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In situ trace detection of peroxide explosives by desorption electrospray ionization and desorption atmospheric pressure chemical ionization

机译:解吸电喷雾电离和解吸大气压化学电离原位痕量检测过氧化物炸药

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Desorption electrospray ionization (DESI) mass spectrometry is used for the rapid (<5 s), selective, and sensitive detection of trace amounts of the peroxide-based explosives, hexamethylene triperoxide diamine (HMTD), tetracetone tetraperoxide (TrATrP), and triacetone triperoxide (FATP), directly from ambient surfaces without any sample preparation. The analytes are observed as the alkali metal ion complexes. Remarkably, collision:induced dissociation (CID) of the HMTD, TATP, and TrATrP complexes with Na+, K+, and U+ occurs with retention of the metal, a process triggered by an unusual homolytic cleavage of the peroxide bond, forming a distonic ion. This is followed by elimination of a fragment of 30 mass units, shown to be the expected neutral molecule, formaldehyde, in the case of HMTD, but shown by isotopic labeling experiments to be ethane in the cases of TATP and TrATrP. Density functional theory (DFT) calculations support the suggested fragmentation mechanisms for the complexes. Binding energies of Na+ of 40.2 and 33.1 kcal/mol were calculated for TATP-Na+ and HMTD-Na+ complexes, suggesting a strong interaction between the peroxide groups and the sodium ion. Increased selectivity is obtained either by MS/MS or by doping the spray solvent with additives that produce the lithium and potassium complexes of TATP, HMTD, and TrATrP. Addition of dopants into the solvent spray increased the signal intensity by an order of magnitude. When pure alcohol or aqueous hydrogen peroxide was used as the spray solvent, the (HMTD + Na)(+) complex was able to bind a molecule of alcohol (methanol or ethanol) or hydrogen peroxide, providing additional characteristic ions to increase the selectivity of analysis. DESI also allowed the rapid detection of peroxide explosives in complex matrixes such as diesel fuel and lubricants using single or multiple cation additives (Na+, K+, and U+, and NH4+) in the spray solvent Low-nanogram detection limits were achieved for HMTD, TrATrP, and TATP in these complex matrixes. The DESI response was linear over 3 orders of magnitude for HMTD) and TATP on paper surfaces (1 - 5000 ng), and quantification of both peroxide explosives from paper gave precisions (RSD) of less than 3%. The use of pure water and compressed air as the DESI spray solution and nebulizing gas, respectively, showed similar ionization efficiencies to those obtained using methanol/water mixtures and nitrogen gas (the typical choices). An alternative ambient method, desorption atmospheric pressure chemical ionization (DAPCI), was also used to detect trace amounts of HMTD and TATP in air by complexation with gas-phase ammonium ions (NH4+) generated by atmospheric pressure ammonia ionization.
机译:解吸电喷雾电离(DESI)质谱用于快速(<5 s),选择性和灵敏地检测痕量的过氧化物基炸药,六亚甲基三氧化二胺(HMTD),四丙酮四过氧化物(TrATrP)和三丙酮三过氧化物(FATP),直接从环境表面进行,无需任何样品准备。观察到分析物为碱金属离子络合物。值得注意的是,HMTD,TATP和TrATrP络合物与Na +,K +和U +的碰撞诱导解离(CID)伴随金属的保留而发生,该过程是由过氧化物键的不寻常的均相裂解触发的,从而形成扭曲离子。接下来是消除30个质量单位的片段(对于HMTD,显示为预期的中性分子甲醛),但对于TATP和TrATrP,同位素标记实验显示为乙烷。密度泛函理论(DFT)计算支持所提出的复合物碎裂机理。对于TATP-Na +和HMTD-Na +复合物,Na +的结合能为40.2和33.1 kcal / mol,表明过氧化物基团与钠离子之间有很强的相互作用。通过MS / MS或通过在喷雾溶剂中掺入可产生TATP,HMTD和TrATrP的锂和钾配合物的添加剂,可以提高选择性。向溶剂喷雾中添加掺杂剂可使信号强度增加一个数量级。当纯乙醇或过氧化氢水溶液用作喷雾溶剂时,(HMTD + Na)(+)络合物能够结合醇(甲醇或乙醇)或过氧化氢分子,从而提供额外的特征离子,从而提高了H2O3的选择性。分析。 DESI还允许在喷雾溶剂中使用单一或多种阳离子添加剂(Na +,K +和U +和NH4 +)快速检测复杂基质(例如柴油和润滑油)中的过氧化物炸药,从而实现HMTD,TrATrP的低纳克检出限和这些复杂矩阵中的TATP。对于纸张表面(HMTD)和TATP(1-5000 ng),DESI响应在3个数量级上呈线性关系,并且对纸张中两种过氧化物炸药的定量分析得出的精密度(RSD)均小于3%。纯水和压缩空气分别用作DESI喷雾溶液和雾化气体,显示出与使用甲醇/水混合物和氮气(典型选择)相似的电离效率。还可以使用一种替代的环境方法,即解吸大气压化学电离(DAPCI),通过与大气压氨离子化产生的气相铵离子(NH4 +)络合来检测空气中的痕量HMTD和TATP。

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