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PHOTOELECTRON SPECTROSCOPY ON SMALL ANIONIC COPPER-CARBONYL CLUSTERS

机译:小阴离子铜羰基团簇的光电子能谱

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Anion photoelectron spectroscopy in combination with density functional theory(DFT)calculations has been used to study mono-and dinuclear copper-carbonyl clusters Cu_n(CO)_m~-(n = 1,2;m = 2-5).The adiabatic detachment energies of the anions have been measured which correspond to the electron affinities of the respective neutral species.The corresponding values are 0.95 eV for Cu(CO)2,1.02 eV for Cu(CO)3,1.04 eV for Cu(CO)4,1.43 eV for Cu2(CO)4,and 1.19 eV for Cu2(CO)5.All spectra exhibit a pronounced vibrational fine structure on the adiabatic photodetachment peak.The energy splitting is close to the energy of the C-0 stretching vibration of the neutral cluster(final state).The DFT calculations clearly indicate that in all clusters the highest occupied molecular orbital(HOMO)is a CO-derived re* orbital.Furthermore the calculations are used to give insight into geometry,frontier orbitals,vibrational frequencies and spin multiplicity of the neutral and anionic clusters.
机译:阴离子光电子能谱结合密度泛函理论(DFT)计算已用于研究单核和双核羰基铜-铜团簇Cu_n(CO)_m〜-(n = 1,2; m = 2-5)。测量了与各自中性物质的电子亲和力相对应的阴离子能量.Cu(CO)2的对应值为0.95 eV,Cu(CO)3的对应值为1.02 eV,Cu(CO)4的对应值为1.04 eV, Cu2(CO)4为1.43 eV,Cu2(CO)5为1.19 eV,所有光谱均在绝热光解峰上表现出明显的振动精细结构,能量分裂接近C-0拉伸振动的能量。 DFT计算清楚地表明,在所有簇中,最高占据的分子轨道(HOMO)是CO衍生的re *轨道。此外,这些计算还用于深入了解几何形状,边界轨道,振动频率和中性和阴离子簇的自旋多重性。

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