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首页> 外文期刊>Nanoscale Research Letters >Water-Vapor Sorption Processes in Nanoporous MgO-Al2O3 Ceramics: the PAL Spectroscopy Study
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Water-Vapor Sorption Processes in Nanoporous MgO-Al2O3 Ceramics: the PAL Spectroscopy Study

机译:纳米多孔MgO-Al 2 O 3 陶瓷中水蒸气​​的吸附过程:PAL光谱研究

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The water-vapor sorption processes in nanoporous MgO-Al~(2)O~(3) ceramics are studied with positron annihilation lifetime (PAL) spectroscopy employing positron trapping and positronium (Ps)-decaying modes. It is demonstrated that the longest-lived components in the four-term reconstructed PAL spectra with characteristic lifetimes near 2 and 60–70?ns can be, respectively, attributed to ortho-positronium (o-Ps) traps in nanopores with 0.3- and 1.5–1.8-nm radii. The first o-Ps decaying process includes “pick-off” annihilation in the “bubbles” of liquid water, while the second is based on o-Ps interaction with physisorbed water molecules at the walls of the pores. In addition, the water vapor modifies structural defects located at the grain boundaries in a vicinity of pores, this process being accompanied by void fragmentation during water adsorption and agglomeration during water desorption after drying.
机译:利用正电子trap没寿命(PAL)谱,利用正电子俘获和正电子(Ps)衰减模式,研究了纳米多孔MgO-Al〜(2)O〜(3)陶瓷中水蒸气​​的吸附过程。结果表明,四项重建的PAL光谱中寿命最长的组分,其特征寿命分别接近2和60-70?ns,可以分别归因于纳米孔中的正电子陷阱(o-Ps),其0.3-和半径为1.5-1.8纳米。第一个o-Ps衰减过程包括在液态水的“气泡”中“拾取” an灭,而第二个基于o-Ps与孔壁上物理吸附的水分子的相互作用。另外,水蒸气修饰了位于孔附近的晶界处的结构缺陷,该过程伴随有在吸水期间的空隙碎裂和在干燥后的水解吸期间的结块。

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