Ioana Voiculescu

Associate Professor

Main Affiliation

Mechanical Engineering

Building

Steinman Hall

Office

ST-239

Phone

212-650-5210

Ioana

Ioana Voiculescu

Education

  • Engineering Diploma (B.S.+M.S., Valedictorian), 1982, Technical University "Politehnica", Timisoara, Romania. Specialization: Precision Mechanics & Robotics
  • Ph. D., Mechanical Engineering, 1997, Technical University "Politehnica", Timisoara, Romania, Specialization: Precision Mechanics
  • Sc. D., Mechanical Engineering, 2005, The George Washington University, Specialization: Microelectromechanical Systems (MEMS) sensors

Research Interests

Microelectromechanical (MEMS) sensors for biological and chemical applications, lab on chip devices, stretchable and flexible electronics and devices.

 

Publications

Books

I. Voiculescu, M. Zaghloul (Editors): Nanocantilever Beam, Modeling, Fabrication and Applications, Publisher Pan Stanford, Singapore, ISBN 9789814613231, 520 pages, 2016.

Journal Papers

I. Voiculescu, F. Li, A. N. Nordin, 鈥淚mpedance Spectroscopy of Adherent Mammalian Cell Culture for Biochemical Applications: A Review鈥IEEE Sensors, vol. 21, no. 5, pp. 5612-5627, 2021. 

K. L. Lee, S. Ng, F. Li, A. N. Nordin, I. Voiculescu, 鈥淢EMS Biosensor for Monitoring Water Toxicity Based on Quartz Crystal Microbalance鈥,&苍产蝉辫;Biointerphases, 15, 021006, 2020.

I. Voiculescu, F. Li, G. Kowach, K. L. Lee, N. Mistou, R. Kasberg, 鈥淪tretchable Piezoelectric Power Generators Based on ZnO Thin Films on Elastic Substrates鈥,&苍产蝉辫;Micromachines, 10(10), pp. 661, 2019.

N. V. Toan, X. Wang, N. Inomata, M. Toda, I. Voiculescu, T. Ono, 鈥溾,&苍产蝉辫;Advanced Engineering Materials, 1900490, 2019.

 ,  , , 鈥淣ano and Microsensors for Mammalian Cell Studies鈥,&苍产蝉辫;Micromachines, 9(9), 439, 2018. 

I. Voiculescu, M. Liao, M. Zakerin, R. Berger, T. Ono, M. Toda,鈥 Pico-thermogravimetric Material Properties Analysis Using Diamond Cantilever Beam鈥, Sensors and Actuators, Physical, A vol. 271, pp. 356鈥363, 2018.

X. Zhang, W. Wang, F. Li, I. Voiculescu, 鈥淪tretchable Impedance Sensor for Mammalian Cell Proliferation Measurements鈥, Lab on a Chip, vol. 17(12), pp. 2054-2066, 2017.

X. Zhang, W. Wang, A.N. Nordin, F. Li, S. Jang, I Voiculescu, 鈥淭he Influence of the Electrode Dimension on the Detection Sensitivity of Electric Cell鈥揝ubstrate Impedance Sensing (ECIS) and its Mathematical Modeling鈥, Sensors and Actuators B: Chemical, vol. 247, pp. 780鈥790, 2017.

I. Voiculescu, M. Toda, T. Ono, F. Liu, I. Voiculescu, 鈥淚nvestigation of Bimaterial Cantilever Beam for Heat Sensing in Liquid鈥, Sensors and Actuators A: Physical, vol. 242, pp. 58鈥66, 2016.

X. Zhang, F. Li, A. N. Nordin, J. Tarbell, I. Voiculescu, 鈥淭oxicity Studies Using Mammalian Cells and Impedance Spectroscopy Method鈥, Sensing and Bio-Sensing Research, vol. 3, pp. 112鈥121, 2015.

F. Liu, A. N. Nordin, F. Li, I. Voiculescu, 鈥淟ab-on-Chip Cell-based Biosensor for Label-free Sensing of Water Toxicants鈥, Lab on a Chip, no. 14, pp. 1270-1280, 2014.

F. Liu, F. Li, A. N. Nordin, I. Voiculescu, 鈥淎 Novel Cell-Based Hybrid Acoustic Wave Biosensor with Impedimetric Sensing Capabilities鈥, Sensors, vol. 13, pp. 3039-3055, 2013.

I. Voiculescu, F. Li, F. Liu, X. Zhang, L.M. Cancel, J.M. Tarbell, A. Khademhosseini, 鈥淪tudy of Long-term Viability of Endothelial Cells for Lab-on-a-chip Devices鈥, Sensors and Actuators B, Chemical, , pp. 696鈥705, 2013.     

I. Voiculescu, A. N. Nordin, 鈥淎coustic Wave Based MEMS Devices for Biosensing Applications鈥, Biosensors and Bioelectronics, vol. 33, issue. 1, pp. 1-9, 2012.