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首页> 外文期刊>The Journal of Chemical Physics >Isomer-specific spectroscopy of the (H2O)_8~- cluster anion in the intramolecular bending region by selective photodepletion of the more weakly electron binding species (isomer II)
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Isomer-specific spectroscopy of the (H2O)_8~- cluster anion in the intramolecular bending region by selective photodepletion of the more weakly electron binding species (isomer II)

机译:分子内弯曲区域中(H2O)_8〜-团簇阴离子的异构体特异性光谱学,通过较弱电子结合物种的选择性光耗化(异构体II)

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摘要

The vibrational predissociation spectra of the two more strongly electron binding forms of the (H2O)_8~- anion are obtained in the HOH intramolecular bending region.This is accomplished by deconvoluting the overlapping spectra obtained from a mixed ensemble using a population modulation scheme in which the low electron binding isomer (II) is removed from the ion packet prior to spectroscopic analysis.By choosing the energy of the photodepletion laser to lie between the vertical detachment energies of the two isomers,the contribution from isomer II can be quantitatively eliminated,leaving the population of I largely unaffected.The low binding energies involved in the application of the method to the water cluster anions necessitate that this should be carried out in the midinfrared,thus requiring two tunable ir laser systems for implementation.The isolated spectrum of isomer 1 displays a strong,redshifted feature associated with a double H-bond acceptor (AA) water molecule in direct contact with the excess electron and a large gap before higher energy features appear that are typically associated with (acceptor/donor) AD and ADD binding sites in the network.The more weakly binding isomer II does not display the AA feature and instead contributes broad structure at intermediate redshifts that merges with the region associated with neutral water cluster networks.
机译:在HOH分子内弯曲区域获得了(H2O)_8〜-阴离子的两个更强电子键合形式的振动预离解谱,这是通过使用人口调制方案对由混合系综获得的重叠谱进行去卷积来实现的,其中在进行光谱分析之前,先从离子包中除去低电子键合异构体(II)。通过选择光耗激光的能量位于两种异构体的垂直分离能之间,可以定量消除异构体II的贡献,该方法对水簇阴离子的应用具有较低的结合能,因此必须在中红外下进行,因此需要两个可调红外激光系统才能实现。异构体1的分离光谱在直接接触中显示出与双H键受体(AA)水分子相关的强大的红移特征与多余的电子和较大的间隙接触,然后出现通常与网络中(受体/供体)AD和ADD结合位点相关的高能特征。结合较弱的异构体II不显示AA特征,而是具有宽广的结构在与与中性水簇网络相关的区域合并的中间红移处。

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