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碱土金属二价阳离子配合物与吡啶和 4-皮考啉(4-甲基吡啶)的紫外光解碎片光谱。

Ultraviolet photofragmentation spectroscopy of alkaline earth dication complexes with pyridine and 4-picoline (4-methyl pyridine).

机构信息

Department of Physical and Theoretical Chemistry, School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, United Kindom.

出版信息

J Phys Chem A. 2011 Jun 30;115(25):6948-60. doi: 10.1021/jp112171j. Epub 2011 May 13.

Abstract

A detailed experimental and theoretical study has been undertaken of the UV photofragmentation spectroscopy of the alkaline earth metal dications Mg(2+), Ca(2+), and Sr(2+) complexed with pyridine and 4-methyl pyridine (4-picoline). The ion complexes have been prepared using the pick-up technique and held in an ion trap where their internal temperature has been reduced to <150 K. Exposure of the trapped ions to tunable UV laser radiation leads to the appearance of photofragments with intensities that show significant variation as a function of wavelength. For all three metal dications, the resultant spectra show evidence of resolved features. Time-dependent density functional theory (TDDFT) has been used to identify possible electronic transitions that might be present in the M(pyridine)(4) complexes (M = Mg, Ca, and Sr) within the wavelength range studied. These calculations show that the spectra are dominated by strong π* ← π and weaker π* ← n transitions localized on the pyridine ligands. The calculations correctly identify those regions of the experimental spectra where UV transitions begin to occur in the complexes and also the wavelengths at which absorption maxima are reached; however, more subtle features of the spectra are difficult to assign with confidence.

摘要

已经对与吡啶和 4-甲基吡啶(4-皮考啉)络合的碱土金属二价阳离子 Mg(2+)、Ca(2+)和 Sr(2+)的 UV 光碎解光谱进行了详细的实验和理论研究。离子络合物是使用拾波技术制备的,并保存在离子阱中,其内部温度降低到<150 K。将捕获的离子暴露于可调谐 UV 激光辐射下,会导致出现光碎片,其强度随波长显著变化。对于所有三种金属二价阳离子,所得光谱均显示出已分辨特征的证据。时变密度泛函理论(TDDFT)已用于识别可能存在于研究波长范围内的M(吡啶)(4)络合物(M = Mg、Ca 和 Sr)中的电子跃迁。这些计算表明,光谱主要由强π*←π和较弱的π*←n跃迁主导,这些跃迁定域在吡啶配体上。该计算正确地确定了实验光谱中 UV 跃迁开始发生在络合物中的那些区域,以及达到吸收最大值的波长;然而,光谱的更细微特征难以确定。

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