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与大气化学相关的水的复合物和簇:H₂O与氧化剂的复合物

Complexes and clusters of water relevant to atmospheric chemistry: H2O complexes with oxidants.

作者信息

Sennikov Petr G, Ignatov Stanislav K, Schrems Otto

机构信息

Institute of Chemistry of High Purity Substances RAS Tropinin str. 49, 603950 Nizhny Novgorod, Russia.

出版信息

Chemphyschem. 2005 Mar;6(3):392-412. doi: 10.1002/cphc.200400405.

Abstract

Experimental observations and data from quantum chemical calculations on complexes between water molecules and small, oxygen-containing inorganic species that play an important role as oxidants in the atmosphere (O(1D), O(3P), O2(X3sigmag), O2(b1sigmag+), O3, HO, HOO, HOOO, and H2O2) are reviewed, with emphasis on their structure, hydrogen bonding, interaction energies, thermodynamic parameters, and infrared spectra. In recent years, weakly bound complexes containing water have increasingly attracted scientific attention. Water in all its phases is a major player in the absorption of solar and terrestrial radiation. Thus, complexes between water and other atmospheric species may have a perceivable influence on the radiative balance and contribute to the greenhouse effect, even though their concentrations are low. In addition, they can play an important role in the chemistry of the Earth's atmosphere, particularly in the oxidation of trace gases. Apart from gas-phase complexes, the interactions of oxidants with ice surfaces have also received considerable advertency lately due to their importance in the chemistry of snow, ice clouds, and ice surfaces (e.g., ice shields in polar regions). In paleoclimate--respectively paleoenvironmental--studies, it is essential to understand the transfer processes from the atmosphere to the ice surface. Consequently, special attention is being paid here to the intercomparison of the properties of binary complexes and the complexes and clusters of more complicated compositions, including oxidants adsorbed on ice surfaces, where ice is considered a kind of large water cluster. Various facts concerning the chemistry of the Earth's atmosphere (concentration profiles and possible influence on radical reactions in the atmosphere) are discussed.

摘要

本文综述了关于水分子与大气中作为氧化剂起重要作用的小型含氧化合物(O(1D)、O(3P)、O2(X3sigmag)、O2(b1sigmag+)、O3、HO、HOO、HOOO和H2O2)之间配合物的实验观察结果和量子化学计算数据,重点关注它们的结构、氢键、相互作用能、热力学参数和红外光谱。近年来,含水的弱键配合物越来越受到科学界的关注。水在其所有相态中都是吸收太阳辐射和地球辐射的主要参与者。因此,水与其他大气物种之间的配合物可能对辐射平衡产生可感知的影响,并对温室效应有贡献,尽管它们的浓度很低。此外,它们在地球大气化学中可以发挥重要作用,特别是在痕量气体的氧化过程中。除了气相配合物外,氧化剂与冰表面的相互作用最近也受到了相当多的关注,因为它们在雪、冰云和冰表面(如极地地区的冰盾)的化学过程中具有重要意义。在古气候——分别是古环境——研究中,了解从大气到冰表面的转移过程至关重要。因此,这里特别关注二元配合物以及更复杂组成的配合物和团簇(包括吸附在冰表面的氧化剂,其中冰被视为一种大型水团簇)性质的相互比较。讨论了与地球大气化学有关的各种事实(浓度分布以及对大气中自由基反应的可能影响)。

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