Fully-Polymeric pH Sensor Realized by Means of a Single-Step Soft Embossing Technique
نویسندگان
چکیده
We present here an electrochemical sensor microsystem for the monitoring of pH. The all-polymeric device is comprised of a cyclic olefin copolymer substrate, a 200 nm-thin patterned layer of conductive polymer (PEDOT), and a 70 nm electropolymerized layer of a pH sensitive conductive polymer (polyaniline). The patterning of the fluidic (microfluidic channels) and conductive (wiring and electrodes) functional elements was achieved with a single soft PDMS mold via a single embossing step process. A post-processing treatment with ethylene glycol assured the functional enhancement of the electrodes, as demonstrated via an electrical and electrochemical characterization. A surface modification of the electrodes was carried out, based on voltammetric electropolymerization, to obtain a thin layer of polyaniline. The mechanism for pH sensing is based on the redox reactions of the polyaniline layer caused by protonation. The sensing performance of the microsystem was finally validated by monitoring its potentiometric response upon exposure to a relevant range of pH.
منابع مشابه
Low Cost Single Mode Waveguide Fabrication Allowing Passive Fiber Coupling using LIGA and UV flood exposure
A process of UV-induced fabrication of single mode waveguides in a polymer microoptical bench has been realized that offers the unique feature of an inexpensive microstructure replication process for mass fabrication. Instead of using common mask techniques for the realization of the stripe waveguides, a “Self-masking” technique of the polymer by embossing a microoptical bench and a following U...
متن کاملAn Electrochemical Sensor Based on Novel Ion Imprinted Polymeric Nanoparticles for Selective Detection of Lead Ions
In this study, the novel surface ion-imprinted polymer (IIP) particles were prepared and applied as a electrode modifier in stripping voltammetric detection of lead(II) ion. A carbon paste electrode (CPE) modified with IIP nanoparticles and multi-walled carbon nanotubes (MWCNTs) was used for accumulation of toxic lead ions. Various factors that govern on electrochemical signals including carbon...
متن کاملModeling and controlling topographical nonuniformity in thermoplastic micro- and nano-embossing
The embossing of thermoplastic polymeric plates is valuable for manufacturing microand nanofluidic devices and diffractive optics. Meanwhile, the imprinting of sub-micrometer-thickness thermoplastic layers has emerged as a lithographic technique with exceptional resolution. Yet neither hot micro-embossing nor thermal nanoimprint lithography will be fully adopted without efficient numerical tech...
متن کاملΜflu12-133 Control of Flow and Protein Adsorption on Plasma Nanotextured Polymeric Microfluidics
Plasma processing is demonstrated as a generic technology to fabricate, roughen, control the wetting properties, create well controlled passive hydrophobic valves, and finally also control the protein adsorption in polymeric microfluidic channels. Lithography and deep anisotropic O2 plasma etching directly on polymeric substrates were utilized to pattern microchannels, at conditions where very ...
متن کاملSoft UV Nanoimprint Lithography: A Versatile Tool for Nanostructuration at the 20nm Scale
1.1Why soft UV nanoimprint lithography? Since the pioneering work of Whitesides and coworkers on microContact Printing (mCP) and Soft Lithography (Kumar & Whitesides (1993)) (Xia & Whitsides (1998)), considerable progress has been made in the last years and Soft Lithography is now a well consolidated technology utilized in academic and industrial laboratories (Rogers & Nuzzo (2005)). These prin...
متن کامل