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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Spectroscopic and thermodynamic study of charge transfer interactions of retinol palmitate with [60]- and [70]fullerenes by absorption spectrometric method
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Spectroscopic and thermodynamic study of charge transfer interactions of retinol palmitate with [60]- and [70]fullerenes by absorption spectrometric method

机译:吸收光谱法研究棕榈酸视黄醇与[60]-和[70]富勒烯的电荷转移相互作用的光谱和热力学研究

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摘要

Retinol palmitate (1). which is commonly called 'Vitamin A palmitate', has been shown to form charge transfer (CT) complexes with a series of electron acceptors including [60]- and [70]fullerenes, and from the trends in CT transition energies the vertical ionization potential of 1 has been estimated to be 7.73 eV. Stoichiometries of the fullerene complexes have been shown to be 1(Vitamin 1): ([70]fullerene) and 1(Vitamin 1): 2([60]fullerene). The enthalpies and entropies of formation of these two complexes have been determined by estimating the formation constants spectrophotometrically at five different temperatures. The complexation phenomenon may be utilised to dissolve the fullerenes in the non-toxic Vitamin A oil and the solution may be used for testing the biological activity of the fullerenes in vivo. (c) 2004 Elsevier B.V. All rights reserved.
机译:视黄醇棕榈酸酯(1)。它通常被称为“维生素A棕榈酸酯”,已显示与包括[60]-和[70]富勒烯在内的一系列电子受体形成电荷转移(CT)络合物,并且从CT跃迁能量的趋势来看,垂直电离能1的估计值为7.73 eV。富勒烯配合物的化学计量已显示为1(维生素1):([[70]富勒烯)和1(维生素1):2([60]富勒烯)。通过在5个不同的温度下用分光光度法估算形成常数,可以确定这两种络合物的形成焓和熵。络合现象可用于将富勒烯溶解在无毒的维生素A油中,该溶液可用于测试体内富勒烯的生物活性。 (c)2004 Elsevier B.V.保留所有权利。

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