首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Influence of substituent type and position on the adsorption mechanism of phenylboronic acids: Infrared, raman, and surface-enhanced raman spectroscopy studies
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Influence of substituent type and position on the adsorption mechanism of phenylboronic acids: Infrared, raman, and surface-enhanced raman spectroscopy studies

机译:取代基类型和位置对苯基硼酸吸附机理的影响:红外,拉曼和表面增强拉曼光谱研究

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This paper shows systematic spectroscopic studies using Fourier-transform infrared absorption (FT-IR), Fourier-transform Raman (FT-Raman), and surface-enhanced Raman (SERS) in an aqueous silver sol of fluoro and formyl analogues of phenylboronic acids: 2-fluorophenylboronic acid (2-F-PhB(OH) _2), 3-fluorophenylboronic acid (3-F-PhB(OH)_2), 4-fluorophenylboronic acid (4-F-PhB(OH)_2), 2-formylphenylboronic acid (2-CHO-PhB(OH)_2), 3-formylphenylboronic acid (3-CHO-PhB(OH) _2), and 4-formylphenylboronic acid (4-CHO-PhB(OH)_2). To produce an extensive table of vibrational spectra, density functional theory (DFT) calculations with the B3LYP method at the 6-311++G(d,p) level of theory were performed for the ground state geometry of the most stable species, dimers in cis-trans conformation. On the basis of the SERS spectral profile, the adsorption modes of the phenylboronic acid isomers were proposed. The type of substituent and its position in the phenyl ring have a strong influence on the geometry of isomers on the silver nanoparticle's surface. This effect was especially evident in the case of 4-CH-PhB(OH)_2, for which dearomatization of the phenyl ring took place upon adsorption.
机译:本文展示了在氟硼酸和苯基硼酸的甲酰基类似物的水性银溶胶中使用傅里叶变换红外吸收(FT-IR),傅里叶变换拉曼(FT-Raman)和表面增强拉曼(SERS)进行的系统光谱研究: 2-氟苯基硼酸(2-F-PhB(OH)_2),3-氟苯基硼酸(3-F-PhB(OH)_2),4-氟苯基硼酸(4-F-PhB(OH)_2),2-甲酰基苯基硼酸(2-CHO-PhB(OH)_2),3-甲酰基苯基硼酸(3-CHO-PhB(OH)_2)和4-甲酰基苯基硼酸(4-CHO-PhB(OH)_2)。为了生成广泛的振动光谱表,对于最稳定的物种(二聚体)的基态几何,使用B3LYP方法在6-311 ++ G(d,p)理论水平下进行了密度泛函理论(DFT)计算。顺反构象。基于SERS谱图,提出了苯基硼酸异构体的吸附模式。取代基的类型及其在苯环中的位置对银纳米粒子表面上异构体的几何形状有很大影响。在4-CH-PhB(OH)_2的情况下,这种效果尤为明显,因为4-CH-PhB(OH)_2在吸附时发生了苯环的脱芳香化作用。

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