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Vibrational signatures of hydrogen bonding in the protonated ammonia clusters NH4+(NH3)(1-4)

机译:质子化氨团簇NH4 +(NH3)(1-4)中氢键的振动特征

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The gas phase vibrational spectroscopy of the protonated ammonia dimer N2H7+, a prototypical system for strong hydrogen bonding, is studied in the spectral region from 330 to 1650 cm(-1) by combining infrared multiple photon dissociation and multidimensional quantum mechanical simulations. The fundamental transition of the antisymmetric proton stretching vibration is observed at 374 cm(-1) and assigned on the basis of a six-dimensional model Hamiltonian, which predicts this transition at 471 cm(-1). Photodissociation spectra of the larger protonated ammonia clusters NH4+(NH3)(n) with n=2-4 are also reported for the range from 1050 to 1575 cm(-1). The main absorption features can be assigned within the harmonic approximation, supporting earlier evidence that hydrogen bonding in these clusters is considerably weaker than for n=1.
机译:通过结合红外多光子解离和多维量子力学模拟,研究了质子化氨二聚体N2H7 +(用于强氢键合的原型系统)的气相振动光谱,其光谱范围为330至1650 cm(-1)。反对称质子拉伸振动的基本转变在374 cm(-1)处观察到,并基于六维模型哈密顿量进行分配,该模型预测了该转变在471 cm(-1)处。还报道了较大的质子化氨簇NH4 +(NH3)(n)(n = 2-4)的光解离光谱,范围为1050至1575 cm(-1)。可以在谐波近似内分配主要吸收特征,从而支持较早的证据表明这些簇中的氢键比n = 1时弱得多。

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