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采用直接进样 ESI-MS 对 CMPO 及其辐解产物进行表征。

Characterization of CMPO and its radiolysis products by direct infusion ESI-MS.

机构信息

Idaho National Laboratory, 2351 North Boulevard, Idaho Falls, ID 83415-2208, USA.

出版信息

Talanta. 2012 Sep 15;99:909-17. doi: 10.1016/j.talanta.2012.07.056. Epub 2012 Jul 26.

Abstract

Direct infusion electrospray ionization mass spectrometry (ESI-MS) approaches were developed for rapid identification of impurity compounds formed from octylphenyl-(N,N-(diisobutyl)carbamoylmethyl) phosphine oxide (CMPO) during alpha and gamma irradiation experiments of this compound in dodecane. CMPO is an aggressive Lewis base, and produces extremely abundant metal complex ions in the ESI-MS analysis that make identification of low abundance compounds that are less nucleophilic challenging. Radiolysis products were identified using several approaches including restricting ion trapping so as to exclude the abundant natiated CMPO ions, extraction of acidic products using aqueous NaOH, and extraction of basic products using HNO(3). These approaches generated protonated, natiated and deprotonated species derived from CMPO degradation products formed via radiolytic cleavages of several different bonds. Cleavages of the amide and methylene-phosphoryl bonds appear to be favored by both alpha and gamma irradiation, while alpha irradiation also appears to induce cleavage of the methylene-carbonyl bond. The degradation products observed are formed from recombination of the initially formed radicals with hydrogen, methyl, isopropyl and hydroxyl radicals that are derived either from CMPO, contacted aqueous nitric acid, or the dodecane solvent.

摘要

直接进样电喷雾电离质谱(ESI-MS)方法被开发出来,用于快速鉴定在辛基苯基-(N,N-(二异丁基)氨甲酰甲基)氧化膦(CMPO)在正十二烷中进行α和γ辐照实验时形成的杂质化合物。CMPO 是一种剧烈的路易斯碱,在 ESI-MS 分析中产生极其丰富的金属络合离子,这使得鉴定低丰度的、亲核性较弱的化合物具有挑战性。通过几种方法鉴定了辐解产物,包括限制离子阱以排除丰富的 CMPO 离子、用氢氧化钠水溶液提取酸性产物以及用硝酸提取碱性产物。这些方法生成了源自 CMPO 降解产物的质子化、甲硅烷基化和去质子化物种,这些产物是通过几种不同键的辐射裂解形成的。酰胺和亚甲基膦酰基键的裂解似乎受到α和γ辐照的青睐,而α辐照似乎也诱导了亚甲基-羰基键的裂解。观察到的降解产物是由最初形成的自由基与氢、甲基、异丙基和羟基自由基重新组合形成的,这些自由基要么来自 CMPO,要么来自接触的硝酸,要么来自正十二烷溶剂。

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