Lifeng Qin
Associate Professor at Xiamen University- Claim this Profile
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Bio
Experience
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Xiamen University
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Research Services
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700 & Above Employee
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Associate Professor
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Sep 2012 - Present
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Research Associate
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Aug 2010 - Jul 2012
Designed bulk acoustic wave resonator for pressure sensor application which can be operated in high temperature (>600ºC) Developed a method for accurately determining complex piezoelectric and elastic coefficients of piezoelectric material based on impedance /admittance spectrum of piezoelectric resonator, which can be applied to lossy materials. Designed and fabricated a novel microfluidic chip for long-term maintenance of cells using PDMS soft lithography, which can be integrated… Show more Designed bulk acoustic wave resonator for pressure sensor application which can be operated in high temperature (>600ºC) Developed a method for accurately determining complex piezoelectric and elastic coefficients of piezoelectric material based on impedance /admittance spectrum of piezoelectric resonator, which can be applied to lossy materials. Designed and fabricated a novel microfluidic chip for long-term maintenance of cells using PDMS soft lithography, which can be integrated with impedance sensor and acoustic wave sensor for application in biomedical and biochemical field
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Research Assistant
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Sep 2005 - Aug 2010
Developed a method for determining complex shear modulus of nanocomposite thin film using quartz resonator. Designed and developed a sensor platform for quartz and langasite resonators in gas detection. Developed a novel flow sensor using quartz resonator, established theoretical sensing principles through electrical-mechanical analysis, carried out experimental verification Developed a model for dual mode resonators based on c-axis tilted AlN, ZnO and GaN thin films, established the… Show more Developed a method for determining complex shear modulus of nanocomposite thin film using quartz resonator. Designed and developed a sensor platform for quartz and langasite resonators in gas detection. Developed a novel flow sensor using quartz resonator, established theoretical sensing principles through electrical-mechanical analysis, carried out experimental verification Developed a model for dual mode resonators based on c-axis tilted AlN, ZnO and GaN thin films, established the relation between resonator impedance and c-axis tilted angle, and carried out the simulation of these dual mode resonators for mass and viscosity sensor application. Characterized material properties of AlN thin film using composite resonator structure. Developed a novel method to characterize single PZT fiber resonator.
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Education
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University of Pittsburgh
Doctor of Philosophy (Ph.D.), Mechanical Engineering -
Zhejiang University
Master, Biomedical Engineering -
Zhejiang University
Bachelor, Biomedical Engineering