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University of Tehran
College of Engineering
Zeinab Sanaee

Zeinab Sanaee


School of Electrical & Computer Engineering
Assistant Professor
Email: z.sanaee [AT] ece.ut.ac.ir
Personal Website: http://sepand.ut.ac.ir
Education

PhD (Electrical Engineering)  

University of Tehran, Tehran, Iran, 2007- 2011.

Thesis Title: Investigation and fabrication of silicon micro and nano needles using deep micromachining technique.

Supervisor: Prof. S. Mohajerzadeh

 

M.Sc. (Electrical Engineering)  

Thesis Title:  Design and fabrication of flexible plasma panels on PET

Supervisor: Prof. S. Mohajerzadeh        

  

B.Sc. (Electrical Engineering)

University of Tehran, Tehran, Iran,     2001-2005

Thesis Title:  Fabrication of carbon nanotube display

Supervisor: Prof. S. Mohajerzadeh



Research Interests

-  NEMS/MEMS Technology

-  MEMS Energy Devices

-  Bio-MEMS and Nano-biotechnology

 



Honors

Ranked 1st among PhD. admitted students in Electrical Engineering, University of Tehran,     2007.

Ranked 1st among PhD. admitted students in Nano-Electronics, University of Tehran, 2007.

 1st GPA among all M.Sc. students of the whole Engineering Department, University of Tehran, 2007.

Winner of Khwarizmi International Award and ranked 2nd, 2007.

Ranked 1st among M.Sc. admitted students in Electrical engineering, University of Tehran, 2005.

Being as one of the exceptional talent students in University of Tehran for 6 years (B.Sc. and  M.Sc.), [2001-2007]

Ranked 88th among 400,000 candidates participating in the B.Sc. entrance exam, 2001



Selected Publications

[1] M. Abdolahad, Z. Sanaee, M. Janmaleki, S. Mohajerzadeh, M. Abdollahi, M. Mehran , "Vertically aligned multiwall-carbon nanotubes to preferentially entrap highly metastatic cancerous cells,"  Journal of CARBON, doi:10.1016/j.carbon.2012.01.001, 2012.      

[2] Z Sanaee, M Poudineh, M Abdolahad and S Mohajerzadeh, "High aspect ratio high precision etching of silicon using a sequential deep reactive ion etching," Journal of micromachining and microengineering, Volume 21, 125012 (11pp), 2011.

[3] Z. Sanaee, S. Mohajerzadeh and M. Mehran, "A self-defined hollow needle formation on Silicon membranes with the aids of carbon nanotubes," accepted in Journal of Nanoscience and Nanotechnology, Volume 11, Number 10, pp. 8786-8791(6), 2011.

[4] Z. Sanaee and S. Mohajerzadeh, "Ultrafine hollow needle formation on silicon," Journal of Applied Physics, Volume 107, Issue 8, pp. 083711-1 to 083711-6, 2010.

(Also selected for the May 10, 2010 issue of Virtual Journal of Nanoscale Science & Technology.)

[5] Z.  Sanaee, S. Mohajerzadeh, K. Zand, F. S. Gard and H. Pajouhi, "Minimizing permeability of PET substrates using Oxygen plasma treatment," Journal of Applied Surface Science, Volume 96, Issue 20, pp. 2218-2225, 2011.

[6] Z. Sanaee, K. Zand, S. Mohajerzadeh and F. S. Gard, "Improved permeability of  PET substrates using oxygen and hydrogen Plasma," Journal of Vacuum, Volume 85,  pp 290-296, 2010.

[7] M. Mehran, Z. Sanaee and S. Mohajerzadeh, "Formation of silicon nano-grass and nano-structures on silicon using a deep reactive ion etching", Journal of Micro & Nano Letters, Volume 5, Issue 6, pp. 374–378, 2010.

[8] M. Mehran, S. Mohajerzadeh, Z. Sanaee and A. Abdi, "Nanograss and nanostructure formation on silicon using a modified deep reactive ion etching", Journal of Applied Physics Letters, Volume 96, Issue 20, pp. 203101-1 to 203101-3, 2010.

[9] M. Mehran, Z. Sanaee, M. Abdolahad and S. Mohajerzadeh, "Controllable silicon nano-grass formation using a hydrogenation assisted deep reactive ion etching," accepted in  Journal of Materials Science in Semiconductor Processing, 2011.

[10] M. Mehran, Z. Kolahdouz, Z. Sanaee and S. Mohajerzadeh, "Evolution of high aspect ratio and nano-grass structures using a modified low plasma density reactive ion etching," accepted in The European Physical Journal Applied Physics, 2011.

[11] H. Pajouhi, S. Mohajerzadeh, F. Nayeri and Z. Sanaee, "Deep micromachining of Poly-ethylene Terephthalate for plastic MEMS applications," Journal of Solid State Electronics, Volume 54, Issue 12, pp. 1536-1542, 2010.

[12] Y. Abdi, J. Koohsorkhi, S. Mohajerzadeh, S. Darbari, and Z. Sanaee, "Embedded vertically grown carbon nanotubes for field emission applications," Journal of Vacuum Science & Technology B, Volume 25, Issue 3, pp. 822-828, 2007.