Electron Beam Lithography

Electron beam lithography is a maskless nanofabrication technique that uses a focused beam of electrons to write patterns directly onto an electron-sensitive resist, enabling precise control of surface features. The beam is rastered across the resist, changing its solubility through localized energy deposition; development then removes either exposed or unexposed regions, and etching or deposition transfers the pattern to an underlying material. In biology, this process creates nanoscale structures, microfluidic components, and patterned surfaces that control cell adhesion, alignment, migration, and interactions with biomaterials. These engineered environments support studies of cell behavior, tissue organization, biosensors, and interfaces for regenerative medicine.

Electron Beam Lithography - Related Videos

Research

JoVE Journal - Engineering
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Single-Digit Nanometer Electron-Beam Lithography with an Aberration-Corrected Scanning Transmission Electron Microscope

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Cited by 4 •

2018

We use an aberration-corrected scanning transmission electron microscope to define single-digit nanometer patterns in two widely-used electron-beam resists: poly (methyl methacrylate) and hydrogen silsesquioxane. Resist patterns can be replicated in target materials of choice with single-digit nanometer fidelity using liftoff, plasma etching, and resist infiltration by organometallics.

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JoVE Journal - Neuroscience
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Focussed Ion Beam Milling and Scanning Electron Microscopy of Brain Tissue

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Cited by 105 •

2011

This protocol describes how resin embedded brain tissue can be prepared and imaged in the three dimensions in the focussed ion beam, scanning electron microscope.

Education

JoVE Science Education - Engineering

Soft Lithography

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2023

Many BioMEM devices, such as microfluidic channels, are fabricated using the soft lithography technique. Here, a microscale pattern is replicated by curing an elastomeric polymer over the 3D structure. These polymeric structures are then used to create a wide range of devices, ranging from microfluidic channels for biosensing applications to microscale bioreactors for the visualization of micro-colonies. This video introduces photolithography and demonstrates the technique in the laboratory.

Research

JoVE Journal - Biology
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Cryo-electron Microscopy Specimen Preparation By Means Of a Focused Ion Beam

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Cited by 5 •

2014

Cryo Electron Microscopes, either Scanning (SEM) or Transmission (TEM), are widely used for characterization of biological samples or other materials with a high water content1. A SEM/Focused Ion Beam (FIB) is used to identify features of interest in samples and extract a thin, electron-transparent lamella for transfer to a cryo-TEM.

Focused Ion Beam Lithography to Etch Nano-architectures into Microelectrodes

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Cited by 10 •

2020

We have shown that the etching of nano-architecture into intracortical microelectrode devices may reduce the inflammatory response and has the potential to improve electrophysiological recordings. The methods described herein outline an approach to etch nano-architectures into the surface of non-functional and functional single shank silicon intracortical microelectrodes.

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