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首页> 外文期刊>Journal of Molecular Structure >Characterization of potassium (2-phenylacetyl) trifluoroborate salt by using the UV-Visible, FT-IR and FT-Raman spectra
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Characterization of potassium (2-phenylacetyl) trifluoroborate salt by using the UV-Visible, FT-IR and FT-Raman spectra

机译:使用UV可见光,FT-IR和FT-拉曼光谱来表征钾(2-苯基乙酰基)三氟硼酸盐的表征

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The potassium 2-phenylacetyl-trifluoroborate (PTFB) salt has been experimentally characterized by using FT-IR, FT-Raman and ultraviolet-visible spectroscopies while its structures were theoretically determined in gas phase and in aqueous solution by using B3LYP/6-311++G* method. The studies in solution were performed at the same level of theory with the integral equation formalism variant polarised continuum method (IEFPCM) and the universal solvation model. The comparisons among the predicted IR, Raman and UV-Visible spectra have evidenced good concordance with the corresponding experimental ones. PTFB presents a solvation energy of -87.64 kJ/mol, a value lower than the observed for 5-hydroxypentanoyl-trifluoroborate (HTFB) (-103.73 kJ/mol) and 2-isonicotinoyl-trifluoroborate (ITFB) (-95.05 kJ/mol) and higher than 3-furoyl-trifluoroborate (FTFB) (-84.72 kJ/mol). Evidently, the phenyl ring in PTFB decreases the solubility of this salt, as compared with hydroxypentanoyl chain in HTFB, furoyl ring in FTFB and pyridine ring in IFTB. The bond orders studies support the ionic characteristics of K center dot center dot center dot B bonds while the NBO studies reveal a lower stability of PTFB in aqueous solution, as compared with the value in gas phase probably due to the low solvation energy of PTFB in this medium. The four interactions observed for PTFB in gas phase by the AIM analyses support the high stability of PTFB in gas phase. The gap values show that PTFB is most reactive in gas phase than in aqueous solution while the comparisons with other salts containing pyridine ring instead phenyl one reveal that reactivity increase when in the 5 position of pyridine ring is incorporates a Br atom in the structure of salt. Hence, the following reactivity order it is observed in gas phase: Br-ITFB > ITFB > PTFB changing in solution to: ITFB > Br-ITFB > PTFB. In solution, probably the salt is most reactive due to the most negative nucleophilicity index and higher electrophilicity index. The harmonic force fields, force constants and complete assignments of all vibration normal modes for PTFB in both media for first time are reported. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过使用FT-IR,Ft-拉曼和紫外 - 可见光谱进行实验表征2-苯基乙酰基 - 三氟硼酸盐(PTFB)盐,同时通过使用B3LYP / 6-311 +理论上在气相和水溶液中理论上测定其结构+ G *方法。溶液中的研究在与整体方程式正式变体极化连续素(IEFPCM)和通用溶剂化模型中的相同水平的理论。预测的IR,拉曼和UV可见光谱之间的比较已经证明了与相应的实验结果良好的一致性。 PTFB呈现为-87.64 kJ / mol的溶剂化能量,值低于5-羟基戊酰基 - 三氟硼酸盐(HTFB)(-103.73kJ / mol)和2-Isonicotinoyl-三氟硼酸盐(ITFB)(-95.05 kJ / mol)的值高于3-呋喃 - 三氟硼酸盐(FTFB)(-84.72 kJ / mol)。显然,与HTFB中的HTFB中的HTFB中的羟基甲酰环和IFTB中的吡啶环中,PTFB中的苯环降低了该盐的溶解度。债券订单研究支持K中心点中心点中心点B键的离子特性,同时NBO研究揭示了水溶液中PTFB在水溶液中的稳定性较低,与PTFB中的低溶剂能量导致气相值相比这个媒介。通过目的分析对气相中的PTFB观察到的四个相互作用支持气相中PTFB的高稳定性。间隙值表明,PTFB在气相中比水溶液最具反应性,而与含有吡啶环的其他盐的比较揭示了当在吡啶环的5个位置中的反应性增加,在盐的结构中包含Br原子。因此,在气相中观察到以下反应性顺序:BR-ITFB> ITFB> PTFB在解决方案中改变:ITFB> BR-ITFB> PTFB。在溶液中,由于最负的亲核指数和更高的亲电性指数,盐可能是最具反应性的。报道了谐波力场,力量常量和两个介质中所有振动正常模式的第一次第一次的PTFB的完整分配。 (c)2019 Elsevier B.v.保留所有权利。

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