Heine Nadja, Yacovitch Tara I, Schubert Franziska, Brieger Claudia, Neumark Daniel M, Asmis Knut R
Fritz-Haber-Institut der Max-Planck-Gesellschaft , Faradayweg 4-6, D-14195 Berlin, Germany.
J Phys Chem A. 2014 Sep 4;118(35):7613-22. doi: 10.1021/jp412222q. Epub 2014 May 5.
Infrared multiple photon dissociation (IRMPD) spectra of NO3(-)(HNO3)m(H2O)n(H2)z with m = 1-3, up to n = 8 and z ≥ 1, are measured in the fingerprint region (550-1880 cm(-1)), directly probing the NO-stretching modes, as well as bending and other lower frequency modes. The assignment of the spectra is aided by electronic structure calculations. The IRMPD spectrum of the m = 1, n = 0 cluster is distinctly different from all the other measured spectra as a result of strong hydrogen bonding, leading to an equally shared proton in between two nitrate moieties (O2NO(-)···H(+)···ONO2(-)). It exhibits a strong absorption at 877 cm(-1) and lacks the characteristic NO2-antisymmetric stretching/NOH-bending mode absorption close to 1650 cm(-1). Addition of at least one more nitric acid molecule or two more water molecules weakens the hydrogen bond network, breaking the symmetry of this arrangement and leading to localization of the proton near one of the nitrate cores, effectively forming HNO3 hydrogen-bonded to NO3(-). Not all IR active modes are observed in the IRMPD spectra of the bare nitrate-nitric acid clusters. Addition of a water or a hydrogen molecule lowers the dissociation limit of the complexes and relaxes (H2O) or lifts (H2) this IRMPD transparency.
测量了m = 1 - 3、n最大为8且z≥1时的NO3(-)(HNO3)m(H2O)n(H2)z的红外多光子解离(IRMPD)光谱,该光谱在指纹区(550 - 1880 cm(-1))测量,直接探测NO伸缩模式以及弯曲和其他低频模式。通过电子结构计算辅助光谱归属。m = 1、n = 0的团簇的IRMPD光谱与所有其他测量光谱明显不同,这是由于强氢键作用,导致两个硝酸根部分之间存在一个共享质子(O2NO(-)···H(+)···ONO2(-))。它在877 cm(-1)处有强吸收,并且在接近1650 cm(-1)处缺乏特征性的NO2不对称伸缩/NOH弯曲模式吸收。添加至少一个以上的硝酸分子或两个以上的水分子会削弱氢键网络,打破这种排列的对称性,并导致质子定位于其中一个硝酸根核心附近,有效地形成与NO3(-)氢键结合的HNO3。在裸露的硝酸盐 - 硝酸团簇的IRMPD光谱中并非观察到所有红外活性模式。添加一个水分子或一个氢分子会降低配合物的解离极限,并放宽(对于H2O)或提升(对于H2)这种IRMPD透明度。