...
首页> 外文期刊>Materials Characterization >(109928)Structural defects characterization of silver-phosphate glass nanocomposites by positron annihilation and related experimental studies
【24h】

(109928)Structural defects characterization of silver-phosphate glass nanocomposites by positron annihilation and related experimental studies

机译:(109928)通过正电子湮没和相关实验研究表征银磷酸银玻璃纳米复合材料的结构缺陷

获取原文
获取原文并翻译 | 示例
           

摘要

The structural defects and their role in the formation and properties of the metal oxide glass nanocomposite xAgl-(l-x) (0.65Ag_2O-0.35P_2O_5) have been studied using several sensitive spectroscopic techniques. The nanocomposite samples have been prepared by conventional melt-quenching method and the formation of na-nocrystallites over the amorphous glassy matrices has been verified from X-ray diffraction and transmission electron microscopy studies. The optical band gap energies were determined from Tauc's plots of UV-Vis absorption spectra taken from a spectrophotometer. Special emphasis on the defect characterization and defects-mediated stages of evolution is made possible through positron annihilation lifetime (PAL) and coincidence Doppler broadening spectroscopic (CDBS) measurements, which further helped in the investigation of the growth of defects, especially the Ag~+ ion vacancies, within the nanocomposites. A defect-specific positron lifetime is identified to represent positron trapping in the interfacial gaps between nanocrystallites and the amorphous glass matrices besides the vacancies of Ag~+ ions. The longest positron lifetime component occurs due to the formation of orthopositronium in free volume holes of small sizes and it increased as an effect of agglomeration of the free volume holes within the amorphous glassy matrices at increased incorporation of Ag~I The CDB spectra revealed the changing proximities of the Ag~+ ion vacancies to the surrounding oxygen ions. The positron annihilation characteristics were especially indicative of the importance of the choice of stoichiometry in the formation of the nanocomposite and its exhilarating properties.
机译:使用几种敏感的光谱技术研究了结构缺陷及其在金属氧化物玻璃纳米复合XAGL-(L-X)(0.65AG_2O-0.35P_2O_5)的结构和性质中的作用。通过常规熔融淬火方法制备纳米复合材料样品,并通过X射线衍射和透射电子显微镜研究验证了在非晶玻璃基质上形成Na-Nocrystalites。从从分光光度计从分光光度计中取出的uV-Vis吸收光谱的图表中确定光带隙能量。通过正电子湮没寿命(PAL)和重合多普勒展现光谱(CDB)测量,可以特别强调进化的缺陷介导的演化阶段,这进一步有助于调查缺陷的生长,尤其是AG〜+离子空位,纳米复合材料内。识别出缺陷特定的正电子寿命以表示纳米晶体和非晶玻璃基质之间的界面间隙中的正电子捕获,除了Ag〜+离子的空位。由于在小尺寸的自由体积孔中形成正正常数,因此由于在Ag的增加的Ag掺入时,由于小尺寸的自由体积孔的形成而产生了最长的正数寿命分量。由于CDB光谱的增加的掺入,因此在无定形玻璃状基质内的自由体积孔的聚集的效果。 Ag〜+离子空位的邻近氧离子。正电子湮没特性尤其指示在形成纳米复合材料的形成及其令人振奋性质中的化学计量的重要性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号