Harrick Plasma → Applications → Page 9 One common and easily employed method for surface micropatterning is plasma lithography, in which a deformable mask is placed in contact with a substrate surface before plasma treatment to create a chemical template for...
Harrick Plasma → Applications → Page 9 Due to the small size and extreme fragility of nanoelectrode surfaces, gentle plasma treatment is the optimal method for numerous electrode cleaning applications. The most popular alternative cleaning processes include mechanical...
Harrick Plasma → Applications → Page 9 (3-Aminopropyl)triethoxysilane (APTES), an aminosilane originally developed as an adsorbent for affinity chromatography, has developed into a versatile tool for improving surface chemistry in cell studies and microfluidic device...
Harrick Plasma → Applications → Page 9 Microfluidic devices are rapidly becoming a more advantageous cell culture platform than macroscopic culture vessels (dishes, flasks and well-plates) for numerous applications. Two dimensional cell culture benefits from a vast...
Harrick Plasma → Applications → Page 9 Neuron morphology, proliferation and function are regulated by a complex system of chemical and biophysical cues cumulatively termed the neuronal niche. Researchers endeavoring to model neuron activity, develop functional tissues...
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