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首页> 外文期刊>The journal of physics and chemistry of solids >2B 4O 7 single crystal by positron annihilation lifetime spectroscopy]]>
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2B 4O 7 single crystal by positron annihilation lifetime spectroscopy]]>

机译:<![CDATA [LI 2 B 4 O 7 单晶通过正电子湮灭寿命光谱]]]>

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AbstractVacancy-type free-volume defects in lithium tetraborate Li2B4O7single crystal, grown by the Czochralski technique, are probed with positron annihilation spectroscopy in the lifetime measuring mode. The experimental positron lifetime spectrum is reconstructed within the three-component fitting, involving channels of positron and positronium Ps trapping, as well as within the two-component fitting with a positronium-compensating source input. Structural configurations of the most efficient positron traps are considered using the crystallographic specificity of lithium tetraborate with the main accent on cation-type vacancies. Possible channels of positron trapping are visualized using the electronic structure calculations with density functional theory at the basis of structural parameters proper to Li2B4O7. Spatially-extended positron-trapping complexes involving singly-ionized lithium vacancies, with character lifetime close to 0.32?ns, are responsible for positron trapping in the nominally undoped lithium tetraborate Li2B4O7crystal.Highlights
机译:<![CDATA [ 抽象 锂电图锂的空缺型自由体积缺陷li 2 < / CE:INF> B 4 O 7 单晶,由Czochralski技术生长,在寿命测量模式下用正电子湮没光谱探测。实验正电子寿命谱在三个组件拟合内重建,涉及正电子和正电子PS捕获的通道,以及具有正电子补偿源输入的双组分配件。使用阳离子型空位的主要口音的锂酸锂的晶体特异性考虑最有效的正电子捕集器的结构配置。正电子结构的可能频道使用密度泛函理论以适当的结构参数来可视化正电子结构计算:INF LOC =“POST”> 2 B 4 O 7 。空间 - 扩展的正电子捕获复合物,涉及单独电离锂空位,具有接近0.32Ω的特征寿命,负责标称未掺杂的锂锂锂锂锂锂锂的正电子捕获:2 B 4 O 7 晶体。 亮点

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