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首页> 外文期刊>The Journal of Chemical Physics >Gas phase ion chemistry and ab initio theoretical study of phosphine. III. Reactions of PH2+ and PH3+ with PH3
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Gas phase ion chemistry and ab initio theoretical study of phosphine. III. Reactions of PH2+ and PH3+ with PH3

机译:膦的气相离子化学和从头算理论研究。三, PH2 +和PH3 +与PH3的反应

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The gas phase ion chemistry of phosphine has been investigated by ab initio theoretical calculations and experimental techniques. Following previous studies dealing with P-3(+) and PH+ reacting with PH3, the quantum chemical study of these processes has been extended to the ion/molecule reactions starting from PH2+ and PH3 (reaction a) or PH3+ and PH3 (reaction b), as observed by ion trapping. In these experiments, PH2+ reacts to give P2Hn+ (n = 1,3) product ions, with loss of H-2 through different pathways. These processes take place at quite different rates, their constants being 2.6 and 7.6x10(-10) cm(3) molecule(-1) s(-1), respectively. The geometrical structures and energies of transition structures, reaction intermediates, and final products have been determined by ab initio theoretical methods. The initial step of the reaction of PH2+ with PH3 is formation of the H2P-PH3+ adduct. Then, a hydrogen molecule can be directly lost either from tricoordinated or tetracoordinated phosphorus, to give P-PH3+ or HP = PH2+, respectively. The shift of one H atom in HP = PH2+ produces the bridged HP(H)PH+ ion, from which further dissociation of H-2 yields PPH+. The initial step of the reaction of PH3+ with PH3 is formation of the H3P-PH3+ adduct. Then inversion of the H atoms in the PH3 group transforms the adduct in an electrostatic complex. This last species is related by a dissociation process to the PH2 and PH4+ products. The heats of formation of the P2Hn+ (n = 1-6) ionic species have been computed and compared with the experimental data in the literature. (C) 2000 American Institute of Physics. [S0021-9606(00)31204-1]. [References: 48]
机译:从头进行理论计算和实验技术研究了膦的气相离子化学。在先前关于P-3(+)和PH +与PH3反应的研究之后,这些过程的量子化学研究已扩展到从PH2 +和PH3(反应a)或PH3 +和PH3(反应b)开始的离子/分子反应。如通过离子阱观察到的。在这些实验中,PH2 +反应生成P2Hn +(n = 1,3)产物离子,并通过不同途径损失H-2。这些过程以完全不同的速率发生,它们的常数分别为2.6和7.6x10(-10)cm(3)分子(-1)s(-1)。过渡结构,反应中间体和最终产物的几何结构和能量已通过从头算的理论方法确定。 PH2 +与PH3反应的第一步是形成H2P-PH3 +加合物。然后,氢分子可以直接从三配位或四配位的磷中丢失,分别得到P-PH3 +或HP = PH2 +。 HP = PH2 +中一个H原子的移动产生桥连的HP(H)PH +离子,H-2进一步离解会产生PPH +。 PH3 +与PH3反应的第一步是形成H3P-PH3 +加合物。然后,PH3基团中的H原子反转将加成物转变为静电配合物。这最后一个物种通过解离过程与PH2和PH4 +产物相关。计算了P2Hn +(n = 1-6)离子物质的形成热,并将其与文献中的实验数据进行了比较。 (C)2000美国物理研究所。 [S0021-9606(00)31204-1]。 [参考:48]

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