Determination of the Characteristics of the Molecular Structure of Trialkyl Phosphates by the Joint Application of Electronic Ionization Mass Spectra with Registration of Positive Ions and Negative Ions of Resonance Coupling

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Abstract

Trialkylphosphates are of considerable interest from the military-chemical point of view as precursors of highly toxic organophosphorus toxicants, possible products of their decontamination, complexing agents in processes of reprocessing of used nuclear fuel, etc. Meanwhile, the development of ways to identify these substances is still in its infancy. In addition, trialkylphosphates are an interesting subject for the search of a solution to the analytical problem of establishing the structure of O-alkyl fragments in molecules of M(O) (OR) n esters of multibasic acids, where M is the central atom (central core), n is the basicity of the acid, R are alkyl radicals with an unknown and in general case different number of carbon atoms in each of them. No general solution to this problem could be found in the book sources. The aim of this work is to develop an algorithm for in-depth identification of trialkyl phosphates, which includes establishing the belonging of the investigated substance to this class, as well as a general and reliable method for determining the number of carbon atoms in each of the O-alkyl radicals of the investigated substances. On the basis of the revealed regularities of the decay of positive molecular ions of trialkyl phosphates, as well as negative ions of resonant capture of electrons of the same compound obtained under conditions of electron ionization, an algorithm for in-depth identification of trialkyl phosphates is proposed, which includes establishing the belonging of the investigated substance to this class, as well as a general and reliable method determining the number of carbon atoms in each of the O-alkyl radicals of the substance molecule
正离子和负离子共振耦合登记电子电离质谱联合应用测定磷酸三烷基酯的分子结构特征
从军事化学的角度来看,三烷基磷酸盐作为剧毒有机磷毒物的前体、其净化后的可能产物、乏核燃料后处理过程中的络合剂等具有相当大的意义。与此同时,识别这些物质的方法仍处于起步阶段。此外,三烷基磷酸盐是一个有趣的主题,用于寻找解决在多碱酸的M(O) (OR) n酯分子中建立O-烷基片段结构的分析问题的解决方案,其中M是中心原子(中心核),n是酸的碱度,R是未知的烷基自由基,通常情况下每个烷基中碳原子的数量不同。在书籍资料中找不到这个问题的一般解决办法。这项工作的目的是开发一种算法来深入识别三烷基磷酸盐,其中包括建立所研究物质属于这一类,以及一个通用的和可靠的方法来确定所研究物质的每个o -烷基自由基中的碳原子数。根据揭示的磷酸三烷基正分子离子的衰变规律,以及在电子电离条件下获得的同化合物共振俘获电子的负离子,提出了一种深度鉴定磷酸三烷基的算法,包括确定所研究物质属于该类;以及确定物质分子中每个o -烷基自由基中碳原子数的一般可靠方法
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