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首页> 外文期刊>European journal of mass spectrometry >Gas-phase kinetic measurements of the ligation of Ni+, Cu+, Ni(pyrrole)(1,2)(+) and Cu(pyrrole)(1,2)(+) with CO2, D2O, NH3 and NO
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Gas-phase kinetic measurements of the ligation of Ni+, Cu+, Ni(pyrrole)(1,2)(+) and Cu(pyrrole)(1,2)(+) with CO2, D2O, NH3 and NO

机译:Ni +,Cu +,Ni(吡咯)(1,2)(+)和Cu(吡咯)(1,2)(+)与CO2,D2O,NH3和NO的连接的气相动力学测量

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The rate and equilibrium kinetics of the reactions of the biologically important metal species M+, M+(pyrrole) and M+(pyrrole)2 (M = Ni, Cu) have been investigated with the biological gases CO2, D2O, NH3 and NO in the gas phase at 295 +/- 2 K in helium buffer-gas at a pressure of 0.35 +/- 0.01 Torr. The measurements were taken with an Inductively Coupled Plasma/Selected-Ion Flow Tube (ICP/SIFT) tandem mass spectrometer. Only ligation was observed for the reactions of bare Ni+ and Cu+ with CO2, D2O and NH3 with rates consistent with the known strengths of the resulting ligand-metal bonds. Both metal cations appeared to be oxidized and produce N2O in interesting reactions that are second order in NO. One pyrrole ligand was observed to increase the rate of ligation by as much as a factor of 100 and to switch off the oxidation with NO. Equilibrium was achieved for the ligation of CO2, D2O and NO to both Ni+(pyrrole) and Cu+(pyrrole), and so it was possible to determine absolute values for the standard free energies of ligation. No ligand substitution was observed with M+(pyrrole). M+(pyrrole)(2) was observed to be generally unreactive towards the small molecules investigated: a notable exception is ammonia. Very fast ligand substitution reactions were observed for reactions of M+(pyrrole)(2) with NH3.
机译:研究了生物重要金属物种M +,M +(吡咯)和M +(吡咯)2(M = Ni,Cu)与气体中的生物气体CO2,D2O,NH3和NO的反应速率和平衡动力学在295 +/- 2 K的氦气缓冲气体中以0.35 +/- 0.01托的压力固定相。使用电感耦合等离子体/选择离子流管(ICP / SIFT)串联质谱仪进行测量。仅观察到裸露的Ni +和Cu +与CO2,D2O和NH3的反应,反应速率与所得配体-金属键的已知强度一致。两种金属阳离子似乎都被氧化并在有趣的反应中生成N2O,这是NO中的第二阶。观察到一种吡咯配体将连接速率提高了100倍,并关闭了NO的氧化作用。 CO2,D2O和NO与Ni +(吡咯)和Cu +(吡咯)的连接均达到平衡,因此可以确定标准的自由连接能的绝对值。用M +(吡咯)未观察到配体取代。观察到M +(吡咯)(2)通常与所研究的小分子无反应:一个明显的例外是氨。 M +(吡咯)(2)与NH3的反应观察到非常快速的配体取代反应。

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