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A study of inter-crystallite spaces in some polycrystalline inorganic systems using positron annihilation lifetime spectroscopy

机译:利用正电子an没寿命光谱研究某些多晶无机系统中的晶间空间

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Positron annihilation lifetime spectroscopy (PALS) was used for calculation of number density and effective sizes of free volume holes (inter-crystallite spaces) in polycrystal CaSO4,CaCO3 (vaterit) and Ca10(PO4)6(OH)2 (apatite).The effect of substitution of two-valence Ca(II) for three-valence Eu(III) on annihilation characteristics of apatite,studied together with the data on thermo-stimulated luminescence (TSL) and low-temperature sorption of gas (N2),helped to elucidate mechanism of positronium atom (Ps) localization in the free volume holes and perform corresponding calculations.It came out that PALS is more sensitive to inter-crystallite sites (10~(16)cm~(-3)) in polycrystallites than to the free volume holes in polymer glasses (10~(19)cm~(-3)).This is due to higher mobility of the precursor of localized Ps in crystallites.
机译:正电子an没寿命谱(PALS)用于计算多晶CaSO4,CaCO3(vaterit)和Ca10(PO4)6(OH)2(磷灰石)中自由体积孔(晶间空间)的数密度和有效尺寸。用二价Ca(II)代替三价Eu(III)对磷灰石an没特性的影响,以及与热激发发光(TSL)和气体低温吸附(N2)的数据一起研究阐明了自由体积孔中正电子原子(Ps)的定位机理并进行了相应的计算。结果表明,PALS对多晶中晶间位点(10〜(16)cm〜(-3))的敏感性高于对聚合物玻璃中的自由体积孔(10〜(19)cm〜(-3)),这是由于微晶中局部Ps的前体具有更高的迁移率。

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