Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
J Org Chem. 2011 May 6;76(9):2976-93. doi: 10.1021/jo200280c. Epub 2011 Mar 31.
The nitramine-containing explosive RDX and the nitroester-containing explosive PETN are shown to be susceptible to photofragmentation upon exposure to sunlight. Model compounds containing nitroester and nitramine moieties are also shown to fragment upon exposure to UV irradiation. The products of this photofragmentation are reactive, electrophilic NO(x) species, such as nitrous and nitric acid, nitric oxide, and nitrogen dioxide. N,N-Dimethylaniline is capable of being nitrated by the reactive, electrophilic NO(x) photofragmentation products of RDX and PETN. A series of 9,9-disubstituted 9,10-dihydroacridines (DHAs) are synthesized from either N-phenylanthranilic acid methyl ester or a diphenylamine derivative and are similarly shown to be rapidly nitrated by the photofragmentation products of RDX and PETN. A new (turn-on) emission signal at 550 nm is observed upon nitration of DHAs due to the generation of fluorescent donor-acceptor chromophores. Using fluorescence spectroscopy, the presence of ca. 1.2 ng of RDX and 320 pg of PETN can be detected by DHA indicators in the solid state upon exposure to sunlight. The nitration of aromatic amines by the photofragmentation products of RDX and PETN is presented as a unique, highly selective detection mechanism for nitroester- and nitramine-containing explosives and DHAs are presented as inexpensive and impermanent fluorogenic indicators for the selective, standoff/remote identification of RDX and PETN.
硝胺炸药 RDX 和硝基酯炸药 PETN 暴露于阳光时会发生光解,容易发生光解。含有硝基酯和硝胺部分的模型化合物在暴露于紫外线照射时也会发生断裂。这种光解的产物是反应性的亲电 NO(x)物质,如亚硝酸和硝酸、一氧化氮和二氧化氮。N,N-二甲基苯胺能够被 RDX 和 PETN 的反应性亲电 NO(x)光解产物硝化。一系列 9,9-二取代 9,10-二氢吖啶(DHAs)由 N-苯基邻氨基苯甲酸甲酯或二苯胺衍生物合成,并且同样被 RDX 和 PETN 的光解产物快速硝化。由于产生了荧光给体-受体发色团,在硝化 DHAs 时观察到 550nm 处新的(开启)发射信号。使用荧光光谱法,在固态下,通过 DHA 指示剂可以检测到约 1.2ng 的 RDX 和 320pg 的 PETN 暴露于阳光时的存在。RDX 和 PETN 光解产物对芳胺的硝化作用提出了一种独特的、高选择性的检测硝酯和硝胺炸药的方法,并且 DHAs 作为廉价的、非永久性的荧光指示剂,用于 RDX 和 PETN 的选择性、远距离/远程识别。