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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Valence electronic structure of sublimated Fe-4 single-molecule magnets: an experimental and theoretical characterization
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Valence electronic structure of sublimated Fe-4 single-molecule magnets: an experimental and theoretical characterization

机译:升华的Fe-4单分子磁体的价电子结构:实验和理论表征

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摘要

The valence electronic structures of two single-molecule magnets (SMMs), [Fe-4(L)(2)(dpm)(6)] and [Fe-4(L)(2)(pta)(6)], (Hdpm = dipivaloylmethane, Hpta = pivaloyltrifluoroacetone, L3- = Ph-C(CH2O)(3)(3-)), are investigated by means of ultraviolet photoemission spectroscopy (UPS) and ab initio calculations. The experimental UPS spectra of both compounds are analysed and compared with the total density of states (TDOS) computed with the hybrid functional PBE0. The substitution of half of the methyl groups in [Fe-4(L)(2)(dpm)(6)] with fluorine atoms in [Fe-4(L)(2)(pta)(6)] unexpectedly affects the spectrum shape in the Fermi region, thus becoming a useful fingerprint of the two SMMs. Moreover, a computational protocol at DFT + U level of theory is assessed on both compounds, which is in good agreement with the experimental spectroscopic and magnetic data. The basis for the future modelling of the adsorption of Fe-4 clusters on surfaces is established.
机译:[Fe-4(L)(2)(dpm)(6)]和[Fe-4(L)(2)(pta)(6)]两个单分子磁体(SMM)的价电子结构, (Hdpm =二戊酰基甲烷,Hpta =新戊酰基三氟丙酮,L3- = Ph-C(CH2O)(3)(3-)),通过紫外光发射光谱法(UPS)和从头算计算。分析了这两种化合物的实验UPS光谱,并将其与使用混合功能PBE0计算的状态总密度(TDOS)进行了比较。 [Fe-4(L)(2)(dpm)(6)]中一半的甲基被[Fe-4(L)(2)(pta)(6)]中的氟原子取代意外地影响了费米区的频谱形状,从而成为两个SMM的有用指纹。此外,在两种化合物上都评估了DFT + U理论水平的计算方案,这与实验光谱和磁数据非常吻合。建立了将来对表面上的Fe-4团簇的吸附进行建模的基础。

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