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Electrospray ionization mass spectrometry of the cerium(III)-phosphomoIybdate complex (NH4)_(11)Ce(PMo_(11)O_(39))2

机译:电喷雾电离质谱铈(III) - 膦酰基二巴络合物(NH4)_(11)Ce(PMO_(11)O_(39))2

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Electrospray ionization quadrupole ion trap mass spectrometry of the ammonium lanthanide(IIi) phosphomolybdate complex (NH4)_(11)Ce(III)(PMo_(11)O_(39))2 has been conducted revealing the Ce-POM complexes H2Ce(III)P2Mo_(22)O_(75)~(3-) and Ce(III)PMo_(II)uO_(38)~(2-) as the primary Ce species in 10 mM solutions. From the complex isotopic fingerprints produced through the assembly of multiple molybdenum atoms, a transition metal with seven naturally occurring isotopes, the identities of larger ions were confirmed via successive collision induced dissociation (CID) studies of the gas phase ions. The result of these CID studies was the production of smaller ions with reduced molybdenum content, allowing for comparison between calculated and experimental isotopic distributions. CID studies also provided insights into favored fragmentation pathways. These studies provide a basis to explore speciation and ESI behavior of actinide cluster complexes.
机译:电喷雾电离四极性离子捕获镧(III)磷钼钼酸盐络合物(NH4)_(11)Ce(III)(PMO_(11)O_(39))2已经进行了揭示CE-POM络合物H2CE(III )P2MO_(22)O_(75)〜(3-)和CE(III)PMO_(II)UO_(38)〜(2-)作为10 mm解决方案中的主要CE物种。通过通过多个钼原子组装产生的复杂同位素指纹,通过连续的碰撞诱导的气相离子进行了较大离子的过渡金属,较大离子的身份证实了气相离子的研究。这些CID研究的结果是生产较少的钼含量的离子,允许计算和实验同位素分布之间的比较。 CID研究还为有利的碎片途径提供了见解。这些研究提供了探讨了抗菌群体复合物的形态和ESI行为的基础。

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