Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, 91109, Pasadena, CA.
J Am Soc Mass Spectrom. 1992 Mar;3(3):243-7. doi: 10.1016/1044-0305(92)87008-M.
First results of a beam-beam, single-collision study of negative-ion mass spectra produced by attachment of zero-energy electrons to the molecules of the explosives RDX, PETN, and TNT are presented. The technique used is reversal electron attachment detection (READ) wherein the zero-energy electrons are produced by focusing an intense electron beam into a shaped electrostatic field which reverses the trajectory of electrons. The target beam is introduced at the reversal point, and attachment occurs because the electrons have essentially zero longitudinal and radial velocity. The READ technique is used to obtain the "signature" of molecular ion formation and/or fragmentation for each explosive. Present data are compared with results from atmospheric-pressure ionization and negative-ion chemical ionization methods.
首次给出了利用零能电子与 RDX、PETN 和 TNT 等爆炸物分子的附着产生负离子质谱的束流-束流、单碰撞研究的初步结果。所采用的技术是反转电子俘获探测(READ),其中零能电子是通过将强电子束聚焦到一个形状静电场中产生的,该静电场会反转电子的轨迹。靶束在反转点引入,并且由于电子实际上具有零纵向和径向速度,因此会发生附着。READ 技术用于获得每种爆炸物的分子离子形成和/或碎裂的“特征”。目前的数据与大气压电离和负离子化学电离方法的结果进行了比较。