Polfer Nick C, Oomens Jos, Dunbar Robert C
FOM Institute for Plasma Physics Rijnhuizen, Edisonbaan 14, 3439MN, Nieuwegein, The Netherlands.
Phys Chem Chem Phys. 2006 Jun 21;8(23):2744-51. doi: 10.1039/b603665a. Epub 2006 May 16.
Infrared multiple-photon dissociation (IRMPD) spectroscopy is employed to obtain detailed binding information on singly charged silver and alkali metal-ion/tryptophan complexes in the gas phase. For these complexes the presence of the salt bridge (i.e. zwitterionic) tautomer can be virtually excluded, except for perhaps a few percent in the case of Li+. Two low-energy structures having the charge solvation form are shown to be likely, where the metal cation is either in a tridentate N/O/Ring conformation or in a bidentate O/Ring conformation. These two structures can be conveniently discriminated and their relative quantities can be approximated by IR spectroscopy, based principally on diagnostic modes near approximately 1150 (N/O/Ring) and 1400 (O/Ring) cm(-1). Interestingly, the smaller cation complexes (i.e. Ag+ and Li+) display exclusively the N/O/Ring conformation, whereas the O/Ring conformer becomes progressively more abundant with increasing alkali metal size, eventually representing the majority of the ion population for Rb+ and Cs+. These spectroscopic findings are in excellent agreement with thermochemical density functional theory (DFT) calculations, giving support to the utility of high-level quantum-chemical calculations for such systems. Moreover, in contrast to other mass spectrometry-based techniques, IRMPD spectroscopy allows clear differentiation and semi-quantitative approximation of these metal-ligand binding motifs, thereby underlining its importance in thermochemical model benchmarking.
采用红外多光子解离(IRMPD)光谱法获取气相中单电荷银和碱金属离子/色氨酸配合物的详细结合信息。对于这些配合物,除了锂离子可能有百分之几的情况外,盐桥(即两性离子)互变异构体的存在几乎可以排除。结果表明,两种具有电荷溶剂化形式的低能结构是可能存在的,其中金属阳离子处于三齿N/O/环构象或双齿O/环构象。这两种结构可以很方便地加以区分,并且它们的相对数量可以通过红外光谱大致估算,主要依据大约1150(N/O/环)和1400(O/环)cm⁻¹附近的诊断模式。有趣的是,较小的阳离子配合物(即Ag⁺和Li⁺)仅呈现N/O/环构象,而随着碱金属离子尺寸的增加,O/环构象异构体逐渐变得更加丰富,最终对于Rb⁺和Cs⁺而言,该构象异构体占离子总数的大部分。这些光谱学发现与热化学密度泛函理论(DFT)计算结果高度吻合,为这类体系的高水平量子化学计算的实用性提供了支持。此外,与其他基于质谱的技术不同,IRMPD光谱法能够清晰地区分这些金属-配体结合基序并进行半定量估算,从而突出了其在热化学模型基准测试中的重要性。