SOLVATION OF LAURIC ACID STUDIED BY VIBRATIONAL SPECTROSCOPIES

被引:17
作者
PICQUART, M
LEFEVRE, T
LACRAMPE, G
机构
关键词
INFRARED ABSORPTION; RAMAN SCATTERING; CARBONYL STRETCHING VIBRATION; INTERMOLECULAR HYDROGEN BONDING; FATTY ACID;
D O I
10.1366/0003702953965353
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Solvation of lauric acid [CH3(CH2)(1)0COOH] has been investigated in different solvents (apolar, polar-aprotic, and protic solvents) by infrared absorption and Raman scattering in a large molar ratio range in order to investigate the intermolecular interactions between fatty acids and molecules of different types of solvents. Temperature effects on these mixtures have also been investigated between 24 and 95 degrees C. We have especially concentrated on the carbonyl stretching region (between 1600 and 1800 cm(-1)), the hydroxyl stretching region (between 2500 and 3600 cm(-1)), and the C-H stretching region (2800-3000 cm(-1)). Chloroform behaves, with respect to lauric acid, almost as an apolar solvent. In acetone and in DMSO, a dynamical equilibrium between both cyclic dimers and II-bonded lauric acid molecules with solvent molecules seems to occur, the proportion of the two species depending on the lauric acid concentration. Cyclic dimers appear for a lauric acid : DMSO molar ratio x > 0.5 (x > 0.2 in acetone). In alcohols, cyclic dimers are present from x approximate to 0.2. For x < 0.2, two different complexes exist, in contrast with results from recent literature. These may be monosolvate and disolvate complexes. When the alcohol is deuterated, exchange between hydroxyl groups of both components is observed. Finally, Raman scattering appears as a powerful tool to clarify IR spectra in the case of solvated carboxylic acids.
引用
收藏
页码:1268 / 1274
页数:7
相关论文
共 38 条
[1]   QUANTITATIVE STUDIES OF THE STRUCTURE OF PROTEINS IN SOLUTION BY FOURIER-TRANSFORM INFRARED-SPECTROSCOPY [J].
ARRONDO, JLR ;
MUGA, A ;
CASTRESANA, J ;
GONI, FM .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1993, 59 (01) :23-56
[2]  
BELLAMY LJ, 1962, INFRARED SPECTRA COM, P161
[3]   THE INFRA-RED ABSORPTION BANDS ASSOCIATED WITH THE COOH AND COOD GROUPS IN DIMERIC CARBOXYLIC ACID .2. THE REGION FROM 3700 TO 1500 CM-1 [J].
BRATOZ, S ;
HADZI, D ;
SHEPPARD, N .
SPECTROCHIMICA ACTA, 1956, 8 (4-5) :249-261
[4]   THE INFRARED SPECTRA OF SOME MONOCARBOXYLIC ACIDS [J].
CORISH, PJ ;
CHAPMAN, D .
JOURNAL OF THE CHEMICAL SOCIETY, 1957, (APR) :1746-1751
[5]   VIBRATIONAL ANALYSIS OF ACETONE ACETALDEHYDE AND FORMALDEHYDE [J].
COSSEE, P ;
SCHACHTS.JH .
JOURNAL OF CHEMICAL PHYSICS, 1966, 44 (01) :97-&
[6]   VIBRATIONAL SPECTRA AND ASSIGNMENT OF ACETONE ALPHAALPHAALPHA ACETONE-D3 AND ACETONE-D6 [J].
DELLEPIANE, G ;
OVEREND, J .
SPECTROCHIMICA ACTA, 1966, 22 (04) :593-+
[7]  
FOREL MT, 1966, SPECTROCHIM ACTA, V22, P1977
[8]   QUANTITATIVE INTERPRETATION OF BIOMEMBRANE STRUCTURE BY RAMAN-SPECTROSCOPY [J].
GABER, BP ;
PETICOLAS, WL .
BIOCHIMICA ET BIOPHYSICA ACTA, 1977, 465 (02) :260-274
[9]   The nature of the hydrogen bond I Association in carboxylic acids [J].
Gillette, RH ;
Sherman, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1936, 58 :1135-1139
[10]   THEORETICAL CONFORMATIONAL-ANALYSIS OF PHOSPHOLIPIDS .2. ROLE OF HYDRATION IN THE GEL TO LIQUID-CRYSTAL TRANSITION OF PHOSPHOLIPIDS [J].
KREISSLER, M ;
LEMAIRE, B ;
BOTHOREL, P .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 735 (01) :23-34