Self-Assembly of Poly(4-vynil-N-alkylpyridinium) Bromide onto Silica: Effect of Side-Chain Length on Structural Aspects at a Molecular Level
| Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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| Data(s) |
05/11/2013
05/11/2013
2012
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| Resumo |
Self-assembly of poly(4-vynil-N-alkyl)pyridinium bromide with alkyl side chains of 2, 5, 7, 10, or 16 carbons from ethanolic solutions onto flat silica surfaces was studied by means of ellipsometry, atomic force microscopy (AFM), contact angle measurements, and sum-frequency generation (SFG) vibrational spectroscopy in the CH3 and CH2 stretch region. Ab initio quantum-chemical calculations on the N-alkylpyridinium side-group with restricted Hartree-Fock (RHF) method and 6-311G (d,p) basis set were C one to estimate the charge distribution along the pyridinium ring and the alkyl side-chain. SFG results showed that longer side chains promote the disorientation of the alkyl groups at the surface, corroborating with the contact angle values. AFM images revealed film homogeneity, regardless the alkyl side group. However, after 24 h contact with water, ringlike structures appeared on the film surfaces, when the polycation alkyl side chain had 7 or less carbons, and as the alkyl chain increased to 10 or 16 carbons, the films dewetted because the hydrophobic interactions prevailed over the electrostatic interactions between the pyridinium charged groups and the negatively charged SiO2 surface. Under acid conditions (HCl 0.1 mol.L-1), the film mean thickness values decreased up to 50% of original values when the alkyl side chains were ethyl or pentyl groups due to ion-pair disruption, but for longer groups they remained unchanged. Quantum-chemical optimization and Mulliken electron population showed that (i) from C2 to C15 the positive charge at the headgroup (HG) decreased 0.025, while the charge at combined HG + alpha-CH2 increased 0.037; and (ii) for C6 or longer, the alkyl side group presents a tilt in the geometry, moving away from the plane. Such effects summed up over the whole polymer chain give support to suggest that when the side chains are longer than 7 carbons, the hydrophobic interaction decreases film stability and increases acid resistance. CAPES CAPES CNPq CNPq FAPESP FAPESP [2010/51219-4, 2009/16999-1] |
| Identificador |
JOURNAL OF PHYSICAL CHEMISTRY C, WASHINGTON, v. 116, n. 34, p. 18284-18291, AUG 30, 2012 1932-7447 http://www.producao.usp.br/handle/BDPI/41727 10.1021/jp305606k |
| Idioma(s) |
eng |
| Publicador |
AMER CHEMICAL SOC WASHINGTON |
| Relação |
Journal of Physical Chemistry C |
| Direitos |
closedAccess Copyright AMER CHEMICAL SOC |
| Palavras-Chave | #MONTE-CARLO SIMULATIONS #FREQUENCY VIBRATIONAL SPECTROSCOPY #CHARGED MICELLES #POLYELECTROLYTE ADSORPTION #TERMINATED SURFACES #GENERATION #BACTERIA #POLYPROPYLENE #SURFACTANTS #INTERFACES #CHEMISTRY, PHYSICAL #NANOSCIENCE & NANOTECHNOLOGY #MATERIALS SCIENCE, MULTIDISCIPLINARY |
| Tipo |
article original article publishedVersion |