研究目的
To develop a faster and simpler process for fabricating silicon microfluidic chips suitable for particle focusing by bulk acoustic waves.
研究成果
The study successfully demonstrated a rapid and simple method for fabricating silicon microfluidic chips for acoustic particle focusing. The method allows for rapid prototyping and testing of new designs, offering a significant advantage over conventional silicon processing methods.
研究不足
The fabrication process may result in recast material and particle contamination, affecting bonding quality. The method is currently optimized for specific channel dimensions and may require adjustments for other designs.
1:Experimental Design and Method Selection:
The study used direct laser writing to fabricate microfluidic channels in silicon, optimized for acoustic particle focusing. The process involved laser ablation with specific power, frequency, and pass settings.
2:Sample Selection and Data Sources:
Silicon wafers were used as the substrate for microfluidic channel fabrication. Polystyrene microparticles were used to test acoustic focusing.
3:List of Experimental Equipment and Materials:
A commercial laser marking system with a Nd:YVO4 nanosecond laser, silicon wafers, Ormocomp resist for bonding, and piezoelectric transducers for acoustic actuation.
4:Experimental Procedures and Operational Workflow:
The laser process was optimized for channel fabrication, followed by bonding with a glass wafer, dicing into chips, and attachment of piezoelectric transducers. Acoustic experiments were conducted to evaluate particle focusing.
5:Data Analysis Methods:
SEM and optical profilometry were used for structural characterization. ImageJ was used for analyzing particle focusing in the microfluidic channels.
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CMOS camera
DFK NME33UX174
The imaging Source
Used for acquiring images of the particle focusing in the microfluidic chip.
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function generator
AFG3022C
Tektronix
Used for actuating the piezoelectric transducer.
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oscilloscope
TBS1102B
Tektronix
Used for measuring the voltage over the piezoelectric transducer.
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laser marking system
AIO
?stling
Used for direct laser writing to fabricate microfluidic channels in silicon.
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piezoelectric transducer
Pz 26
Ferroperm Piezoceramic
Used for generating acoustic waves in the microfluidic chip for particle focusing.
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inverted microscope
TE2000-U
Nikon
Used for observing the acoustic particle focusing in the microfluidic chip.
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