Polydimethylsiloxane microfluidic chip with integrated microheater and thermal sensor
Jinbo Wu, Wenbin Cao, Weijia Wen, Donald C. Chang, Ping Sheng
Abstract
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Jinbo Wu, Wenbin Cao, Weijia Wen, Donald C. Chang, Ping Sheng
Abstract
Open-access reader
A microheater and a thermal sensor were fabricated inside elastomeric polydimethylsiloxane microchannels by injecting silver paint (or other conductive materials) into the channels. With a high-precision control scheme, microheaters can be used for rapid heating, with precise temperature control and uniform thermal distribution. Using such a microheater and feedback system, a polymerase chain reaction experiment was carried out whereas the DNA was successfully amplified in 25 cycles, with 1 min per cycle.
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A microheater and a thermal sensor were fabricated inside elastomeric polydimethylsiloxane microchannels by injecting silver paint (or other conductive materials) into the channels. With a high-precision control scheme, microheaters can be used for rapid heating, with precise temperature control and uniform thermal distribution. Using such a microheater and feedback system, a polymerase chain reaction experiment was carried out whereas the DNA was successfully amplified in 25 cycles, with 1 min per cycle.
Key concepts: Microheater, Polydimethylsiloxane, Microfluidics, Materials science, Heating element, Thermal, Nanotechnology, Temperature control