far infrared spectroscopy
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2021 ◽  
Vol 11 (21) ◽  
pp. 10038
Author(s):  
Valeria Conti Nibali ◽  
Caterina Branca ◽  
Ulderico Wanderlingh ◽  
Giovanna D’Angelo

The vibrational signature in the far-infrared region of two different phospholipids, phosphatidylcholine (PC) and phosphatidylethanolamine (PE), was investigated as a function of relative humidity from 0 to 75% in order to evaluate the effect of headgroup composition on the formation of intermolecular interactions. The substructures of the frequency region between 50 and 300 cm−1 were identified, and changes in the frequency and intensity of the related vibrations with hydration were analyzed. Interestingly, in PE, two additional vibrational bands with respect to PC were found at 162 and 236 cm−1 and assigned to intermolecular hydrogen bonds between the hydrogen-bond-donating groups, -NH3+, and hydrogen-bond-accepting groups, —P—O− and —COO, of adjacent molecules. The presence of these interactions also affected the penetration of water, severely reducing the hydration capability of PE lipids.


2021 ◽  
Author(s):  
Cyril Richard ◽  
Pierre Asselin ◽  
Olivier Pirali ◽  
Vincent Boudon

2021 ◽  
Vol 22 (11) ◽  
pp. 6155
Author(s):  
Oriele Palumbo ◽  
Adriano Cimini ◽  
Francesco Trequattrini ◽  
Jean-Blaise Brubach ◽  
Pascale Roy ◽  
...  

Knowledge of all the intermolecular forces occurring in ionic liquids (ILs) is essential to master their properties. Aiming at investigating the weaker hydrogen bonding in aprotic liquids, the present work combined computational study and far-infrared spectroscopy on four imidazolium-based ILs with different anions. The DFT calculations of the ionic couples, using the wB97X-D functional and considering both the empirical dispersion corrections and the presence of a polar solvent, show that, for all samples, the lowest energy configurations of the ion pair present H atoms, directly bound to C atoms of the cation and close to O atoms of the anion, capable of creating moderate to weak hydrogen bonding with anions. For the liquids containing anions of higher bonding ability, the absorption curves generated from the calculated vibrational frequencies and intensities show absorption bands between 100 and 125 cm−1 corresponding to the stretching of the hydrogen bond. These indications are in complete agreement with the presently reported temperature dependence of the far-infrared spectrum, where the stretching modes of the hydrogen bonding are detected only for samples presenting a moderate interaction and become particularly prominent at low temperatures. Moreover, from the analysis of the infrared spectra, the occurrence of various phase transitions as a function of temperature was detected, and the difference in the average energy between the H-bonded and the dispersion-governed molecular configurations was evaluated.


2021 ◽  
Vol 129 (3) ◽  
pp. 034701
Author(s):  
Henry V. Wladkowski ◽  
Julian Duarte ◽  
Shashank R. Nandyala ◽  
Joshua S. Walker ◽  
Subash Kattel ◽  
...  

2020 ◽  
Vol 117 (20) ◽  
pp. 202105
Author(s):  
V. A. Shalygin ◽  
R. B. Adamov ◽  
M. D. Moldavskaya ◽  
M. Ya. Vinnichenko ◽  
D. A. Firsov

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