首页> 外文会议>International Conference Materials and their Application >The Effect of Additionally Introduced Impurities of Fe and Pb Ions on Silver Azide Decomposition
【24h】

The Effect of Additionally Introduced Impurities of Fe and Pb Ions on Silver Azide Decomposition

机译:另外引入Fe和Pb离子杂质对叠氮化物分解的影响

获取原文

摘要

The experiments have emphasized that additionally introduced impurities of Fe and Pb ions are relevant to the initiation of slow and explosive decomposition of silver azide crystals by the external electric field and UV irradiation. External gas release was used for research purpose. Test-sensitivity is 10~12 mole. Time-to-explosion was measured by a stop watch. It's been found out that the reaction of slow decomposition in silver azide under the action of electric field turns into explosion faster in samples with the additionally introduced impurities. The samples with additionally introduced Fe are the most explosive ones (time-to-explosion 3 minutes). The authors have assumed that external influence can generate non-equilibrium charge carriers (holes), which become localized on cationic vacancies and support formation of reactive sites. As soon as cut off concentration of these sites is reached, the solid-phase chain reaction turns into explosion. The growing concentration of impurity influences on the number of reactive sites, making their concentration critical. In view of the results obtained in experiments a procedure for monitoring the decomposition of crystals is suggested, which necessitates additional introduction of Fe and Pb ions.
机译:实验强调,另外引入的Fe和Pb离子的杂质与外部电场和UV照射的叠氮化物晶体的缓慢和爆炸性分解的引发。外部气体释放用于研究目的。测试灵敏度为10〜12摩尔。通过停止手表测量爆炸时间。已经发现,在电场的作用下,在电场的作用下,在电场的作用下,在电场的作用下的慢速分解在样品中的爆炸中的反应具有另外引入的杂质。具有另外引入的Fe的样品是最爆炸性的(爆炸时间3分钟)。作者假设外部影响可以产生非平衡电荷载体(孔),该载体(孔)成为阳离子空缺的局部化,并支持反应性位点的支持。一旦达到这些位点的浓度,固相链反应变成爆炸。富于活性位点的数量的杂质浓度不断增长,使其浓度至关重要。鉴于实验中获得的结果,提出了用于监测晶体分解的程序,这需要额外引入Fe和Pb离子。

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