Direkt zum Inhalt
Merck

Reversible controlled assembly of thermosensitive polymer-coated gold nanoparticles.

Langmuir : the ACS journal of surfaces and colloids (2011-09-29)
Céline Durand-Gasselin, Nicolas Sanson, Nicolas Lequeux
ZUSAMMENFASSUNG

Aggregation of thermosensitive polymer-coated gold nanoparticles was performed in aqueous solution in the presence of a triblock copolymer poly(ethylene oxide)-block-poly(propylene oxide)-block-poly(ethylene oxide) (Pluronic P123, PEO(20)-PPO(68)-PEO(20)). The gold nanoparticles, AuNPs, which are covered by thermosensitive statistical copolymers poly(EO(x)-st-PO(y)), aggregate when the temperature is higher than the phase transition temperature of the polymer, leading to a macroscopic precipitation. The presence of Pluronic chains in solution prevents the uncontrolled aggregation of the AuNPs at higher temperature than both the aggregation temperature of the AuNPs (T(agg)) and the critical micellization temperature (cmt) of the Pluronic. The size, the colloidal stability, and the optical properties of the AuNPs aggregates are modulated as a function of the P123-to-AuNP ratio, which constitutes the critical parameter of the system. Moreover, the AuNP aggregation is totally reversible upon decreasing the temperature below T(agg). Our approach constitutes an easy way to the formation of well-controlled nanoparticle aggregates with well-defined sizes. The resulting aggregates have been characterized by UV-vis spectroscopy, dynamic light scattering, and electron microscopy.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

Sigma-Aldrich
Pluronic® F-127, powder, BioReagent, suitable for cell culture
Sigma-Aldrich
Poloxamer 188-Lösung, 10%, sterile-filtered, BioReagent, suitable for insect cell culture
Sigma-Aldrich
Kolliphor P 188, solid
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~5,800
Sigma-Aldrich
Kolliphor P 188
Sigma-Aldrich
Poloxamer 407, purified, non-ionic
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~2,900
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~14,600
Sigma-Aldrich
Kolliphor P 407, oxyethylene 71.5-74.9 %
Sigma-Aldrich
Poly(propylenglycol)-block-poly(ethylenglycol)-block-poly(propylenglycol), average Mn ~3,300
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~4,400
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~1,900
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~2,000
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~1,100
Sigma-Aldrich
Poly(ethylenglycol)-block-poly(propylenglycol)-block-poly(ethylenglycol), average Mn ~8,400
Sigma-Aldrich
Kolliphor P 407 mikro
Sigma-Aldrich
Synperonic® F 108, surfactant, non-ionic
Sigma-Aldrich
Synperonic® PE P105, surfactant
Sigma-Aldrich
Kolliphor P 188 Micro
Sigma-Aldrich
Poly(propylenglycol)-block-poly(ethylenglycol)-block-poly(propylenglycol), average Mn ~2,000
Sigma-Aldrich
Synperonic® PE/P84