Multi-Layer Dip Coating for Optical Waveguides: Controlling Film Thickness to Prevent Interface Blurring
Optical waveguides and photonic crystals control light reflection and refraction. They require “multi-layer” technology, which...
Optical waveguides and photonic crystals control light reflection and refraction. They require “multi-layer” technology, which...
Applying scratch-resistant hard coats to camera lenses and glass prisms is challenging. Unlike flat glass,...
The sol-gel method is widely used with dip coating to apply anti-reflective (AR) coatings on...
Creating a perfect prototype for coated medical catheters or implants is only the first step....
Biosensors and microfluidic chips, which detect diseases from small fluid samples, require precise surface treatments....
Implantable medical devices, such as drug-eluting stents (DES) to prevent restenosis and artificial joints to...
For medical catheters and guidewires navigating through blood vessels, achieving high lubricity (slipperiness) is critical...
Applying multiple layers is a major advantage of the dip coating process. However, a common...
In dip coating, a common frustration is having identical settings but getting different film thicknesses...
Horizontal stripes or ripples on a coated part, known as “chattering,” ruin the final finish....