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首页> 外文期刊>Journal of the American Chemical Society >Probing the Electronic Structure of Early Transition-Metal Oxide Clusters: Polyhedral Cages of (V_2O_5)_n~- (n = 2-4) and (M_2O_5)_2~- (M = Nb, Ta)
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Probing the Electronic Structure of Early Transition-Metal Oxide Clusters: Polyhedral Cages of (V_2O_5)_n~- (n = 2-4) and (M_2O_5)_2~- (M = Nb, Ta)

机译:探索早期过渡金属氧化物簇的电子结构:(V_2O_5)_n〜-(n = 2-4)和(M_2O_5)_2〜-(M = Nb,Ta)的多面体笼

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摘要

Vanadium oxide clusters, (V_2O_5)_n, have been predicted to possess interesting polyhedral cage structures, which may serve as ideal molecular models for oxide surfaces and catalysts. Here we examine the electronic properties of these oxide clusters via anion photoelectron spectroscopy for (V_2O_5)_n~- (n = 2-4), as well as for the 4d/5d species, Nb_4O_(10) and Ta_4O_(10)~-. Well-resolved photoelectron spectra have been obtained at 193 and 157 nm and used to compare with density functional calculations. Very high electron affinities and large HOMO-LUMO gaps are observed for all the (V_2O_5)_n clusters. The HOMO-LUMO gaps of (V_2O_5)_n, all exceeding that of the band gap of the bulk oxide, are found to increase with cluster size from n = 2-4. For the M_4O_(10) clusters, we find that the Nb/Ta species yield similar spectra, both possessing lower electron affinities and larger HOMO-LUMO gaps relative to V_4O_(10). The structures of the anionic and neutral clusters are optimized; the calculated electron binding energies and excitation spectra for the global minimum cage structures are in good agreement with the experiment. Evidence is also observed for the predicted trend of electron delocalization versus localization in the (V_2O_5)_n~- clusters. Further insights are provided pertaining to the potential chemical reactivities of the oxide clusters and properties of the bulk oxides.
机译:氧化钒团簇(V_2O_5)_n已被预测具有有趣的多面体笼状结构,可作为氧化物表面和催化剂的理想分子模型。在这里,我们通过(V_2O_5)_n〜-(n = 2-4)以及4d / 5d物种Nb_4O_(10)和Ta_4O_(10)〜-的阴离子光电子能谱检查了这些氧化物簇的电子性质。 。在193和157 nm处获得了分辨良好的光电子光谱,并用于与密度泛函计算进行比较。对于所有(V_2O_5)_n团簇,观察到非常高的电子亲和力和较大的HOMO-LUMO间隙。发现全部超过本体氧化物的带隙的(V_2O_5)_n的HOMO-LUMO间隙随着簇尺寸从n = 2-4而增加。对于M_4O_(10)团簇,我们发现Nb / Ta物种产生相似的光谱,相对于V_4O_(10),它们都具有较低的电子亲和力和较大的HOMO-LUMO间隙。阴离子和中性簇的结构得到优化。计算得到的整体最小笼形结构的电子结合能和激发光谱与实验吻合良好。在(V_2O_5)_n〜-团簇中,电子离域与定位的预测趋势也得到了观察。提供了有关氧化物簇的潜在化学反应性和本体氧化物性质的更多见解。

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