首页> 外文会议>IEEE Conference on Emerging Technologies Nanoelectronics >Nano-Forensics ---- Nanoparticles in Gun-Shot-Residue
【24h】

Nano-Forensics ---- Nanoparticles in Gun-Shot-Residue

机译:Nano-Forensics ----枪射击残留物中的纳米粒子

获取原文

摘要

Analysis of Gun-Shot Residue (GSR) is a very critical step in Forensic studies of shooting and related criminal cases. However, the current techniques used for GSR analysis are not complete. Detailed information regarding the elemental and crystallographic signatures of the GSR are missing. Moreover the analysis requires a substantial amount of sample which is difficult to obtain and frequently might be contaminated. The current study on the GSR focuses on these deficiencies. Electron Microscopic studies of the metallic nanoparticles (10-100 nm in diameter) obtained from GSR at different target distances from a Winchester Super-X 9mm luger has been analyzed in detail. Perfectly spherical (diameter ~ 10 nm) and very crystalline Pb and Sb nanoparticles were observed. Theoretical studies explaining the formation of the nanoparticles is reported. The non-equilibrium thermodynamic processes leading to the synthesis of the nanoparticles was observed to be very similar to the artificial chemical synthesis methods (e. g. CVD, Laser Ablation etc.). A simplified model will be proposed to explain the nanoparticle synthesis process in the GSR. This additional information obtained from the nanoparticle synthesis model will provide valuable forensic evidence in solving criminal cases. Forensic benefits of this information will be discussed. This ingenious synthesis mechanism has been demonstrated in synthesizing pure crystalline form of other popular nanomaterials..
机译:枪射击残留物(GSR)的分析是在拍摄的法医研究和相关刑事案件非常关键的一步。然而,用于GSR分析目前的技术是不完整的。关于GSR的元素和晶体签名的详细信息丢失。此外,该分析需要样品的相当量的难以得到,并经常可能被污染。在GSR目前研究的重点是这些不足。在从温彻斯特超级-X9毫米卢格不同的目标距离从GSR得到的金属纳米颗粒(直径为10-100nm)的电子显微镜的研究已经详细分析。观察到完美的球形(直径〜10nm)的和非常结晶的Pb和Sb的纳米颗粒。报道解释了纳米粒子的形成理论研究。导致纳米粒子的合成的非平衡热力学过程中观察到非常相似的人工化学合成的方法(例如CVD,激光烧蚀等)。一个简化的模型将被提出来解释在GSR的纳米颗粒合成过程。从纳米粒子合成模型获得这些额外的信息将提供侦查破案有价值的法医证据。这些信息法医的利益将被讨论。这种巧妙的合成机制已被证明在合成其他流行的纳米材料的纯结晶形式..

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