Photolithography Fabrication

Photolithography fabrication is a patterning technique that transfers precise geometric designs onto a substrate, enabling the production of microscale structures for bioengineering and other fields. The process typically coats a surface with a light-sensitive photoresist, exposes it through a photomask, and selectively removes the illuminated or protected regions during development, depending on the resist chemistry. These patterned features can guide etching, deposition, or molding to create microfluidic channels, biosensors, cell-culture platforms, and components for tissue-engineering systems. By controlling feature size, layout, and surface structure, photolithography supports reproducible device fabrication and the study of cellular and biological processes under defined conditions.

Photolithography Fabrication - Related Videos

Education

JoVE Science Education - Engineering

Microfabrication via Photolithography

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2023

The fabrication of BioMEM devices is often done using a microfabrication technique called photolithography. This widely used method utilizes light to transfer a pattern onto a silicon wafer, and provides the basis for the fabrication of many types of BioMEM devices. This video presents the photolithography technique, shows how the process is performed in the cleanroom, and introduces some applications of the process.

Research

JoVE Journal - Bioengineering

Polymeric Microneedle Array Fabrication by Photolithography

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Cited by 24 •

2015

Here, we present a protocol describing a mold-free fabrication process of the polymeric microneedles by photolithography.

Research

JoVE Journal - Bioengineering
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Fabrication of Micropatterned Hydrogels for Neural Culture Systems using Dynamic Mask Projection Photolithography

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Cited by 46 •

2011

Simple techniques are described for the rapid production of microfabricated neural culture systems using a digital micromirror device for dynamic mask projection lithography on regular cell culture substrates. These culture systems may be more representative of natural biological architecture, and the techniques described could be adapted for numerous applications.

Multi-step Variable Height Photolithography for Valved Multilayer Microfluidic Devices

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Cited by 26 •

2017

Multilayer microfluidic devices often involve the fabrication of master molds with complex geometries for functionality. This article presents a complete protocol for multi-step photolithography with valves and variable height features tunable to any application. As a demonstration, we fabricate a microfluidic droplet generator capable of producing hydrogel beads.

Fabrication of Silica Ultra High Quality Factor Microresonators

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Cited by 22 •

2012

We describe the use of a carbon dioxide laser reflow technique to fabricate silica resonant cavities, including free-standing microspheres and on-chip microtoroids. The reflow method removes surface imperfections, allowing long photon lifetimes within both devices. The resulting devices have ultra high quality factors, enabling applications ranging from telecommunications to biodetection.

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