Pdms Mold Fabrication

PDMS mold fabrication is a soft lithography technique for producing elastomeric molds and microstructured replicas from a patterned master. It typically involves mixing polydimethylsiloxane with a curing agent, degassing the mixture to remove trapped bubbles, pouring it over the master, and heating or allowing it to cure; cross-linking converts the liquid polymer into a flexible solid that can be peeled away without damaging fine features. In chemistry, PDMS mold fabrication supports microfluidic devices for mixing, separation, reaction, and analysis, where transparent, flexible channels enable controlled fluid handling and rapid prototyping.

Pdms Mold Fabrication - Related Videos

Research

JoVE Journal - Biology

PDMS Device Fabrication and Surface Modification

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Cited by 5 •

2007

Fabrication, Densification, and Replica Molding of 3D Carbon Nanotube Microstructures

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Cited by 7 •

2012

We present methods for fabrication of patterned microstructures of vertically aligned carbon nanotubes (CNTs), and their use as master molds for production of polymer microstructures with organized nanoscale surface texture. The CNT forests are densified by condensation of solvent onto the substrate, which significantly increases their packing density and enables self-directed formation of 3D shapes.

Microbubble Fabrication of Concave-porosity PDMS Beads

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Cited by 2 •

2015

Procedures used to generate microstructured concave-porosity polydimethylsiloxane beads are presented. Effects of electrolyte concentration and identity within the aqueous phase are particularly emphasized.

Research

JoVE Journal - Biology
Free Sample

Non-plasma Bonding of PDMS for Inexpensive Fabrication of Microfluidic Devices

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Cited by 19 •

2007

In this video we demonstrate how to use the neuron microfluidic device without plasma bonding.

Fabrication of a Master Mold for Microneedles with a Micron-sized Air-vent Hole

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2025

This article introduces a unique method for fabricating master molds with an air-vent hole to prevent air entrapment during viscous polymer casting, enabling the fabrication of gelatin microneedles with sharp tips. By reducing the casting volume of high-viscosity gelatin, thin-walled hollow pyramidal microneedles could also be fabricated.

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