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首页> 外文期刊>CERAMICS INTERNATIONAL >Electronic structure, orbital symmetry transformation, charge transfer, and valence state studies on Fe3+ - substituted CaCu3Ti4O12 quadruple perovskites using X-ray photoelectron spectroscopy
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Electronic structure, orbital symmetry transformation, charge transfer, and valence state studies on Fe3+ - substituted CaCu3Ti4O12 quadruple perovskites using X-ray photoelectron spectroscopy

机译:使用X射线光电子光谱法对Fe3 + - 取代的CaCu3Ti4O12四重量蠕动的电子结构,轨道对称转化,电荷转移和价态研究

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摘要

Here, we report a detailed study on electronic structure of quadruple perovskite system, CaCu3Ti4O12 (x = 0.0, 0.1, 0.3, 0.5 and 0.7), using the powerful X-ray photoelectron spectroscopy (XPS). The Ca2p and Ti2p XPS spectra indicate that Ca and Ti ions exist in the divalent and tetravalent state, respectively, and no visible change is observed in their valence states on Fe3+-substitution (x). The asymmetrically shaped peaks of Ti(2)p(3/2) infer the significant orbital hybridization of Ti atoms with other metallic cations like Cu and Fe, i.e. the Ti2p-Cu3d-Fe3d mixed states, which shows an increment with the Fe3+-content. The spectra also indicate that the Fesubstitution causes an increase in the strength of CuFe3d-O2p hybridization while weakening the strength of TiFe3d-O2p orbital hybridization. The Cu2p spectra suggest that Cu ions exist in two valence states i.e. the Cu2+ and Cu3+ out of which Cu2+ is dominant. The XPS results show clear evidence of charge transfer amongst Ti-Cu ions and evolution of n-type charge carriers. The O1s XPS spectra indicate anti-bonding states of t(2g) and e(g) type molecular orbitals separated by an energy separation of similar to 1.6 eV. A systematic relative change in the intensity of t(2g) and e(g) peaks with Fe-substitution point towards a clear transformation of symmetry of the system from TiO6 octahedral to the square-planar.
机译:在这里,我们报告了四元钙钛矿系统的电子结构的详细研究,使用强大的X射线光电子能谱(XPS),CACU3Ti4O12(x = 0.0,0.1,0.3,0.5和0.7)。 Ca2P和Ti2P XPS光谱表明,分别存在于二价和四价状态的Ca和Ti离子,并且在Fe3 + -substiture(x)上没有在其价态中观察到可见的变化。 Ti(2)p(3/2)的不对称形状峰推断Ti原子的其他金属阳离子,如Cu和Fe,即Ti2P-Cu3D-Fe3D混合状态,其显示与Fe3 +的增量 - 内容。光谱还表明螯合剂导致CuFE3D-O2P杂交强度的增加,同时削弱了TiGe3D-O2P轨道杂交的强度。 Cu2P光谱表明Cu离子存在于两个价态中,即Cu2 +和Cu3 +其中Cu2 +是显性的。 XPS结果表明,在Ti-Cu离子和N型电荷携带者的演化中明确的电荷转移证据。 O1S XPS光谱指示T(2g)和e(g)型分子轨道分离的抗粘合状态,其能量分离与1.6eV类似。具有Fe替换点的T(2g)和e(g)峰的强度的系统相对变化,朝向Square-Planar从TiO6八面体对称转化的透明转化。

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