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Effect of alkali ions on optical properties of flavins: vibronic spectra of cryogenic M+lumichrome ions (M = Li–Cs) in the gas phase

机译:碱离子对黄曲板光学性质的影响:气相中低温M + lumichrome离子(M = Li-Cs)的振动光谱

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摘要

The photochemical properties of flavins depend sensitively on their environment and are strongly modified by coordination with metal ions. Herein, the electronic spectra of cold complexes of the smallest flavin molecule (lumichrome, LC, C _(12) N _(4) O _(2) H _(10) ) with alkali ions (M ~(+) LC, M = Li–Cs) are measured by photodissociation in the visible range (VISPD) in a cryogenic ion trap coupled to a tandem mass spectrometer and an electrospray ionization source. The observed vibronic spectra of all ions are assigned to the optically bright S _(1) ← S _(0) (ππ*) transition of the most stable O4 isomer of M ~(+) LC by comparison with quantum chemical calculations at the PBE0/cc-pVDZ level coupled to multidimensional Franck–Condon simulations. The rich vibronic spectra indicate substantial geometry changes upon S _(1) excitation. Large red shifts of the S _(1) origins upon metal complexation and progressions in the intermolecular in-plane metal stretch and bend modes demonstrate that the strength of the metal–flavin interaction in M ~(+) LC(O4) strongly increases by S _(1) excitation. The stronger M ~(+) ?LC bond in the S _(1) state of M ~(+) LC(O4) is rationalized by the charge reorganization upon ππ* excitation of the LC chromophore. The computations confirm that the optical properties of LC can be strongly modulated by metalation via both the type and binding site of the metal ion.
机译:黄斑的光化学特性敏感地依赖于其环境,并通过与金属离子的协调强烈修饰。这里,用碱离子(M〜(+)LC,所述冷复合物(Lumichrome,Lc,C _(12)N _(4))的电子光谱(Lumichrome,LC,C _(12), M = Li-CS)通过在低温离子捕集器中的可见范围(VISPD)中的光积极测量,耦合到串联质谱仪和电喷雾电离源。所有离子的观察到的颤音光谱被分配给光学亮的S _(1)←S_(0)←S _(0)(πII*)通过与量子化学计算的比较,通过比较了M〜(+)LC最稳定的O4异构体的转变PBE0 / CC-PVDZ水平耦合到多维FRANCK-CONDON模拟。富有的颤音光谱表示S _(1)激发的大量几何变化。 S _(1)起源于金属络合和分子间内金属伸展和弯曲模式的较大的红色偏移表明M〜(+)LC(O4)中金属 - 黄素相互作用的强度强烈增加s _(1)激励。 m〜(1)的M〜(+)Lc(O4)状态的较强的m〜(+)ΔLc键合在ππ*激发LC发色团的激发时是合理的。计算证实,通过金属离子的类型和结合位点,可以通过金属化强烈地调节LC的光学性质。

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    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

    Institut für Optik und Atomare Physik Technische Universit?t Berlin Hardenbergstr. 36;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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