较大能量间隔(E-S-E-M)和较低的强度比(I-S / I-M)与较高的超导转变温度(T-C)相关。在配置相互作用(CI)模型中对这些光谱的分析表明,较高的T-C值与较低的O 2p-Cu 3d电荷转移能值有关。氧合后,Sr 3d和O 1s核心能级谱的变化与(Mo / Cu)O1 +δ链位中的氧插入相关。使用室温热电功率(TEP)值获得了铜平面中的空穴浓度(P-h);氧化后,随着T-C的增加,这显示出增加的趋势。从这些实验结果可以看出,T-C随着电荷转移能量的降低而增加。实际上,这与公认的观点相反,并且与顶端的铜-氧距离(Cu2-O2)的缩短和CuO2平面屈曲角的增加并行发生。

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