Surface Patterning
Plasma can be employed in various ways to facilitate surface patterning, which is often a required processing step for the fabrication of multilayer devices, such as solar cells, sensors, and microfluidic chips. Plasma treatment can enhance surface wettability of substrates and templates to improve pattern transfer during contact printing and self-assembly. Plasma etching can selectively remove polymer thin films and 2D organic materials through a masking layer and can also be used to tune the feature size of polymer templates for fabricating patterned nanostructure arrays. This page provides brief summaries on the application of plasma treatment for surface patterning.
Immunoassay Development
Immunoassays identify disease biomarkers in patient samples and enable the detection of viruses, cancers and various other pathogens by exploiting the relationship between antibodies and antigens [1]. Widely used diagnostic immunoassays such as...
Fluorescence Microscopy
Plasma cleaning is essential to the preparation of fluorescence microscopy samples. Plasma removes organic contamination and introduces polar groups to glass or quartz slide surfaces. As a result, plasma removes fluorescent impurities that would...
Organ on a Chip
Organ on a chip models, fabricated with plasma treatment, replicate key tissue structure, function and other physiological characteristics to better explore drug delivery, toxicology and disease progression in vitro. In medical research, in vivo...
Plasma Treatment & Resin Bond Strength in Dental Ceramics
A Harrick Plasma cleaner was recently highlighted at the 49th Annual Session of the American College of Prosthodontists (Oct 30 - Nov 2, 2019) in Miami, FL by researchers from the U.S. Army Advanced Education in Prosthodontics. The poster, titled...
Titanium Implants
Plasma treatment is used to tailor titanium and titanium alloy surface properties for improved osseointegration in dental and orthopedic implant research. Titanium is a well-known and frequently used implant biomaterial due to its biocompatibility,...