TY - JOUR
T1 - Multi-dimensional control of surfactant-guided assemblies of quantum gold particles
AU - Ji, Qingmin
AU - Acharya, Somobrata
AU - Hill, Jonathan P.
AU - Richards, Gary J.
AU - Ariga, Katsuhiko
PY - 2008/11/3
Y1 - 2008/11/3
N2 - The controlled assembly of monodispersed Au NPs (gold nanoparticles) into multi-dimensional 1D, 2D, and 3D structures by using ionic and nonionic surfactants was reported. Au NPs, prepared by a wet chemical method based on the reduction of a gold precursor, were stabilized using a protective layer of citrate anions at the particles' surface, and could be then further modified using a variety of surfactants. Trisodium citrate was used as reducing agent and stabilizer, since it provides a high zeta-potential for the prevention of aggregation of the Au NPs. A series of long chain ionic ammonium salts, imidazolium salts, and nonionic primary amines as exchange surfactants for the initial citrate stabilizer were used in order to multi-dimensionally assemble monodispersed Au NPs. The monodispersed citrate-coated Au NPs exhibit the well-known LSPR band at 520 nm, which undergoes a larger shift for C xImida and ODA aggregates.
AB - The controlled assembly of monodispersed Au NPs (gold nanoparticles) into multi-dimensional 1D, 2D, and 3D structures by using ionic and nonionic surfactants was reported. Au NPs, prepared by a wet chemical method based on the reduction of a gold precursor, were stabilized using a protective layer of citrate anions at the particles' surface, and could be then further modified using a variety of surfactants. Trisodium citrate was used as reducing agent and stabilizer, since it provides a high zeta-potential for the prevention of aggregation of the Au NPs. A series of long chain ionic ammonium salts, imidazolium salts, and nonionic primary amines as exchange surfactants for the initial citrate stabilizer were used in order to multi-dimensionally assemble monodispersed Au NPs. The monodispersed citrate-coated Au NPs exhibit the well-known LSPR band at 520 nm, which undergoes a larger shift for C xImida and ODA aggregates.
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U2 - 10.1002/adma.200801064
DO - 10.1002/adma.200801064
M3 - Article
AN - SCOPUS:55749103553
SN - 0935-9648
VL - 20
SP - 4027
EP - 4032
JO - Advanced Materials
JF - Advanced Materials
IS - 21
ER -