Surface segregation and formation of silver nanoparticles created in situ in poly(methyl methacrylate) films

被引:62
作者
Deshmukh, Ranjan D.
Composto, Russell J.
机构
[1] Univ Penn, Dept Mat Sci & Engn, Philadelphia, PA 19104 USA
[2] Univ Penn, Lab Res Struct Matter, Philadelphia, PA 19104 USA
关键词
D O I
10.1021/cm062030s
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Nanocomposite films have been prepared by the thermal decomposition of (1,1,1,5,5,5-hexafluoroacetylacetonato)silver(I) (AgHFA) in PMMA films containing 5, 10, and 20 wt % silver nanoparticles (NPs). When Rutherford backscattering spectrometry is used, as-cast films display a relatively uniform distribution of precursor in the midregion and a small excess of Ag near the surface, Z(s)(*). Upon annealing at 185 degrees C, strong segregation of NPs to the surface and substrate is observed. The Z(s)(*) normalized by initial film thickness increases linearly with wt % Ag. For as-cast films, transmission electron microscopy (TEM) analysis shows that AgHFA forms small spherical domains (1-5 nm) prior to thermal decomposition. Upon preannealing at 107 degrees C, some aggregation of precursor is observed at the surface and substrate, consistent with the incompatibility of AgHFA with PMMA. Upon annealing at 185 degrees C, diffusion of the precursor to the surface and substrate occurs concurrently with NP formation. For 20 wt % Ag films, the NP diameters are 20-75 nm at the surface, 6 nm in the midregion, and 2-20 nm at the substrate. NP size and size distribution increase as the wt % Ag and annealing time increase. NPs near the surface are wet by a 1-5 nm thick polymer layer. Consistent with characterization studies, UV-visible spectroscopy shows a plasmon resonance attributed to Ag NPs. A model of the thermodynamic stability of submerged NPs is given and compared with experimental results. By understanding and controlling surface segregation and NP assembly, we can precisely control the surface conductivity and reflectivity in metal nanocomposite films.
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页码:745 / 754
页数:10
相关论文
共 61 条
[1]   METHOD FOR INCREASING THE CONDUCTIVITY OF SILVER-DOPED POLYIMIDES [J].
AUERBACH, A .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1984, 131 (04) :937-938
[2]   Poly(amidoamine) dendrimer-templated nanocomposites. 1. Synthesis of zerovalent copper nanoclusters [J].
Balogh, L ;
Tomalia, DA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (29) :7355-7356
[3]   Polymer-metal optical nanocomposites with tunable particle plasmon resonance prepared by vapor phase co-deposition [J].
Biswas, A ;
Aktas, OC ;
Kanzow, J ;
Saeed, U ;
Strunskus, T ;
Zaporojtchenko, V ;
Faupel, F .
MATERIALS LETTERS, 2004, 58 (09) :1530-1534
[4]   Block copolymer nanocomposites: Perspectives for tailored functional materials [J].
Bockstaller, MR ;
Mickiewicz, RA ;
Thomas, EL .
ADVANCED MATERIALS, 2005, 17 (11) :1331-1349
[5]   THE ORIGINS OF PARTICLE-SIZE EFFECTS IN HETEROGENEOUS CATALYSIS [J].
BOND, GC .
SURFACE SCIENCE, 1985, 156 (JUN) :966-981
[6]  
BUSCAL R, 1985, POLYM COLLOIDS
[7]   SIZE-DEPENDENT MELTING TEMPERATURE OF INDIVIDUAL NANOMETER-SIZED METALLIC CLUSTERS [J].
CASTRO, T ;
REIFENBERGER, R ;
CHOI, E ;
ANDRES, RP .
PHYSICAL REVIEW B, 1990, 42 (13) :8548-8556
[8]   Application of ion scattering techniques to characterize polymer surfaces and interfaces [J].
Composto, RJ ;
Walters, RM ;
Genzer, J .
MATERIALS SCIENCE & ENGINEERING R-REPORTS, 2002, 38 (3-4) :107-180
[9]   The effect of polymer molecular weight on the formation and evolution of silver-polymer nanocomposite thin films [J].
D'Urso, L ;
Nicolosi, V ;
Compagnini, G ;
Puglisi, O .
MATERIALS SCIENCE & ENGINEERING C-BIOMIMETIC AND SUPRAMOLECULAR SYSTEMS, 2003, 23 (1-2) :307-310
[10]   Sliding friction of solid xenon monolayers and bilayers on Ag(111) [J].
Daly, C ;
Krim, J .
PHYSICAL REVIEW LETTERS, 1996, 76 (05) :803-806