2015
DOI: 10.1016/j.jcis.2015.08.004
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Conducting polymer–gold co-patterned surfaces via nanosphere lithography

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Cited by 16 publications
(11 citation statements)
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“…Various additional techniques to fabricate two-dimensional structures have been proposed. Advincula and co-workers demonstrated two-dimensional co-patterned structures of carbazole-based conductive polymers and gold by nanosphere lithography [217]. Huang and co-workers proposed a high-yield LB method for nanoparticle films through electrospray techniques to significantly reduce the spreading of droplets and used a subphase-miscible solvent [218].…”
Section: Reviewmentioning
confidence: 99%
“…Various additional techniques to fabricate two-dimensional structures have been proposed. Advincula and co-workers demonstrated two-dimensional co-patterned structures of carbazole-based conductive polymers and gold by nanosphere lithography [217]. Huang and co-workers proposed a high-yield LB method for nanoparticle films through electrospray techniques to significantly reduce the spreading of droplets and used a subphase-miscible solvent [218].…”
Section: Reviewmentioning
confidence: 99%
“…As a possible milestone for industrial fabrication of colloidal crystal templates, Choi et al [61] demonstrated an efficient method to fabricate large-area two-dimensional (2D) colloidal crystals as a template for nanopatterning of CPs; this method involves the electrophoretic deposition of negatively charged polystyrene colloidal particles and the assembly of the colloidal particles to 2D colloidal crystals at the air-water interface. Similarly, other solid template methods have been developed, such as nanosphere lithography-mediated electrodeposition [62,63], in which Langmuir-Blodgett deposition and drop casting were used to fabricate nanosphere templates.…”
Section: Recent Advances In the Synthesis Of Cp Nanomaterialsmentioning
confidence: 99%
“…In this way, conducting polymershave been explored as organic coatings and scaffolds for the local delivery of bioactive payloads or electrical/ionic signals to promote neural stimulation and regeneration [10][11]. To further enhance material-neural interactions, conducting polymers can be topographically modified with a wide range of advanced techniques, including lithography [12][13] or imprinting [14][15] methods. Gomez et al, [16] recently demonstrated that embryonic hippocampal neurons cultured on neuromorphic micropatterned polypyrrole substrates exhibited enhanced polarization relative to neurons grown on planar materials; polypyrrole features were also found to have the effect on number of cells as well as axon orientation.…”
Section: Introductionmentioning
confidence: 99%