Publications

https://scholar.google.ca/citations?user=wA2LtHsAAAAJ

Peer reviewed Journal Publications

First author

  1. Mohammad Hossein Zarifi, Benjamin Daniel Wiltshire, Najia Mahdi, Piyush Kar, Karthik Shankar, and Mojgan Daneshmand. “Ultraviolet Sensing Using TiO2 Nanotube Integrated High Resolution Planar Microwave Resonator Device.” Nanoscale (2018).
  2. Mohammad Hossein Zarifi, Hamid Sadabadi, S. Hossein Hejazi, Mojgan Daneshmand, and Amir Sanati-Nezhad. “Noncontact and Nonintrusive Microwave-Microfluidic Flow Sensor for Energy and Biomedical Engineering.” Scientific reports 8, no. 1 (2018): 139.
  3. Mohammad Hossein Zarifi*, and Mojgan Daneshmand, “Monitoring Solid Particle Deposition in Lossy Medium Using Planar Resonator Sensor,” IEEE Sensors 2017 (IF=2.5).
  4. Mohammad Hossein Zarifi*,. et al. “Sensitivity enhancement in planar microwave active-resonator using metal organic framework for CO 2 detection.” Sensors and Actuators B: Chemical (2017) (IF=5.4).
  5. Mohammad Hossein Zarifi*, Sameir Deif, Mohammad Abdolrazzaghi, Bertie Chen, Dennis Ramsawak, Michael Amyotte, Nahid Vahabisani, Zaher Hashisho, Weixing Chen, and Mojgan Daneshmand, “A Microwave Ring Resonator Sensor for Early Detection of Breaches in Pipeline Coatings”, accepted at IEEE Transactions on Industrial Electronics, 2017. (IF=6.38).
  6. Mohammad Hossein Zarifi*, Sameir Deif, and Mojgan Daneshmand, “Wireless Passive RFID Sensor for Pipeline Integrity Monitoring”, accepted at Sensors & Actuators: A. Physical, 2017. (IF=2.2).
  7. Mohammad Hossein Zarifi* and Mojgan Daneshmand, “High Resolution RFID Liquid Sensing Using Passive chipless Tag”, IEEE Microw. Wirel. Components Lett, 27(3), pp.311-313. (IF=1.55).
  8. Mohammad H. Zarifi*, Pooya Shariaty, Zaher Hashisho, and Mojgan Daneshmand. “A non-contact microwave sensor for monitoring the interaction of zeolite 13X with CO 2 and CH 4 in gaseous streams.” Sensors and Actuators B: Chemical 238: 1240-1247, 2017. (IF=5.4).
  9. Mohammad H. Zarifi*, Samira Farsinezhad, Mohammad Abdolrazzaghi, Mojgan Daneshmand, and Karthik Shankar, “Selective Sensor Exploiting the Interaction of Analytes with Trap States in TiO2 nanotube Array ” Nanoscale, vol. 8, no. 14, pp. 7466–7473, 2016. (IF=7.76).
  10. Mohammad Hossein Zarifi*, and Mojgan Daneshmand, “Liquid Sensing in Aquatic Environment Using Ultrahigh Q Planar Microwave Resonator,” Sensors Actuators B Chem., vol. 225, pp. 517–521, Mar. 2016 (IF=5.4).
  11. Mohammad Hossein Zarifi*, and Mojgan Daneshmand, “Wide Dynamic Range Microwave Planar Coupled Ring Resonator for Sensing Application”, Phys. Lett., vol. 108, no. 23, p. 232906, 2016. (IF=3.5).
  12. Mohammad H. Zarifi, et al. “Effect of phosphonate monolayer adsorbate on the microwave photoresponse of TiO2 nanotube membranes mounted on a planar double ring resonator.” Nanotechnology 27.37 (2016): 375201. (IF=3.82).
  13. Mohammad Hossein Zarifi*, Mehrnaz Rahimi, Mojgan Daneshmand and Thomas Thundat, “Microwave Resonator-based Non-contact Interface Sensor for Oil Sands Applications,” Sensors Actuators B Chem., vol. 224, pp. 632–639, Mar. 2016. (IF=5.4).
  14. Mohammad Hossein Zarifi*, Pooya Shariati, Mohammad Abdolrazzaghi, Zaher Hashisho, and Mojgan Daneshmand, ” Particle Size Characterization Using Planar Resonator Sensor in a Lossy Medium,” Sensors Actuators B Chem., Apr. 2016. (IF=5.4).
  15. Mohammad Hossein Zarifi, Arash Mohammadpour, Benjamin Daniel Wiltshire, Samira Farsinezhad , Mehdi Nosrati , Mojgan Daneshmand , Karthik Shankar, ” TRMC using planar microwave resonators: Application to the study of long-lived charge pairs in photoexcited titania nanotube arrays,” J. Phys. Chem. C, vol. 119, no. 25, p. 150615093503007, Jun. 2015. (IF=4.8)
  16. Mohammad H. Zarifi*, Samira Farsinezhad, Karthik Shankar and Mojgan Daneshmand, “Liquid Sensing Using Active Feedback Assisted Planar Microwave Resonator,” IEEE Microw. Wirel. Components Lett., vol. 25, no. 9, pp. 621–623, Sep. 2015. (IF=2.2)
  17. Mohammad Hossein Zarifi*, Mohammadreza Fayaz, Jordan Goldthorp, Mohammad Abdolrazzaghi, Zaher Hashisho, and Mojgan Daneshmand, ” Adsorbent beads Assisted High Resolution Microwave Resonator for Organic-Vapor Sensing,” Applied Physics Letter, vol. 106, no. 6, p. 062903, 2015. (IF=3.5)
  18. Mohammad Hossein Zarifi*; Sohrabi, A.; Shaibani, P.M.; daneshmand, m.; Thundat, T., “Detection of Volatile Organic Compounds Using Microwave Sensors,” Sensors Journal, IEEE, vol.15, no.1, pp.248, 254, Jan. 2015. (IF=1.98)
  19. Mohammad Hossein Zarifi*, Hajar Satvati and Mahdi Baradaran-nia,” Analysis of Evolutionary Techniques for the Automated Implementation of Digital Circuits” An International Journal of Expert Systems with Applications, Elsevier, 2015. (IF=2.98)
  20. Mohammad Hossein Zarifi*, Negar Karimi Ghalehjogh and Mahdi Baradaran-nia, ” A New Evolutionary Approach for Neural Spike Signal Detection Based on Genetic Algorithm” in An International Journal of Expert Systems with Applications, Elsevier, pp 462-467, (IF=2.98)
  21. Mohammad Hossein Zarifi* and Mojgan Daneshmand,” Bulk Disc Resonators Radial and Wineglass mode resonance characterization for Mass Sensing Applications”, Microsystem Technologies technology, (IF=0.95)
  22. Mohammad Hossein Zarifi*, Thomas Thundat and Mojgan Daneshmand, “High Resolution Microwave Microstrip Resonator for Sensing Applications,” Sensors and actuators A, 2015. (IF=1.98) Most downloaded papers
  23. Mohammad Hossein Zarifi, *, and Mojgan Daneshmand. “Design and fabrication of a square shape bulk mode MEMS resonators.” Microsystem Technologies (2014): 1-8. Springer, 2014. (IF=0.95)
  24. Mohammad Hossein Zarifi*, J Frounchi, MA Tinati, S Farshchi, JW Judy, “A low‐power small‐area 10‐bit analog‐to‐digital converter for neural recording applications” International Journal of Circuit Theory and Applications, Volume 39, Issue 4, April 2011, Pages: 385–395. (IF=1.2)
  25. Mohammad Hossein Zarifi*, Shahin Farshchi and Javad Frounchi,”Analog to digital converter for high density neural signal recording front‐end in 90 nm” Analog Integrated Circuits and Signal Processing, 2011, Volume 68, Number 3, Pages 349‐355. (IF=0.56)
  26. Mohammad Hossein Zarifi*, J Frounchi, MA Tinati, S Farshchi, JW Judy,”A LOW‐NOISE LOW‐POWER FRONT‐END AMPLIFIER FOR NEURAL‐RECORDING APPLICATIONS” Biomedical Engineering: Applications, Basis and Communications (BME) 22 (4), 301, 2010.
  27. Mohammad Hossein Zarifi*, Javad Frounchi, Shahin Farshchi and Jack W. Judy,”A novel time‐based low‐power pipeline analog to digital converter” Analog Integrated Circuits and Signal Processing, 2010, Volume 62, Number 3, Pages 281‐289. (IF=0.56)
  28. Mohammad Hossein Zarifi*, J Frounchi, MA Tinati, JW Judy, “PLATINUM‐BASED CONE MICROELECTRODES FOR IMPLANTABLE NEURAL RECORDING APPLICATIONS” Biomedical Engineering: Applications, Basis and Communications (BME) 22 (3), 249, 2010.

Co- author

  1. Mohammad Abdolrazzaghi, Mohammad Hossein Zarifi, Floquet, Cedric and Mojgan Daneshmand, “Contactless Asphaltene Detection Using an Active Planar Microwave Resonator Sensor”, ACS Energy and Fuels, 2017. (IF=2.83).
  2. Thomas R. Jones, Mohammad H. Zarifi, Mojgan Daneshmand, “Miniaturized Quarter-Mode Substrate Integrated Cavity Resonators for Humidity Sensing”, IEEE Microw. Wirel. Components Lett, (IF=1.55).
  3. Nathalie Marcela Ceron Hurtado, Mohammad H. Zarifi, Mojgan Daneshmand, Aguiló Llobet, “Flexible Microdisplacement Sensor for Wearable/Implantable Biomedical Applications”, IEEE Sensors, 2017(IF=1.8).
  4. Mohammadreza Fayaz, Mohammad H. Zarifi, Mohammad Abdolrazzaghi, Pooya Shariaty, Zaher Hashisho, and Mojgan Daneshmand, “A Novel Technique to Determine the Adsorption Breakthrough Time and Capacity Using a Non-contact High Resolution Microwave Resonator Sensor”, Accepted at Environmental Science and Technology (ACS), 2017(IF=5.39).
  5. Mohammad Abdolrazzaghi, Mohammad Hossein Zarifi, and Mojgan Daneshmand, “Wireless communication in feedback-assisted active sensors”, IEEE Sensors, 2016. (IF=1.8).
  6. Mohammad Abdolrazzaghi, Mohammad Hossein Zarifi, Witold Pedrycz and Mojgan Daneshmand, “Ultra-Sensitive Chemical Recognition: A Fuzzy Neural Network Approach”, IEEE Sensors Journal 17, no. 2 : 323-332., 2017. (IF=1.8).
  7. Marzieh Beheshti, and Mohammad Hossein Zarifi*. “RF to DC micro-converter in standard CMOS process for on-chip power harvesting applications.” AEU-International Journal of Electronics and Communications 68.12 (2014): 1180-1184. (IF=0.6)
  8. Zargarpour, Nazli, and Mohammad Hossein Zarifi*. “A piezoelectric micro-electromechanical microphone for implantable hearing aid applications.” Microsystem Technologies (2014): 1-10. (IF=0.95)
  9. P Aliparast, F Niknahad, Mohammad Hossein Zarifi, “Design of a Current-Mode CMOS Image Sensor Based on Standard CMOS Process with on Pixel Color Separation”, published in Advances in Microelectronic Engineering 2 (1), 2014. Most downloaded papers
  10. Abbas Pirmohammadi and Mohammad Hossein Zarifi*, “A low power tunable Gm–C filter based on double CMOS inverters in 0.35 μm” Analog Integrated Circuits and Signal Processing, 2012, Volume 71, Number 3, Pages 473‐479. (IF=0.56)
  11. Sanaz Asgari, et.al. “A NOVEL TWO‐STAGE GENETIC ALGORITHM FOR IMAGE RECONSTRUCTION OF ELECTRICAL RESISTANCE TOMOGRAPHY”, International Journal of Modeling, Simulation, and Scientific Computing, December, Vol. 01, No. 04: pp. 523‐542, 2010.
  12. Zahra Hadad Derafshi and Mohammad Hossein Zarifi, “Low‐Power High‐Speed OTA in 0.35μm CMOS Process”, European Journal of Scientific Research, ISSN 1450‐216X Vol.37 No.1 (2009), pp. 368‐375.
  13. Frounchi, Dehkhoda and Mohammad Hossein Zarifi, “A Low‐Distortion Wideband Integrated Current Source for Tomography Applications”, European Journal of Scientific Research, ISSN 1450‐216X Vol.27 No.1 (2009), pp.56‐65.
  14. Mehdi baradarn, shoghian and Mohammad Hossein Zarifi, “Cancer Diagnosis Using Artificial Neural Networks” IJCSNS International Journal of Computer Science and Network Security, VOL.8 No.7, July 2008.

Peer reviewed Conference Publications

  1. Zahra Abbasi, Mohammad H. Zarifi, Pooya Shariati, Zaher Hashisho, Mojgan Daneshmand, “Flexible Coupled Microwave Ring Resonators for Contactless Microbead Assisted Volatile Organic Compound Detection” IMS symposium, USA, 2017.
  2. Mohammad Abdolrazzaghi, Mohammad Hossein Zarifi, Mojgan Daneshmand, Cedric Floquet, “Contactless Asphaltene Solid Particle Deposition Monitoring Using Active Microwave Resonator” IEEE Sensors, Florida, USA, 2016. (Best paper award)
  3. Mohammad Abdolrazzaghi, Mohammad Hossein Zarifi and Mojgan Daneshmand “Sensitivity Enhancement of Split Ring Resonator based Liquid Sensors” IEEE Sensors, Florida, USA, 2016.
  4. Najia Mahdi, Ryan Kisslinger, Himani Sharma, Mohammad Hossein Zarifi, Mojgan Daneshmand, Karthik Shankar “Microwave resonator sensor integrated with nanostructured semiconductor membranes for photodetection and carrier lifetime measurement” IEEE Sensors, Florida, USA, 2016.
  5. Deif, Sameir, Mohammad Hossein Zarifi, and Mojgan Daneshmand. “Substrate choice impact on microwave sensor.” In Antenna Technology and Applied Electromagnetics (ANTEM), 2016 17th International Symposium on, pp. 1-2. IEEE, 2016.
  6. Mohammadreza Fayaz, Pooya Shariaty, Mohammad Abdolrazzaghi, Mohammad H. Zarifi, Zaher Hashisho and Mojgan Daneshmand, “A Novel Technique for Determining Adsorption Breakthrough Time and Capacity Using a Non-Contact High Resolution Microwave Sensor”, AIChE conference, UT, USA, 2015.
  7. Mohammad Hossein Zarifi, Sameir Deif and Mojgan Daneshmand,” Non-Contact High Resolution Microwave Sensor for Oil-Water Concentration Measurement”, Canada’s Oil Sands Innovation Alliance (COSIA), Canada, 2015.
  8. Mohammad Hossein Zarifi and Mojgan Daneshmand,” Non-Contact Liquid Sensing Using High Resolution Microwave Microstrip Resonator”, IMS symposium, US, 2015.
  9. Amirreza Sohrabi, Parmis Shabani, Mohammad Hossein Zarifi, Mojgan Daneshmand, Thomas Thundat, ” A Novel Technique for Rapid Vapor Detection Using Swelling Polymer Covered Microstrip Ring Resonator”, MTT symposium, Tampa, Florida, 2014.
  10. Zarifi, M.H; “Energy efficient analog to digital converter in 90nm CMOS,” Biomedical Engineering (MECBME), 2011 1st Middle East Conference on , vol., no., pp.403‐406, 21‐24 Feb. 2011,doi:10.1109/MECBME.2011.5752151
  11. Zarifi, T.; Chung‐Ching Peng; Zarifi, M.H., “Low‐power amplifier for in‐vivo EEG signal recording,” Biomedical Engineering (MECBME), 2011 1st Middle East Conference on , vol., no., pp.19‐22, 21‐24 Feb. 2011.
  12. Zarifi, M. H.; Frounchi, J.; Farshchi, S.; Judy, J. W.;, “A low‐power, low‐noise neural‐signal amplifier circuit in 90‐nm CMOS,” Engineering in Medicine and Biology Society, 2008. EMBS 2008. 30th Annual International Conference of the IEEE, vol., no., pp.2389‐2392, 20‐25 Aug. 2008.
  13. Taghipour, H.; Frounchi, J.; Zarifi, M.H., “Design and implementation of MP3 decoder using partial dynamic reconfiguration on Virtex‐4 FPGAs,” Computer and Communication Engineering, 2008. ICCCE 2008. International Conference on, vol., no., pp.683‐686, 13‐15 May 2008.
  14. Zarifi, M.H.; Frounchi, J., “Design of an input matching network for RF CMOS LNAs using stack inductors,” Computer and Communication Engineering, 2008. ICCCE 2008. International Conference on, vol., no., pp.672‐676, 13‐15 May 2008.
  15. Yousefi, M.; KoozeKanani, Z.D.; Rostami, A.; Sobhi, J.; Zarifi, M.H., “A flexible sample and hold circuit for data converter applications,” Computational Technologies in Electrical and Electronics Engineering, 2008. SIBIRCON 2008. IEEE Region 8 International Conference on , vol., no., pp.318‐321, 21‐25 July 2008.
  16. Zarifi, M.H., Frounchi, J.; Asgarifar, S.; Nia, M.B.; Dehkhoda, F.; , “A high speed low power analog to digital converter for biomedical application,” Electrical and Computer Engineering, 2008. CCECE 2008. Canadian Conference on, vol., no., pp.001269‐001272, 4‐7 May 2008.
  17. Zarifi, M.H.; Yousefi, M.; Rostami, A.; KuzeKanani, Z.A.; Sobhi, J.; , “Very high‐gain and fast‐settling opamp for switched‐capacitor applications,” Microelectronics, 2007. ICM 2007. International Conference on, vol., no., pp.385‐388, 29‐31 Dec. 2007.
  18. Javad Frounchi, Mohammad Hossein Zarifi and Fahimeh Dehkhoda,”A Custom‐made Demodulation Technique for ElT/EIS Systems” IFMBE Proceedings, 1, Volume 17, 13th International Conference on Electrical Bio-impedance and the 8th Conference on Electrical Impedance Tomography, Part 8, Pages 84‐
  19. Javad Frounchi, Mohammad Hossein Zarifi and Fahimeh Dehkhoda, “A Differential Current Source for High Frequency Biomedical Applications in a 0.5 μm CMOS Integrated Circuit Technology “IFMBE Proceedings, 1, Volume 17, 13th International Conference on Electrical Bioimpedance and the 8th Conference on Electrical Impedance Tomography, Part 8, Pages 217‐
  20. Mohammad H. Zarifi and Javad Frounchi “A Low‐Power, Small‐Area 1 Msample/sec ADC for Neural‐ Signal Recording Systems in 0.35‐μm CMOS”, 4th International IEEE EMBS Conference on Neural Engineering, Turkey, 2009.
  21. Mohammad H. Zarifi, Javad Frounchi, Navid M. S. Jahed, and Mohammad A. Tinati “Finite‐Element Analysis of Platinum‐Based Cone Microelectrodes for Implantable Neural Recording”, 4th International IEEE EMBS Conference on Neural Engineering, Turkey, 2009.
  22. Alizadeh, G., J. Frounchi, M. Baradaran Nia, H. Zarifi, and S. Asgarifar. “An FPGA implementation of an artificial neural network for prediction of cetane number.” In Computer and Communication Engineering, 2008. ICCCE 2008. International Conference on, pp. 605-608. IEEE, 2008.