首页> 外文期刊>The Journal of Chemical Physics >Limited coordination number and competitive coordination in ammonia-water mixed-ligand complexes of monopositive metal ions as studied by the laser-ablation molecular beam method: Experiment and simulation
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Limited coordination number and competitive coordination in ammonia-water mixed-ligand complexes of monopositive metal ions as studied by the laser-ablation molecular beam method: Experiment and simulation

机译:激光烧蚀分子束法研究单正金属离子氨水混合配体配合物的配位数有限和竞争配位:实验与模拟

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Ammonia-water mixed-ligand complexes of monopositive metal ions M+ (M=Mg, Al, Mn, and Co) were prepared in the gas phase by reactions of metal ions laser-ablated from a metal substrate in vacuum with ammonia-water binary clusters in a molecular beam injected nearby [the laser-ablation-molecular beam (LAMB) method]. Relative abundances of M+(NH3)(m)(H2O)(n) are characterized by intensity gaps which indicate limited (typically 2 or 3) coordination (solvation) numbers in the first coordination (solvation) sphere. Three patterns of competitive coordination (solvation), i.e., selective, nonselective, and magic-number-like, are observed. The patterns are metal-specific and relatively independent of stagnation ratios of two component gases. The coordination numbers as judged from the intensity gaps remain the same throughout the stagnation ratios studied, A model simulation of the dynamic processes involved was made under simple-minded assumptions: (1) the ensemble of metal complex ions starting from the reaction region is characterized with a temperature T-start (its value being taken as an adjustable parameter), (2) only evaporation of component ligands one by one occurs after metal complex ions start from the reaction region into the quadrupole, (3) activation energy of each evaporation step is determined by binding energy of the leaving ligand, and (4) temperature drop rate of complex ions per one microsecond is constant (its value being taken as an adjustable parameter). Such a simulation procedure is found successful in reproducing the positions of intensity gaps, together with the qualitative features; of the metal-specific coordination (solvation) patterns observed. (C) 1998 American Institute of Physics. [S0021-9606(98)00110-X]. [References: 58]
机译:通过在真空中从金属基底上激光烧蚀的金属离子与氨水二元簇反应,在气相中制备单正金属离子M +(M = Mg,Al,Mn和Co)的氨水混合配体络合物在附近注入的分子束中[激光烧蚀分子束(LAMB)方法]。 M +(NH3)(m)(H2O)(n)的相对丰度以强度缺口为特征,强度缺口表示在第一个配位(溶剂化)域中有限的(通常为2或3个)配位(溶剂化)数。观察到竞争性协调(解决)的三种模式,即选择性,非选择性和魔术数式。图案是金属特定的,并且相对独立于两种成分气体的停滞率。根据强度缺口判断的配位数在整个研究的停滞比中保持不变,在简单的假设下对涉及的动力学过程进行了模型仿真:(1)表征了从反应区域开始的金属络合物离子的整体在温度为T-start的情况下(其值作为可调参数),(2)金属络合物离子从反应区开始进入四极子后,仅一个一个地发生配体的蒸发,(3)每次蒸发的活化能步骤由离去配体的结合能确定,(4)每1微秒复合离子的温度下降速率恒定(其值作为可调参数)。发现这种模拟程序可以成功地再现强度间隙的位置以及定性特征。观察到的金属特异性配位(溶剂化)模式。 (C)1998美国物理研究所。 [S0021-9606(98)00110-X]。 [参考:58]

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