4.6 Article

A simple strategy to improve the interfacial activity of true Janus gold nanoparticles: a shorter hydrophilic capping ligand

Journal

SOFT MATTER
Volume 12, Issue 1, Pages 31-34

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5sm01908g

Keywords

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Funding

  1. Spanish MINECO [MAT2013-44429-R, MAT2014-60615R]
  2. Junta de Andalucia
  3. FEDER [P10-FQM-5977, P12-FQM-1443]
  4. US National Science Foundation [DMR-1409396]

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Janus gold nanoparticles (JPs) of similar to 4 nm-diameter half functionalized with 1-hexanethiol as a hydrophobic capping ligand exhibit significantly higher interfacial activity, reproducibility and rheological response when the other half is functionalized with 1,2-mercaptopropanediol (JPs-MPD) than with 2-(2-mercaptoethoxy)ethanol (JPs-MEE), both acting as hydrophilic capping ligands. The interfacial pressure measured by pendant drop tensiometry reaches 50 mN m(-1) and 35 mN m(-1) for the JPs-MPD at the water/air and water/decane interface, respectively. At the same area per particle, the JPs-MEE reveal significantly lower interfacial pressure: 15 mN m(-1) and 5 mN m(-1) at the water/air and water/decane interface, respectively. Interfacial dilatational rheology measurements also show an elastic shell behaviour at higher compression states for JPs-MPD while the JPs-MEE present near-zero elasticity. The enhanced interfacial activity of JPs-MPD is explained in terms of chemical and hydration differences between the MPD and MEE ligands, where MPD has a shorter hydrocarbon chain and twice as many hydroxyl terminal groups as MEE.

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