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Crystal growth, experimental and theoretical studies on the electronic structure of CNGS and Nd:CNGS

机译:CNGS和Nd:CNGS电子结构的晶体生长,实验和理论研究

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Ca3NbGa3Si2O14 (CNGS) and Nd:Ca3NbGa3Si2O14 (Nd:CNGS) single crystals were grown using the Czochralski technique, and the dielectric, elastic and piezoelectric properties of the Nd:CNGS crystals were evaluated at room temperature by the impedance method. It is proved that the Nd:CNGS crystals have larger dielectric constants, piezoelectric constants and elastic compliance as compared with the CNGS crystals. The electronic structure and chemical composition of the crystals were analyzed using X-ray photoelectron spectroscopy (XPS). Constituent element representative core levels and auger lines in this complex langasite crystal have been measured. The Ca 2p, Ca 3p, Ga 3p, Ga 3d, Si 2p XPS spectra show a shift toward higher binding energies while the O 1s level moves in the lower binding energy direction with increasing Nd content and can be interpreted as a doping induced change in the chemical potential. Furthermore, it was confirmed by the X-ray photoelectron spectra that Ca-O, Ga-O, and Si-O bonds in Nd:CNGS have stronger ionicity compared with the CNGS crystal. On the basis of the density functional theory (DFT), first-principles calculations have been employed to study the electronic structure of CNGS successfully. The calculated results are essentially consistent with the corresponding experimental results, which indicate that the contributions of the Nb-O groups are dominant in the CNGS crystal for producing optical properties.
机译:使用切克劳斯基技术生长Ca3NbGa3Si2O14(CNGS)和Nd:Ca3NbGa3Si2O14(Nd:CNGS)单晶,并在室温下通过阻抗法评估Nd:CNGS晶体的介电​​,弹性和压电性能。事实证明,与CNGS晶体相比,Nd:CNGS晶体具有较大的介电常数,压电常数和弹性柔度。使用X射线光电子能谱(XPS)分析了晶体的电子结构和化学组成。已经测量了该复杂的硅锰矿晶体中的构成元素代表的核心能级和螺旋钻线。 Ca 2p,Ca 3p,Ga 3p,Ga 3d,Si 2p XPS光谱显示,随着Nd含量的增加,O 1s的含量沿较低的结合能方向移动,而朝着较高的结合能方向转变,可以解释为掺杂引起的化学势。此外,通过X射线光电子能谱确认,与CNGS晶体相比,Nd:CNGS中的Ca-O,Ga-O和Si-O键具有更强的离子性。在密度泛函理论(DFT)的基础上,采用第一性原理计算成功地研究了CNGS的电子结构。计算结果与相应的实验结果基本一致,这表明Nb-O基团的贡献在CNGS晶体中具有重要的光学性能。

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