Formation of uniform polyaniline thin shells and hollow capsules using polyelectrolyte-coated micros.pdf
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Formation of uniform polyaniline thin shells and hollow capsules using polyelectrolyte-coated micros
Formation of Uniform Polyaniline Thin Shells and Hollow Capsules
Using Polyelectrolyte-Coated Microspheres as Templates
Xiangyang Shi, Alejandro L. Briseno, Raymond J. Sanedrin, and Feimeng Zhou*
Department of Chemistry and Biochemistry, California State University, Los Angeles,
Los Angeles, California 90032
Received February 13, 2003
ABSTRACT: Multilayers of poly(diallyldimethylammonium chloride) and poly(sodium 4-styrenesulfonate)
precoated onto melamine formaldehyde (MF) particles via the layer-by-layer (LbL) self-assembly procedure
were used as templates for the subsequent deposition of polyaniline (PANI). Transmission electron
microscopic (TEM) and scanning electron microscopic (SEM) images reveal that the as-prepared PANI-
containing polyelectrolyte (PE)-MF core-shell particles are narrowly dispersed and possess uniform
surface morphology. Intact hollow PANI/PE capsules can also be produced by extracting the MF cores in
an acidic solution. FTIR spectra of the hollow capsules indicate that PANI and PE are both present and
suggest that the PANI exists in the emeraldine form. The incorporation of PANI in the shells was found
to enhance the rigidity of these composite materials, and the PANI/PE-coated MF core-shell particles
have comparable conductivities with other PANI-coated colloidal particles. The amount of PANI
incorporation was also found to increase with the PE layer number, suggesting that the LbL procedure
for forming PE multilayers is a convenient method for modifying the colloidal particle surfaces for a
favorable PANI film growth and for controlling the PANI thin shell thickness. The method developed is
simple, versatile, and colloidal particle general.
1. Introduction
Synthesis of composite colloidal particles consisting
of inorganic or polymeric cores uniformly coated with
ultrathin films of materials has recently generated a
great deal of interest.
1
These colloidal particles may find
applications in areas as diverse as optical and electronic
devic
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