Patricia Nieva
Associate Professor
Mechanical and Mechatronics Engineering
University of Waterloo
Canada
Biography
Patricia Nieva is an Associate Professor in the Department of Mechanical and Mechatronics Engineering at the University of Waterloo. She is an expert in micro- and nano- technologies and in particular, the development of microsensors, nanosensors and integrated sensor system solutions. She has established a multidisciplinary research program that aims to build novel sensing methodologies to enhance vehicle safety and performance, as well as point-of-care health monitoring and medical diagnosis. The focus of her work is on chemical and biological photonic sensing technologies involving fiber optics and nanostructured plasmonic devices, as well as high-temperature MEMS (Micro-Electro-Mechanical Systems) capacitive, infrared and interferometric sensing technologies. Her work also spans reliability studies of microsystems, in-situ characterization of material properties of thin films, and the manufacturing of metallic nanoparticles for sensing applications. Professor Nieva is also recently involved in a project to build a handheld cardiac monitor that will measure proteins in the blood commonly linked to a heart attack, alerting the patient’s doctor before symptoms appear. Her ongoing research work constitutes an important commitment to the identification of simple, cost-effective and reliable micro- and nano- technologies for advanced sensing. Professor Nieva’s research has led to 2 patents (one awarded and one provisional). She has authored and co-authored more than 90 journal and conference publications, and is also a member of the Institute of Electrical and Electronic Engineers (IEEE), the American Society of Mechanical Engineers (ASME) and the Phi Kappa Phi Honor Society.
Research Interest
Multifunctional MEMS/NEMS & MOEMS Sensors MEMS/NEMS Reliability MEMS Optical Interferometry
Publications
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Sohi AN, Nieva PM, Khajepour A. Electrothermomechanical modeling of out-of-plane deformation in single-stepped beams actuated by resistive heating. Journal of Micromechanics and Microengineering. 2015 Feb 18;25(3):035028.
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Ghannoum A, Norris RC, Iyer K, Zdravkova L, Yu A, Nieva P. Optical Characterization of Commercial Lithiated Graphite Battery Electrodes and in Situ Fiber Optic Evanescent Wave Spectroscopy. ACS applied materials & interfaces. 2016 Jul 13;8(29):18763-9.
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Najafi Sohi A, Nieva PM. Frequency response of curved bilayer microcantilevers with applications to surface stress measurement. Journal of Applied Physics. 2016 Jan 28;119(4):044503.