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Neutral rare-gas containing charge-transfer molecules in solid matrices. I. HXeCl, HXeBr, HXeI, and HKrCl in Kr and Xe

机译:固体基质中含有中性稀有气体的电荷转移分子。 I. Kr和Xe中的HXeCl,HXeBr,HXeI和HKrCl

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摘要

Ultraviolet-irradiation of hydrogen halide containing rare gas matrices yields the formation of linear centrosymmetric cations of type (XHX)⁺, (X=Ar, Kr, Xe). Annealing of the irradiated doped solids produces, along with thermoluminescence, extremely strong absorptions in the 1700–1000 cm⁻¹ region. Based on isotopic substitution and halogen dependence of these bands, the presence of hydrogen and halogen atom(s) in these species is evident. In the present paper we show the participation of rare gas atom(s) in these new compounds. The evidence is based on studies of the thermally generated species in mixed rare gas matrices. The new species are assigned as neutral charge-transfer molecules HX⁺Y⁻ (Y=halogen), and their vibrational spectra are discussed and compared with those calculated with ab initio methods. This is the first time hydrogen and a rare gas atom has been found to make a chemical bond in a neutral stable compound. The highest level ab initio calculations on the existence of compounds of type HXY corroborate the experimental observations. The mechanism responsible for the formation of these species is also discussed. PACS: 61.80.Ba, 33.15.Fm, 81.40.Ef, 78.50.-w
机译:含有稀有气体基质的卤化氢的紫外线照射会形成(XHX)3(X = Ar,Kr,Xe)型线性中心对称阳离子。辐照的掺杂固体的退火以及热致发光在1700-1000 cm-1区域产生非常强的吸收。基于这些谱带的同位素取代和卤素依赖性,这些物种中氢和卤素原子的存在是显而易见的。在本文中,我们显示了稀有气体原子在这些新化合物中的参与。证据基于混合稀有气体基质中热生成物种的研究。将该新物种指定为中性电荷转移分子HX⁺Y⁻(Y =卤素),并讨论了它们的振动光谱,并将其与从头算方法计算出的振动光谱进行了比较。这是首次发现氢和稀有气体原子在中性稳定化合物中形成化学键。对HXY型化合物的存在进行的最高水平的从头算计算,证实了实验观察结果。还讨论了负责这些物种形成的机制。 PACS:61.80.Ba,33.15.Fm,81.40.Ef,78.50.-w

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