Department of Physical Chemistry, Israel Institute for Biological Research, Ness-Ziona, Israel.
Adv Exp Med Biol. 2012;733:53-61. doi: 10.1007/978-94-007-2555-3_6.
The improvements in Raman instrumentation have led to the development of -portable, simple to operate, Raman instruments that can be used for on-site analysis of substances relevant for homeland security purposes such as chemical and biological warfare and explosives materials.Raman spectroscopy, however, suffers from limited sensitivity which can be overcome by Surface-Enhanced Raman Spectroscopy (SERS). SERS can enhance the Raman signal of a target molecule by 6-10 orders of magnitude. The increased sensitivity, together with Raman's molecular recognition capabilities and the availability of portable Raman instruments make SERS a powerful analytical tool for on site detection.In this work we studied the effect of target molecules and SERS-active substrate properties on the obtained SERS, using a field portable Raman spectrometer. Also reported herein is the SERS detection of the chemical warfare agent sulfur mustard (HD, 2,2 dichloroethyl sulfide). This study may serve as a basis for the development of SERS platform for homeland security purposes.
拉曼仪器的改进使得便携式、操作简单的拉曼仪器得以开发,可用于现场分析与国土安全相关的物质,如化学和生物战剂以及爆炸物材料。然而,拉曼光谱的灵敏度有限,这可以通过表面增强拉曼光谱(SERS)来克服。SERS 可以将目标分子的拉曼信号增强 6-10 个数量级。灵敏度的提高,加上拉曼的分子识别能力和便携式拉曼仪器的可用性,使得 SERS 成为现场检测的强大分析工具。在这项工作中,我们使用现场便携式拉曼光谱仪研究了目标分子和 SERS 活性衬底性质对获得的 SERS 的影响。本文还报道了化学战剂芥子气(HD,二氯乙基硫醚)的 SERS 检测。这项研究可以为国土安全目的的 SERS 平台的开发提供依据。