Bush Matthew F, Saykally Richard J, Williams Evan R
Department of Chemistry, University of California, Berkeley, California 94720-1460, USA.
J Am Chem Soc. 2008 Jul 16;130(28):9122-8. doi: 10.1021/ja801894d. Epub 2008 Jun 18.
Hydrated trivalent rare earth metal ions containing yttrium and all naturally abundant lanthanide metals are formed using electrospray ionization, and the structures and reactivities of these ions containing 17-21 water molecules are probed using blackbody infrared radiative dissociation (BIRD) and infrared action spectroscopy. With the low-energy activation conditions of BIRD, there is an abrupt transition in the dissociation pathway from the exclusive loss of a single neutral water molecule to the exclusive loss of a small protonated water cluster via a charge-separation process. This transition occurs over a narrow range of cluster sizes that differs by only a few water molecules for each metal ion. The effective turnover size at which these two dissociation rates become equal depends on metal ion identity and is poorly correlated with the third ionization energies of the isolated metals but is well correlated with the hydrolysis constants of the trivalent metal ions in bulk aqueous solution. Infrared action spectra of these ions at cluster sizes near the turnover size are largely independent of the specific identity of the trivalent metal ion, suggesting that any differences in the structures of the ions present in our experiment are subtle.
利用电喷雾电离形成了含有钇以及所有天然丰度镧系金属的水合三价稀土金属离子,并使用黑体红外辐射解离(BIRD)和红外作用光谱法探究了这些含有17 - 21个水分子的离子的结构和反应活性。在BIRD的低能活化条件下,解离途径存在一个突然转变,即从仅单个中性水分子的排他性损失转变为通过电荷分离过程排他性地损失一个小的质子化水簇。这种转变发生在一个狭窄的簇尺寸范围内,每种金属离子的簇尺寸仅相差几个水分子。这两种解离速率变得相等时的有效转换尺寸取决于金属离子的特性,与孤立金属的第三电离能相关性较差,但与本体水溶液中三价金属离子的水解常数相关性良好。在接近转换尺寸的簇尺寸下,这些离子的红外作用光谱在很大程度上与三价金属离子的具体特性无关,这表明我们实验中存在的离子结构的任何差异都很细微。