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首页> 外文期刊>The Journal of Chemical Physics >The absorption and excitation spectroscopy of matrix-isolated atomic manganese:Sites of isolation in the solid rare gases
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The absorption and excitation spectroscopy of matrix-isolated atomic manganese:Sites of isolation in the solid rare gases

机译:基质分离的原子锰的吸收和激发光谱:固体稀有气体中的分离点

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This study collects information from absorption and luminescence excitation spectra recorded for Mn atoms isolated in the solid rare gases Ar,Kr,and Xe and presents an analysis of the site occupancy,based on the polarizabilities of the rare gases and the observed spectral shifts.Two thermally stable sites of isolation exist for atomic Mn in solid Ar and Kr,while a single thermally stable site is present in Mn/Xe.Site occupancy assignments are based on the application of a polarizability model to the z ~6P_(5/2)<-a~6S_(5/2);z ~8P_(5/2)<-a ~6S_(5/2),and y ~6P_(5/2)<-a ~6S_(5/2) electronic transitions of atomic Mn.From an analysis of the observed RG matrix-to-gas phase energy shifts for P<-S type transitions,this model allows the association of certain site types occupied by metal atoms in the rare gas solids.The required condition being a linear dependence of the matrix shifts with rare gas polarizability for those metal atoms "trapped" in a particular site type.Application of the polarizability model in conjunction with trends observed in site dominance,established a connection between the blue sites in Ar and Kr and the single site in Xe.Use of the known Mgcentre dotRG ground state bond lengths facilitated an identification of the sites of Mn atom isolation assuming the transference of the known Mgcentre dotRG bond lengths to the Mncentre dotRG systems.Substitutional site occupancy of atomic Mn is assigned to the blue sites in Ar and Kr and the single site in Xe,while tetra-vacancy site occupancy is assigned to the red sites in Ar and Kr.Consistent with these assignments,Mn atoms in solid Ar show a preference for trapping in tetra-vacancy sites whereas in solid Kr,single substitutional sites are preferred and in Xe,this is the only site observed.
机译:这项研究从记录在固体稀有气体Ar,Kr和Xe中分离出的Mn原子的吸收和发光激发光谱中收集信息,并根据稀有气体的极化率和观察到的光谱位移对位占据进行了分析.2固体Ar和Kr中的原子Mn存在一个热稳定的隔离位点,而Mn / Xe中存在一个热稳定的位点。站点占有率的分配基于对z〜6P_(5/2)的极化率模型的应用。 <-a〜6S_(5/2); z〜8P_(5/2)<-a〜6S_(5/2),y〜6P_(5/2)<-a〜6S_(5/2)电子通过对观察到的P <-S型跃迁的RG矩阵到气相的能量转移进行分析,该模型允许关联稀有气体固体中金属原子占据的某些位点类型。对于在特定位点类型中“捕获”的那些金属原子,基体位移与稀有气体极化率的线性相关性。 zability模型与位点优势的趋势相结合,在Ar和Kr的蓝色位点与Xe的单个位点之间建立了联系。使用已知的Mgcentre dotRG基态键长有助于确定Mn原子的分离位点原子Mn的取代位点占位被分配给Ar和Kr中的蓝色位点,而Xe原子中的单个位点,而四空位位点占位被分配给红色位点与这些赋值相一致,固体Ar中的Mn原子表现出更倾向于俘获四空位,而在固体Kr中,单取代位是优选的,而在Xe中,这是唯一观察到的位点。

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