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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Anharmonic coupling behind vibrational spectra of solvated ammonium: lighting up overtone states by Fermi resonance through tuning solvation environments
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Anharmonic coupling behind vibrational spectra of solvated ammonium: lighting up overtone states by Fermi resonance through tuning solvation environments

机译:溶剂化铵的振动光谱背后的Anharmonic耦合:通过调整溶剂环境通过FERMI共振照射泛隆声

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Studies on the vibrational spectra of various ammonium-centered clusters under different solvation environments have raised interest over the last thirty years. The gas-phase infrared photodissociation spectroscopy (IRPD) experiments showed that these NH4+MIDLINE HORIZONTAL ELLIPSISXn clusters exhibit rich spectral features from 2600 to 3400 cm(-1). In this work, we have simulated the vibrational spectra and analyzed couplings among vibrational quantum states in the aforementioned frequency range using ab initio anharmonic algorithms. Originating from the anharmonic couplings between NH stretching fundamentals and bending overtones, Fermi resonance (FR) is a common feature in these spectra, and its extent is determined by the magnitude of couplings and the energy matching conditions between relevant states, which are governed by the proton affinity, number, and bonding configuration of the solvation species. For weakly bound clusters consisting of rare gas atoms, FR is insignificant but not negligible; for strongly bound clusters, such as ammonium-water clusters, the hydrogen-bonded NH stretching fundamentals redshift and reach a better resonance condition, and thus light up the bending overtones as prominent FR bands. Our simulated spectra are in good agreement with previous experimental reports of these ammonium-centered clusters and provide a better understanding of the vibrational coupling behind the spectra of the NH stretching region.
机译:在不同溶剂环境下各种含铵居中簇的振动光谱的研究提高了过去三十年的兴趣。气相红外光化光谱(IRPD)实验表明,这些NH 4 +中线水平椭圆型XN簇具有2600至3400cm(-1)的富光谱特征。在这项工作中,我们使用AB Initio Anharmonic算法模拟了上述频率范围内的振动量子状态的振动谱和分析的耦合。来自NH伸展基本原理和弯曲ovtones之间的anharmonic联轴器,Fermi共振(FR)是这些光谱中的共同特征,其程度由相关状态之间的耦合程度和能量匹配条件决定质子亲和力,数量和粘接性溶剂化物种。对于由稀有气体原子组成的弱束簇,FR是微不足道的,但不能忽略不计;对于强烈的簇,如铵 - 水簇,氢键NH拉伸基本面的射频和达到更好的共振条件,从而照亮弯曲溢出作为突出的FR条带。我们的模拟光谱与以前的含铵集群的先前实验报告吻合良好,并提供了对NH拉伸区域的光谱背后的振动耦合来更好地理解。

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