Nagels Nick, Herrebout Wouter A
Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.
Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Feb 5;136 Pt A:16-26. doi: 10.1016/j.saa.2014.04.141. Epub 2014 May 10.
Experimental information on the C-X⋯π halogen bonding motif was obtained by studying the formation of molecular complexes of CF3Cl, CF3Br and CF3I with ethyne, propyne and 2-butyne in liquid krypton, using FTIR and Raman spectroscopy. For CF3Br, experimental evidence was found for the formation of 1:1 complexes with propyne and 2-butyne only, while for CF3I spectroscopic features confirming the existence of the halogen bonded complexes were observed for ethyne, propyne and 2-butyne. In addition, at higher concentrations of CF3I and 2-butyne, weak absorptions due to a 2:1 complex were also observed. The experimental complexation enthalpies, obtained by using spectra recorded at temperatures between 120 K and 140 K, are -5.9(3) kJ mol(-1) for CF3I.ethyne, -5.6(3) kJ mol(-1) for CF3Br.propyne, -8.1(2) kJ mol(-1) for CF3I.propyne, -7.3(2) kJ mol(-1) for CF3Br.2-butyne, -10.9(2) kJ mol(-1) for CF3I.2-butyne and -20.9(7) kJ mol(-1) for (CF3I)2.2-butyne. The experimental study is supported by theoretical data obtained from ab initio calculations at the MP2/aug-cc-pVDZ(-PP) and MP2/aug-cc-pVTZ(-PP) levels, and Monte Carlo Free Energy Perturbation (MC-FEP) simulations. The experimental and theoretical values on the C-X⋯π halogen-bonding motifs studied are compared with previously reported data for the complexes with ethene and propene and with preliminary results obtained for benzene and toluene.
通过使用傅里叶变换红外光谱(FTIR)和拉曼光谱,研究三氟氯甲烷(CF3Cl)、三氟溴甲烷(CF3Br)和三氟碘甲烷(CF3I)与乙炔、丙炔和2-丁炔在液氪中形成分子复合物的过程,从而获得有关C-X⋯π卤键基序的实验信息。对于CF3Br,仅发现了与丙炔和2-丁炔形成1:1复合物的实验证据,而对于CF3I,在乙炔、丙炔和2-丁炔中均观察到了证实卤键复合物存在的光谱特征。此外,在CF3I和2-丁炔浓度较高时,还观察到了由于2:1复合物产生的弱吸收。利用在120 K至140 K之间温度下记录的光谱获得的实验络合焓,对于CF3I·乙炔为-5.9(3) kJ mol(-1),对于CF3Br·丙炔为-5.6(3) kJ mol(-1),对于CF3I·丙炔为-8.1(2) kJ mol(-1),对于CF3Br·2-丁炔为-7.3(2) kJ mol(-1),对于CF3I·2-丁炔为-10.9(2) kJ mol(-1),对于(CF3I)2·2-丁炔为-20.9(7) kJ mol(-1)。该实验研究得到了在MP2/aug-cc-pVDZ(-PP)和MP2/aug-cc-pVTZ(-PP)水平上从头算计算以及蒙特卡罗自由能微扰(MC-FEP)模拟得到的理论数据的支持。将所研究的C-X⋯π卤键基序的实验值和理论值与先前报道的乙烯和丙烯复合物的数据以及苯和甲苯的初步结果进行了比较。