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金属化黄素的红外多光子解离光谱:M(q +)-发光色素配合物(M(q +)= Li⁺ - Cs⁺、Ag⁺、Mg²⁺)的结构与键合

IRMPD spectroscopy of metalated flavins: structure and bonding of M(q+)-lumichrome complexes (M(q+) = Li⁺-Cs⁺, Ag⁺, Mg²⁺).

作者信息

Günther Alan, Nieto Pablo, Berden Giel, Oomens Jos, Dopfer Otto

机构信息

Institut für Optik und Atomare Physik, Technische Universität Berlin, Hardenbergstr. 36, D-10623 Berlin, Germany.

出版信息

Phys Chem Chem Phys. 2014 Jul 21;16(27):14161-71. doi: 10.1039/c4cp01524j. Epub 2014 Jun 6.

DOI:10.1039/c4cp01524j
PMID:24905966
Abstract

Infrared multiphoton dissociation (IRMPD) spectra of mass selected isolated metal-lumichrome ionic complexes, M(q+)LCn with M(q+) = Li(+), Na(+), K(+), Rb(+), Cs(+), Ag(+) (n = 1), and Mg(2+) (n = 2), are recorded in the fingerprint range. The complexes are generated in an electrospray ionization source coupled to an ion cyclotron mass spectrometer and the IR free electron laser FELIX. Vibrational and isomer assignments of the IRMPD spectra are accomplished by density functional theory calculations at the B3LYP/cc-pVDZ level, which provide insight into the structure, binding energy, bonding mechanism, and spectral properties of the complexes. The two major binding sites identified involve metal bonding to the oxygen atoms of the two available carbonyl groups of LC (denoted O2 and O4). The more stable O4 isomer benefits from an additional interaction with the lone pair of the nearby N5 atom of LC. While M(+)LC with alkali metals are mainly stabilized by electrostatic forces, the Ag(+)LC complex reveals additional stabilization arising from partly covalent contributions. Finally, the interaction of Mg(2+) ions with LC is largely enhanced by the doubled positive charge. The frequencies of the C[double bond, length as m-dash]O stretching modes are a sensitive indicator of both the metal binding site and the metal bond strength.

摘要

在指纹区记录了质量选择的孤立金属 - 鲁米铬离子络合物M(q+)LCn的红外多光子解离(IRMPD)光谱,其中M(q+) = Li(+)、Na(+)、K(+)、Rb(+)、Cs(+)、Ag(+)(n = 1)和Mg(2+)(n = 2)。这些络合物在与离子回旋共振质谱仪和红外自由电子激光FELIX耦合的电喷雾电离源中产生。通过在B3LYP/cc-pVDZ水平上的密度泛函理论计算完成IRMPD光谱的振动和异构体归属,这为络合物的结构、结合能、键合机制和光谱性质提供了深入了解。确定的两个主要结合位点涉及金属与LC两个可用羰基的氧原子键合(表示为O2和O4)。更稳定的O4异构体受益于与LC附近N5原子孤对的额外相互作用。虽然碱金属的M(+)LC主要通过静电力稳定,但Ag(+)LC络合物显示出部分共价贡献产生的额外稳定性。最后,Mg(2+)离子与LC的相互作用因双倍正电荷而大大增强。C[双键,长度为m破折号]O伸缩模式的频率是金属结合位点和金属键强度的敏感指标。

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