Data di Pubblicazione:
2018
Abstract:
Indium tin oxide (ITO) substrates were functionalized with fluoroalkylsilanes (FAS) having formula RFC
(O)N(R)(CH2)3Si(OMe)3 (1, R=H, RF = C5F11; 2, R=CH3, RF = C5F11; 3, R=H, RF = C3F7) and containing
embedded amide moieties between the perfluoroalkyl chain and the syloxanic moiety. Subsequently,
Au nanoparticle deposition (AuNP) onto the ITO-FAS functionalized surfaces was carried out by immersion
into a solution of citrate-stabilized AuNP. The ITO-FAS and AuNP/ITO-FAS modified systems were
characterized by various complementary techniques and compared with AuNP/ITO modified with
RF(CH2)2Si(OEt)3 (4, RF = C6F13), free from functional groups between the fluorinated tail and the syloxanic
moiety. The results showed that only ITO glasses modified with 1, 2 and 3 displayed an oleophobic, as
well as hydrophobic, behaviour and that the AuNP Surface Coverage (SC %) directly depended on the fluoroalkylsilane
nature with the following trend: 60% ITO-2 > 16% ITO-3 > 9% ITO-1 > 3% ITO-4. The
obtained results revealed that, in organosilane 2, the presence of a methyl group on the amide nitrogen
increases the steric hindrance in the rotation around the NACO bond, resulting in the co-presence of two
stable conformers in comparable amounts. Their co-presence in solution, combined with the lack of intermolecular
NAH OCAN hydrogen bonds among the anchored molecules, has dramatic influences on the
functionalized ITO, yielding a disorderedly packed coating able to accommodate a large quantity of AuNP.
These results indicate that AuNP can act as excellent probes to evaluate the coating layer quality but, at
the same time, it is possible to tune the gold loading on electroactive surfaces depending on the chemical
structure of the used fluorinated silane.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Amide groups; Amide rotational barrier; Environmentally safer fluoroalkylsilanes; Gold nanoparticles; Indium tin oxide; Surface coverage
Elenco autori:
Barreca, Davide
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