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Electroactive Polymer Nanoparticles Exhibiting Photothermal Properties
Published on: January 8, 2016
Conducting Polymer Microcups for Organic Bioelectronics and Drug Delivery Applications
Martin Antensteiner1, Milad Khorrami1, Fatemeh Fallahianbijan2
1Department of Biomedical Engineering, University of Houston, 3517 Cullen Blvd, Room 2027, Houston, TX, 77204, USA.
Abstract:
An ideal neural device enables long-term, sensitive, and selective communication with the nervous system. To accomplish this task, the material interface should mimic the biophysical and the biochemical properties of neural tissue. By contrast, microfabricated neural probes utilize hard metallic conductors, which hinder their long-term performance because these materials are not intrinsically similar to soft neural tissue. This study reports a method for the fabrication of monodisperse conducting polymer microcups. It is demonstrated that the physical surface properties of conducting polymer microcups can be precisely modulated to control electrical properties and drug-loading/release characteristics.

