A greatly simplified method for fabricating poly(methyl methacrylate) (PMMA) separation microchips is introduced. The new protocol relies on UV-initiated polymerization of the monomer solution in an open mold under ambient pressure. Silicon microstructures are transferred to the polymer substrate by molding a methyl methacrylate solution in a sandwich (silicon master/Teflon spacer/glass plate) mold. The chips are subsequently assembled by thermal sealing of the channel and cover plates. The new fabrication method obviates the need for specialized replication equipment and reduces the complexity of prototyping and manufacturing. Variables of the fabrication process were assessed and optimized. The new method compares favorably with common fa...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
The microchip capillary electrophoresis devices were fabricated by using poly (methyl methacrylate) ...
For four decades, microfluidics technology has been used in exciting, state-of-the-art applications....
Inexpensive and permanently modified poly(methyl methacrylate)(PMMA) microchips were fabricated by a...
This thesis describes the work performed on a novel micro-fabrication method for patterning poly(met...
The difficulty in translating conventional microfluidics from laboratory prototypes to commercial pr...
This thesis outlines a novel technique to economically pattern poly(methyl methacrilate) (PMMA) usin...
We present a new generic replication technique for the production of microfluidic devices: Phase Sep...
Development of polymeric microfluidic devices has played an important role in the recent, rapid prog...
Microfluidic platform technology has presented a new strategy to detect and analyze analytes and bio...
In this article we present a new versatile replication method to produce thin polymeric microfluidic...
Many prototype microfluidic devices are manufactured by some form of micromachining or injection mol...
A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that ha...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...
The microchip capillary electrophoresis devices were fabricated by using poly (methyl methacrylate) ...
For four decades, microfluidics technology has been used in exciting, state-of-the-art applications....
Inexpensive and permanently modified poly(methyl methacrylate)(PMMA) microchips were fabricated by a...
This thesis describes the work performed on a novel micro-fabrication method for patterning poly(met...
The difficulty in translating conventional microfluidics from laboratory prototypes to commercial pr...
This thesis outlines a novel technique to economically pattern poly(methyl methacrilate) (PMMA) usin...
We present a new generic replication technique for the production of microfluidic devices: Phase Sep...
Development of polymeric microfluidic devices has played an important role in the recent, rapid prog...
Microfluidic platform technology has presented a new strategy to detect and analyze analytes and bio...
In this article we present a new versatile replication method to produce thin polymeric microfluidic...
Many prototype microfluidic devices are manufactured by some form of micromachining or injection mol...
A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that ha...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Disposable poly(methylmethacrylate) (PMMA) sheathless electrospray microchip emitters were prepared ...
Microengineering is increasingly being used for controlling the microenvironment of stem cells. Here...