首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electron Paramagnetic Resonance Investigations of Lanthanide-Doped Barium Titanate: Dopant Site Occupany
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Electron Paramagnetic Resonance Investigations of Lanthanide-Doped Barium Titanate: Dopant Site Occupany

机译:镧系元素掺杂钛酸钡的电子顺磁共振研究:掺杂位占据。

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摘要

Air-fired barium titanate samples doped with cerium, neodymium, samarium, gadolinium, dysprosium, erbium, or ytterbium were examined by electron paramagnetic resonance (EPR). Reducing atmosphere-fired europium-doped barium titanate was also investigated with EPR. Each dopant was studied in both Ba- and Ti-rich (Ba/Ti = 1.01, 0.99) samples. Point charge calculations were used to predict the EPR spectrum of each lanthanide in A- and B-sites. Different EPR spectra are expected for A- versus B-site substitution when Ce~(3+), Sm~(3+), Dy~(3+), and Yb~(3+) are the dopants. The experimentally observed Ba/Ti doping behavior of Ce~(3+) in BaTiO_3 suggests that as a 3+ cation it is on the A-site. No EPR active signal was observed for Sm3+ in BaTiO3. Eu~(2+) and Gd~(3+), as previously discussed in the literature, were found to be an A-site dopant and amphoteric, respectively. Dy~(3+) was found to be a B-site dopant with an EPR signal intensity suggesting amphoteric behavior, whereas Yb3+ showed only B-site occupancy. Nd~(3+) and Er~(3+) could not easily be assigned to a particular site by EPR methods alone. We also discuss the lanthanide dopant's effect on the observed levels of titanium vacancies, barium vacancies, and Mn~(2+) impurities.
机译:通过电子顺磁共振(EPR)检查了掺有铈,钕,sa 、,、,、,或的空燃钛酸钡样品。 EPR还研究了减少大气燃烧的euro掺杂钛酸钡。在富钡和富钛(Ba / Ti = 1.01,0.99)样品中都研究了每种掺杂剂。使用点电荷计算来预测A和B位置中每个镧系元素的EPR谱。当Ce〜(3 +),Sm〜(3 +),Dy〜(3+)和Yb〜(3+)是掺杂剂时,对于A位和B位取代,预期会有不同的EPR光谱。实验观察到BaTiO_3中Ce〜(3+)的Ba / Ti掺杂行为表明,它是3+阳离子,位于A位。 BaTiO3中未观察到Sm3 +的EPR活性信号。如先前在文献中所讨论的,Eu〜(2+)和Gd〜(3+)分别是A位掺杂剂和两性掺杂剂。发现Dy〜(3+)是B位掺杂物,其EPR信号强度暗示了两性行为,而Yb3 +仅显示了B位占据。仅使用EPR方法无法轻易将Nd〜(3+)和Er〜(3+)分配给特定位置。我们还讨论了镧系元素掺杂剂对观察到的钛空位,钡空位和Mn〜(2+)杂质水平的影响。

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