Bush Matthew F, Saykally Richard J, Williams Evan R
Department of Chemistry, University of California, Berkeley, CA 94720-1460, United States.
Int J Mass Spectrom. 2006 Jul 1;253(3):256-262. doi: 10.1016/j.ijms.2006.04.009.
Forming hydrated clusters containing triply charged metal ions is challenging due to the competing process of dissociation by forming the metal hydroxide with one less net charge and a protonated water molecule. It is demonstrated for the first time that it is possible to form such clusters using a method we call "nanodrop mass spectrometry". Clusters of the form M(H(2)O)(n), where M = Ce, Eu, and La, are generated using electrospray ionization and are mass analyzed in a Fourier-transform ion cyclotron resonance mass spectrometer with an ion cell cooled to -140 °C. Clusters containing trivalent La with n ranging from 16 to over 160 can be readily produced. These clusters are stable at this temperature for many seconds, enabling all standard methods to probe structure and reactivity of these unusual species. Photodissociation experiments on extensively hydrated clusters of trivalent lanthanum using resonant infrared radiation indicate that a minimum of 17 water molecules is necessary to stabilize these trivalent clusters under the low-energy ion excitation conditions and long time frame of these experiments. These results indicate that a minimum droplet size of approximately a nanometer is necessary for these trivalent species to survive intact. This suggests that elemental speciation of trivalent metal ions from aqueous solutions should be possible using nanodrop mass spectrometry.
形成包含三价金属离子的水合簇具有挑战性,因为存在通过形成净电荷少一个的金属氢氧化物和一个质子化水分子而发生解离的竞争过程。首次证明使用我们称为“纳米液滴质谱法”的方法可以形成这样的簇。通过电喷雾电离产生形式为[M(H₂O)ₙ]³⁺的簇,其中M = Ce、Eu和La,并在离子池冷却至 -140 °C的傅里叶变换离子回旋共振质谱仪中进行质量分析。可以很容易地产生包含三价La且n范围从16到超过160的簇。这些簇在该温度下稳定许多秒,使得所有标准方法都能够探测这些不寻常物种的结构和反应性。使用共振红外辐射对三价镧的高度水合簇进行光解离实验表明,在这些实验的低能量离子激发条件和长时间范围内,至少需要17个水分子来稳定这些三价簇。这些结果表明,对于这些三价物种完整存活来说,大约一纳米的最小液滴尺寸是必要的。这表明使用纳米液滴质谱法从水溶液中对三价金属离子进行元素形态分析应该是可行的。