首页> 外文期刊>The Journal of Chemical Physics >Geometries of H2S center dot center dot center dot MI (M = Cu, Ag, Au) complexes studied by rotational spectroscopy: The effect of the metal atom
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Geometries of H2S center dot center dot center dot MI (M = Cu, Ag, Au) complexes studied by rotational spectroscopy: The effect of the metal atom

机译:旋转光谱研究的H2S中心点中心点中心点几何形状(M = Cu,Ag,Au)络合物:金属原子的影响

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Complexes formed between H2S and each of CuI, AgI, and AuI have been isolated and structurally characterised in the gas phase. The H2S center dot center dot center dot MI complexes (where M is the metal atom) are generated through laser vaporisation of a metal rod in the presence of a low concentration of H2S and CF3I in a buffer gas of argon undergoing supersonic expansion. The microwave spectra of six isotopologues of each of H2S center dot center dot center dot CuI, H2S center dot center dot center dot AgI and three isotopologues of H2S center dot center dot center dot AuI have been measured by chirped-pulse Fourier transform microwave spectroscopy. The spectra are interpreted to determine geometries for the complexes and to establish the values of structural parameters. The complexes have C-s symmetry at equilibrium and have a pyramidal configuration about the sulfur atom. The local C-2 axis of the hydrogen sulfide molecule intersects the linear axis defined by the three heavy atoms at an angle, phi = 75.00(47)degrees for M= Cu, phi = 78.43(76)degrees for M= Ag, and phi = 71.587(13)degrees for M= Au. The trend in the molecular geometries is consistent with significant relativistic effects in the gold-containing complex. The force constant describing the interaction between the H2S and MI sub-units is determined from the measured centrifugal distortion constant, Delta(J), of each complex. Nuclear quadrupole coupling constants, chi(aa)(M) and chi(aa)(I) (where M denotes the metal atom), are determined for H2S center dot center dot center dot CuI and H2S center dot center dot center dot AuI for the first time. Published by AIP Publishing.
机译:H2S与CuI,AgI和AuI中的每一种之间形成的配合物已被分离出来,并在气相中进行了结构表征。 H 2 S中心点中心点中心点MI配合物(其中M为金属原子)是在低浓度的H2S和CF3I存在于超音速膨胀的氩气缓冲气体中,通过金属棒的激光汽化而生成的。通过chi脉冲傅里叶变换微波光谱法测量了H2S中心点中心点中心点CuI,H2S中心点中心点中心点AgI和H2S中心点中心点中心点AuI的六个同位素。解释光谱以确定复合物的几何形状并确定结构参数的值。该络合物在平衡时具有C-s对称性,并且具有围绕硫原子的金字塔构型。硫化氢分子的局部C-2轴与三个重原子定义的线性轴相交成一个角度,M = Cu时phi = 75.00(47)度,M = Ag时phi = 78.43(76)度,对于M = Au,phi = 71.587(13)度。分子几何结构的趋势与含金络合物的显着相对论效应相一致。根据每个复合体的离心畸变常数Delta(J)确定确定H2S和MI子单元之间相互作用的力常数。对于H2S中心点中心点中心点中心点CuI和H2S中心点中心点中心点中心点AuI,确定核四极耦合常数chi(aa)(M)和chi(aa)(I)(其中M表示金属原子)。第一次。由AIP Publishing发布。

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