`
`
`
`
`
`
`
`
`
`
`
`Vivek Subramanian
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`Address:
`513 Sutardja Dai Hall
`University of California
`Berkeley, CA 94720-1770
`Ph: (510) 643-4535
`Email: viveks@eecs.berkeley.edu
`Education
`Ph.D. in Electrical Engineering, Stanford University
`Stanford, California
`Honors earned: Graduate Fellowship, Eastman Kodak Company
`
`Wintek Exhibit 1014
`
`3 / 96 - 6 / 98
`
`9 / 94 - 3 / 96
`
`8 / 90 - 5 / 94
`
`2000 - present
`
`2009 - present
`
`2000 - present
`
`2004 – present
`
`2008 – 2011
`
`1998-2000
`
`MS in Electrical Engineering, Stanford University
`Stanford, California
`BS in Electrical Engineering, Louisiana State University
`Baton Rouge, Louisiana
`Honors earned:
`Summa cum laude, College Honors, Outstanding Senior, Junior and Sophomore, Honors College
`Professional Experience
`Department of Electrical Engineering & Computer Sciences, University of California
`Berkeley, CA
`7/11 – present: Professor
`7/05 – 7/11: Associate Professor
`7/00-7/05: Assistant Professor
`Research, teaching and service in EECS Department
`Honors Earned:
`Nominated to MIT’s Technology Review top 100 young innovators list (TR100), 2002
`National Science Foundation Young Investigator (CAREER) Award, FY2002,
`Nominated to National Academy of Engineering’s Frontiers of Engineering, 2002
`Winner of 2002 Paul Rappaport Award for best paper in an IEEE EDS Journal
`Best paper award, 2004 IEEE Device Research Conference
`Outstanding Teaching Award, EECS Department, UC Berkeley, 2005
`2008 Printed Electronics Champion, Printed Electronics USA Conference, November 2008
`Outstanding paper award, 2012 IMAPS Microelectronics Conference
`Principal Investigator and Adjunct Professor, World Class University Program, Sunchon
`National University
`Sunchon, Korea
`Principal Investigator leading large research program focused on developing a new department in the area
`of printed electronics including 9 faculty covering multiple disciplines and 4 different countries
`Independent Consultant
`Orinda, CA
`Consultant to the semiconductor industry and its associated fields in the following areas:
`Memory technology and design, Silicon Process Technology
`Display / Imager and Flexible Electronics Technology, RFID Technology
`Intellectual Property Consulting
`Technology Evaluation / Venture Capital due diligence
`Founding Scientific Advisor, Kovio, Inc.
`Sunnyvale, CA
`Scientific advising to printed electronics startup company
`Chief Technical Advisor, QuSwami, Inc.
`San Francisco, CA
`Scientific advising to energy conversion device startup company
`Served as CTO from July 2010-June 2011
`Consulting Assistant Professor, Electrical Engineering Department, Stanford University.
`Stanford, CA
`Advisory role for research group of Prof. Krishna C. Saraswat
`Page 1 of 16
`
`
`
`1998-2000
`
`1998 - 2000
`
`1998
`
`1997
`
`1996
`
`1994-1998
`
`Visiting Research Engineer, Electrical Engineering Department, University of California.
`Berkeley, CA
`Research into 25nm MOSFET technologies for giga-scale integration
`Founder, Matrix Semiconductor, Inc.
`Santa Clara, CA
`Co-founder and technical advisor of startup company working on high-density memory technology
`Honors Earned:
`Nominated to Scientific American’s SA50 List for Visionary Technology
`Finalist for 2003 World Technology Award for Information Technology Hardware
`Winner, 2005 EDN Innovation Award
`Co-instructor, Electrical Engineering Department, Stanford University.
`Stanford, CA
`Co-teaching of EE311, Advanced Integrated Circuit Fabrication Processes
`Intern, Advanced Product Research and Development Laboratory, Motorola Inc.
`Austin, TX
`Research into process development issues affecting SiGe SEMFET devices
`Head Teaching Assistant EE410: IC Fabrication Laboratory, Stanford University
`Stanford, CA
`Coordination and instruction of EE410, graduate level laboratory course.
`Research Assistant, Electrical Engineering, Stanford University
`Stanford, CA
`Research into crystallization of amorphous Si and SiGe films using low thermal budget processes.
`Professional Affiliations and Activities
`Chair, Scientific Advisory Board, iPACK, Royal Institute of Technology (KTH), Sweden, 2011 to date
`Tampere Institute of Technology Faculty Search Committee, Finland, 2013
`University of Oulu Faculty Search Committee, Finland, 2013
`Served as external thesis committee member for several universities world-wide, including University of
`Cape Town (South Africa), Tampere Institute of Technology (Finland), Technical University of Eindhoven
`(Netherlands), Indian Institute of Science (India), Indian Institute of Technology (India), 2009 to date
`Technical Program Chair, Large Area, Organic, and Printed Electronics Conference, 2012-2013
`Scientific Committee, Large Area, Organic, and Printed Electronics Conference, 2009-2011
`Scientific Committee, International Conference on Printed and Flexible Elecronics, 2009-2013
`IEEE Electron Devices Society Organic Electronics Committee, 2003 - 2005
`Executive Committee, International Electron Device Meeting, 2003 to 2009
`Technical Program Committee, International Electron Device Meeting, 2001-2002
`Technical Program Committee member, Device Research Conference, 2000-2002
`Technical Program Committee member, VLSI-TSA Conference, 2005
`Member, Institute of Electrical and Electronic Engineers
`Publications and Patents
`Published more than 200 technical papers in international journals and conferences and 30 patents covering
`several aspects of semiconductor devices, materials, circuit design, process technology and memory
`architecture.
`
`Page 2 of 16
`
`
`
`List of Patents, Publications and Presentations
`
`2.
`
`3.
`
`4.
`
`5.
`
`6.
`
`7.
`
`Patents
`1.
`“Vertically stacked field programmable nonvolatile memory and method of fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 8,503,215
`“Process-variation tolerant series-connected NMOS and PMOS diodes, and standard cells, tags, and sensors containing
`the same”, V. Subramanian, P. Smith, US Patent 8,471,308
`“Printed compatible designs and layout schemes for printed electronics”, Z. Wang, V. Subramanian, L. Cleveland, US
`Patent 8,383,952
`“Method for making surveillance devices with multiple capacitors”, P. Smith, C. Choi, J. M. Cleeves, V. Subramanian, A.
`Kamath, S. Molesa, US Patent 8,296,943
`“High reliability surveillance and/or identification tag/devices and methods of making and using the same”, V.
`Subramanian, P. Smith, V. Pavate, A. Kamath, C. Choi, A. Chandra, and J. M. Cleeves, US Patent 8,264,359
`“High reliability surveillance and/or identification tag/devices and methods of making and using the same”, V.
`Subramanian, P. Smith, V. Pavate, A. Kamath, C. Choi, A. Chandra, and J. M. Cleeves, US Patent 8,227,320
`“Vertically stacked field programmable nonvolatile memory and method of fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 8208282
`“Reliable tag deactivation”,J. M. Cleeves, V. Subramanian, US Patent 8138921
`8.
`“Combined static and dynamic frequency divider chains using thin film transistors”, V. Subramanian, US Patent 8085068
`9.
`10. “Process-variation tolerant diode, standard cells including the same, tags and sensors containing the same, and methods
`for manufacturing the same”, V. Subramanian, P. Smith, US Patent 7932537
`11. “Three terminal nonvolatile memory Device with vertical gated diode”, T. H. Lee, V. Subramanian, J. M. Cleeves, M. G.
`Johnson, P. M. Farmwald, I. G. Kouznetsov, US Patent 7825455
`12. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, V. Subramanian, J. M. Cleeves,
`US Patent 7816189
`13. “Multi-mode tags and methods of making and using the same”, P. Smith, J. M. Cleeves, V. Pavate, V. Subramanian, US
`Patent 7750792
`14. “Method of manufacturing complementary diodes”, V. Subramanian, P. Smith, US Patent 7528017
`15. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, V. Subramanian, J. M. Cleeves,
`US Patent 7319053
`16. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, V. Subramanian, J. M. Cleeves,
`US Patent 7265000
`17. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, V. Subramanian, J. M. Cleeves,
`US Patent 7160761
`18. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, V. Subramanian, J. M. Cleeves,
`US Patent 7157314
`19. “Dense arrays and charge storage devices”, T. H. Lee, V. Subramanian, J. M. Cleeves, A. J. Walker, C. Petti, I.
`Kouznetzov, M. G. Johnson, P. M. Farmwald. B. Herner, US Patent 7129538
`20. “Patterning three dimensional structures”, C. K. Li, J. N. Knall, M. A. Vyvoda, J. M. Cleeves, V. Subramanian, US Patent
`7071565
`21. “Monolithic three dimensional array of charge storage devices containing a planarized layer”, T. H. Lee, V. Subramanian,
`J. M. Cleeves, A. J. Walker, C. J. Petti, I. G. Kouznetzov, M. G. Johnson, P. M. Farmwald, and B. Herner, US Patent
`6881994
`22. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, M. G. Johnson, T. H. Lee, V.
`Subramanian, and P. M. Farmwald, US Patent 6780711
`
`Page 3 of 16
`
`
`
`23. “Thermal processing for three dimensional circuits”, V. Subramanian, J. M. Cleeves, J. N. Knall, C. K. Li, and M. A.
`Vyvoda, US Patent 6770939
`24. “Multigate semiconductor device with vertical channel current and method of fabrication”, J. M. Cleeves and V.
`Subramanian, US Patent 6677204
`25. “Thermal processing for three dimensional circuits”, V. Subramanian, J. M. Cleeves, J. N. Knall, C. K. Li, and M. A.
`Vyvoda, US Patent 6624011
`26. “Multigate semiconductor device with vertical channel current and method of fabrication”, J. M. Cleeves and V.
`Subramanian, US Patent 6580124
`27. “Patterning three dimensional structures”, C. K. Li, J. N. Knall, M. A. Vyvoda, J. M. Cleeves, and V. Subramanian, US
`Patent 6627530
`28. “Low cost three-dimensional memory array”, M. Johnson, T. Lee, V. Subramanian, P. Farmwald, J. Knall, US Patent
`6515888
`29. “Integrated circuit structure including three-dimensional memory array”, M. Johnson, T. Lee, V. Subramanian, P. M.
`Farmwald, J. M. Cleeves, US Patent 6385074.
`30. “FINFET transistor structures having double gate channel extending vertically from a substrate and methods of
`manufacture”, C. Hu, T-J. King, V. Subramanian, L. Chang, X. Huang, Y-K. Choi, J. T. Kedzierski, N. Lindert, J. Bokor,
`W-C. Lee, US Patent 6413802
`31. “Vertically stacked field programmable nonvolatile memory and method of fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 6185122.
`32. “Vertically Stacked Field Programmable Nonvolatile Memory and Method of Fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 6034882.
`33. “Vertically Stacked Field Programmable Nonvolatile Memory and Method of Fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 6351406.
`34. “Vertically Stacked Field Programmable Nonvolatile Memory and Method of Fabrication”, M. Johnson, T. Lee, V.
`Subramanian, M. Farmwald, and J. M. Cleeves, US Patent 6483736.
`Invited Magazine Articles, Books, Chapters, and Monographs
`1. Chapter in “Inkjet Technology for Digital Fabrication”, Editors: Ian M. Hutchings, Graham D. Martin, Wiley, ISBN: 978-
`0470681985
`2. Chapter in “Applications of Organic and Printed Electronics: A Technology-Enabled Revolution (Integrated Circuits and
`Systems), Editor: E. Cantatore, ISB: 978-1-461-43159-6
`3. Chapter in “Inkjet-based Micromanufacturing”, Editors: Korvink, Smith, Shin, Wiley, ISBN: 978-3-527-31904-6
`4. Chapter in “Organic Electronics II. More Materials and Applications", Editor: H. Klauk, Wiley, ISBN: 978-3-527-32647-
`1
`5. Chapter in “Transparent Electronics: From Synthesis to Applications”, Editors: A. Facchetti and T. Marks, Wiley, ISBN:
`978-0-470-99077-3, 2010.
`6. Chapter in “The chemistry of inkjet inks”, Editor: S. Magdassi, World Scientific Publishing Company, ISBN: 978-
`9812818218, 2009
`7. Chapter in “Organic Field-Effect Transistors”, Editors: Z. Bao, and J. Locklin, CRC Press, ISBN: 978-0849380808, 2007
`8.
`“Developments in printed RFID”, V. Subramanian, Pira Publishing, UK, 2006.
`9.
`“3D Chips: Future Possibilities”, V. Subramanian, Silicon India, Feb 2003, pp. 24-25
`Invited Conference Presentations
`Invited, “Printed Eelectronics: The Confluence of Printing and Semionductors”, Canadian Printed Electronics Symposium,
`1.
`Montreal, Canada, April 9, 2013.
`Invited “Modeling, scaling, and integration of gravure printing for fast switching Organic FETs”, V. Subramanian, S. J.
`S. Morris, H. Kang, Materials Research Society Fall 2012 Meeting, Boston, MA, Nov 25-30, 2012
`
`2.
`
`Page 4 of 16
`
`
`
`4.
`
`5.
`
`6.
`
`3.
`
`Invited, “Printed Nanoparticles as routes to high-performance printed conductors: Synthesis, Printing Processes, and
`Device Applications”, V. Subramanian, H. Kang, R. Kitsomboonloha, and S. K. Volkman, The 2012 International
`Conference on Flexible and Printed Electronics ICFPE2012, Tokyo, Japan, September 6th - 8th, 2012
`Invited “Advanced Printing Processes for High-Performance Printed Transistors”, V. Subramanian, Flextech Workshop
`on Printing Electronics - Ink and Substrate Interactions, Kalamazoo, MI, August 1-2, 2012
`Invited “High-performance Printed Transistors: Materials, Processes, and Devices”, V. Subramanian, 2nd CPEM
`International Symposium “Organic Semiconductors and Printed Electronics”, Gyeonggi, South Korea, May 10th, 2012.
`Invited “Highly-Scaled Gravure and Inkjet Printed Organic Transistors: Tools, Processes, and Devices”, Hongki Kang &
`Vivek Subramanian, 2012 Flextech Flexible Electronics and Display Conference, Phoenix, AZ, Feb 5-9, 2012.
`7. Plenary “Nanomaterials for printed electronics: synthesis, design, and applications”, V. Subramanian, International
`Conference on Nano Science and Nano Technology, Sunchon, Korea, November 11th, 2011.
`Invited “Advances in scaling of printed transistors”, V. Subramanian, International Seminar on Printed Electronics, Seoul,
`Korea, June 8th, 2011.
`Invited “High-Performance Fully Printed Transistors: Materials, Processes, and Device Characteristics”, V. Subramanian,
`H. Tseng, R. Kitsomboonloha, and A. de la Fuente Vornbrock, 2011 Electrochemical Society Meeting, Montreal, Canada,
`May 2011
`10. Invited “From Droplets to Devices: Printed Transistor Processes, Integration, and Characteristics”, Vivek Subramanian,
`Daniel Soltman, Huai-Yuan Tseng, Rungrot Kitsomboonloha and Alejandro de la Fuente Vornbrock, Materials Research
`Society Spring Meeting, San Francisco, CA, April 2011
`11. Keynote “Printed electronics: Innovations in tools, materials, devices, and applications”, V. Subramanian, 2011 Korea
`Printed Electronics Association (KoPeA) meeting, Seoul, Korea, March 2011
`12. Keynote “Printed RF tags and sensors: the confluence of printing and semiconductors”, V. Subramanian, F. Liao, and H-
`Y. Tseng, The European Microwave Integrated Circuits Conference 2010, Paris, France, September 2010.
`13. Invited “Droplet-on-demand direct patterning of active materials: materials, modeling, and integration”, V. Subramanian,
`The 2010 IEEE Lithography Workshop, Kuai, Hawaii, November 2010
`14. Plenary “Printed electronics: where are we, and where are we going”, V. Subramanian, 2010 Large Area Organic, and
`Printed Electronics Convention (LOPE-C), Frankfurt, Germany, June 2010.
`15. Keynote “Printed RFID: Technology Trends and Outlook”, V. Subramanian, IEEE International Conference on RFID
`2010, Orlando, Florida, April 2010.
`16. Invited “Mechanistic studies on sintering of nanoparticles for formation of solution-processed thin films”, 2010 Spring
`meeting of the Materials Research Society, San Francisco, CA, April 2010.
`17. Invited “Printed Electronics: the confluence of printing and semiconductors”, Vivek Subramanian, 2009 International
`Conference on Flexible and Printing Electronics, Jeju Island, Korea, Nov 2009.
`18. Invited “Organic Transistor Vapor and Biosensors – Technology Status and Implementation Issues”, Vivek Subramanian,
`Frank Liao, Lakshmi Jagannathan, Electrochemical Society Meeting, Vienna, Austria, October 2009.
`19. Invited “Printed transistors for low-cost electronics: the confluence of printing and printable electronic materials”, Vivek
`Subramanian, Alejandro de la Fuente Vornbrock, Steven Molesa, Daniel Soltman, Huai-Yuan Tseng, and Steven K.
`Volkman, SPIE Optics + Photonics, August 2-6, 2009, San Diego, CA
`20. Invited “Printed Zinc Oxide Based Electronics: Materials, Devices, and Outlook”, V. Subramanian, S. K. Volkman, and
`D. R. Redinger, LOPE-C, June 23-25, 2009, Frankfurt, Germany
`21. Invited “Printed Devices for Low-Cost Electronics: Technology Status and Outlook”, V. Subramanian, PETEC Inaugural
`Event, March 17, 2009, Durham, United Kingdom
`22. invited “Printed Electronic Tags and Sensors for Smart Packaging Applications”, Vivek Subramanian, Josephine Chang,
`Lakshmi Jagannathan, Frank Liao, Steve Molesa, David Redinger, Daniel Soltman, Huai-Yuan Tseng, Steve Volkman,
`Shong Yin, 2009 Flexible Electronics and Display Conference, Phoenix, AZ, Feb 2-5, 2009.
`23. invited “Electronic Nose Sensors for Consumer Packaging”, V. Subramanian, IDTechEx Printed Electronics USA, San
`Jose, CA, Dec 2-5, 2008.
`
`8.
`
`9.
`
`Page 5 of 16
`
`
`
`24. invited “Solution-Processed Transparent Transistors for Low-Cost, Flexible Displays”, V. Subramanian, S. K. Volkman,
`and D. R. Redinger, LEOS 2008: The 21st Annual Meeting of the IEEE Lasers and Electro-Optics Society, Newport Beach,
`CA, 9-13 November, 2008.
`25. invited “Organic chemical and biosensors for smart packages”, V. Subramanian, IDTechEx Printed Electronics Asia,
`Tokyo, Japan, Oct 8-9, 2008.
`26. invited “Printed Electronics for Low-Cost Tags, Displays, and Sensors”, V. Subramanian, 1st International Conference on
`R2R Printed Electronics, Seoul, Korea, April 30-May 2, 2008.
`27. invited “Printed organic RFID tags: technology, roadmaps, and challenges”, V. Subramanian, 1st Plastic Electronics Asia
`Conference and Showcase, Seoul, Korea, June 24-26, 2008
`28. invited “Power supply considerations and solutions for printed electronic tags and sensors”, V. Subramanian, IDTechEx
`Printed Electronics Europe, Dresden, Germany, April 8-9, 2008
`29. invited “Printed Chemical and Biosensors: Technology, Design and Challenges”, GOSPEL Workshop on Plastic Chemical
`Sensors, Dresden, Germany, April 9, 2008
`30. Plenary “Printed Electronics For Low-Cost Electronic Systems: Technology Status and Application Development”, Vivek
`Subramanian, Josephine B. Chang, Alejandro de la Fuente Vornbrock, Daniel C. Huang, Lakshmi Jagannathan, Frank
`Liao, Brian Mattis, Steven Molesa, David R. Redinger, Daniel Soltman, Steven K. Volkman, Qintao Zhang, 38th European
`Solid State Device Research Conference, Edinburgh, Scotland, September 15-19, 2008
`31. invited “Printed Organic Transistors for Low-cost Tags, Displays, and Sensors: Technology, Modeling and Challenges”,
`Vivek Subramanian, Alejandro de la Fuente Vornbrock, Huai-Yuan Tseng and Shong Yin, Materials Research Society
`Fall Meeting, Boston, MA, Dec 1-4, 2008.
`32. invited “Printed Electronics for Low-Cost Tags and Sensors”, Vivek Subramanian, Sixth Annual Workshop on
`Microelectronics and Electron Devices, April 18, 2008.
`33. invited “Printed organic RF tags, chemical sensors and biosensors”, Vivek Subramanian, International Symposium for
`Flexible Electronics and Display, Hsinchu, Taiwan, Nov 18, 2007.
`34. invited “Printed Tags and Sensors for RFID: Opportunities and Challenges”, Vivek Subramanian, Printed Electronics USA
`2007, San Francisco, CA, Nov 14, 2007.
`35. invited “Printed RFID Tags: Materials, Processes, and Devices”, Vivek Subramanian, Daniel Soltman, Daniel Huang,
`Steven Molesa, 2007 AiChE Annual Meeting, Salt Lake City, UT, Nov. 8, 2007.
`36. invited “Printed organic RFID tags: technology, roadmaps, and challenges”, Vivek Subramanian, 3rd Global Plastic
`Electronics Conference and Showcase, Frankfurt, Germany, Oct 30, 2007.
`37. invited “Printed organic transistors: technology, characteristics, and modeling”, Vivek Subramanian, Alejandro de la
`Fuente Vornbrock, Daniel Soltman, Huai-Yuan Tseng, and Steve Molesa, 212th meeting of the Electrochemical Society,
`Washington, DC, Oct 8, 2007.
`38. invited “Printed electronic tags and sensors - device, materials, and circuit issues”, Vivek Subramanian, 2007 Organic
`Electronics Conference and Exhibition, Frankfurt, Germany, Sept 25, 2007.
`39. invited “Inkjet printing of transistors, diodes, and passive components for smart tags”, Vivek Subramanian, Innovations
`in Inkjet: 3rd DPI Inkjet Workshop, Eindhoven Institute of Technology, Netherlands, June 28-29, 2007.
`40. invited “Printed organic transistors”, A. de la Fuente and V. Subramanian, Industry Forum on Printed Electronics, Chicago,
`IL, April 23-24, 2007
`41. invited “From Materials to Circuits: Implications of printed materials on printed RFID”, V. Subramanian, 2007 Pira printed
`RFID conference, Frankfurt, Germany, June 4-6, 2007.
`42. keynote “Droplet on demand lithography: An enabling technology for low-cost electronics”, V. Subramanian, A. de la
`Fuente Vornbrock, S. Molesa, D. Redinger, Q. Zhang, and S. K. Volkman, SPIE Advanced lithography, 27th February,
`2007
`43. invted “Printed RFID tags: performance needs and technology trends”, V. Subramanian, 2007 IDTechEx Smart labels
`USA , Boston, MA, Febraury 20-23, 2007.
`44. keynote “Printed Organic Transistors for low-cost tagging and sensing applications”, V. Subramanian, J. Chang, A. de la
`Fuente Vornbrock, S. Molesa, D. Soltman, and Q. Zhang. 6th International IEEE Conference on Polymers and Adhesives
`in Microelectronics and Photonics, Tokyo, January 15th-18th, 2007.
`
`Page 6 of 16
`
`
`
`45. invited “Nano Inks for Printed RFID”, V. Subramanian, Pira Nanoscale Inks and Pigment Technologies Conference,
`Chicago, IL, Sept 27-28, 2006.
`46. invited “Toward Printed RFID: Materials, Processes, and Devices”, V. Subramanian, 5th Annual Printed Electronics and
`Displays Conference and Trade Fair, Las Vegas, Oct 11-13, 2006.
`47. invited “Inkjetted Organic Transistors for Smart Tagging Applications”, Vivek Subramanian, Jean M. J. Frechet, Steven
`Molesa, Josephine Chang, Amanda R. Murphy, Alejandro de la Fuente Vornbrock, Steven Volkman, 2006 AiChE Annual
`Meeting, Nov 17th, 2006
`48. invited focal paper “All-printed electronics: Materials, Devices, and Circuit Implications”, V.Subramanian, J. Chang, S.
`Molesa, D. Redinger, and S. Volkman, Digital Fabrication 2006, Denver, CO, Sept 17-22, 2006.
`49. invited “Printed transistors and passive components for low-cost electronics applications”, V. Subramanian, J. B. Chang,
`S. E. Molesa, S. K. Volkman, and D. R. Redinger, International Symposium on VLSI Technology, Systems and
`Applications (VLSI-TSA) April, 2006, pp. 68-9.
`50. invited “Advanced printed materials and devices for RFID applications”, V. Subramanian, IDTechEx Printed Electronics
`Europe, April 19-21, 2006.
`51. invited “Printed Electronic Nose Vapor Sensors for Consumer Product Monitoring”, V. Subramanian, J. Lee, V. Liu, S.
`Molesa, IEEE International Solid State Circuits Conference, Paper 15.3, February, 2006.
`52. invited “Nanotechnology in Printed Electronics: Nanoparticles, Nanorods, and Nanowhy”, V. Subramanian, Pira Pack
`Electronics Conference, January 25-26, 2006.
`53. invited “All-printed RFID Tags: Materials, Devices, and Circuit Implications”, Vivek Subramanian, Paul C. Chang, Daniel
`Huang, Josephine B. Lee, Steven E. Molesa, David R. Redinger, and Steven K. Volkman, VLSI Design, 2006, Hyderabad
`India, Jan 2006.
`54. invited “Printed organic transistors: materials and technology”, Vivek Subramanian, Pacifichem 2005: American Chemical
`Society Pacific Basin meeting, December 15-20, 2005, Honolulu, HI,
`55. invited “Low-cost arrayed gas sensors for environmental monitoring”. Vivek Subramanian, Josephine Lee and Vincent
`Liu, Materials Research Society Fall Symposium, Paper S2.1, Boston, MA, December 2005.
`56. invited “Prospects for All-printed RFID: Materials, Devices, Circuits”, V. Subramanian, International Workshop on Radio
`Frequency Identification (RFID) and Wirelss Sensors, 11-13 November, 2005, Kanpur, India.
`57. invited “Printed electronics for low-cost tagging applications”, V. Subramanian, 2005 International Symposium on
`Flexible Electronics and Display, Hsinchu, Taiwan, October 2005.
`58. invited “Printed electronic nose gas sensors”, Vivek Subramanian, Plastic Electronics 2005, Frankfurt, Germany, Oct 4-5,
`2005
`59. invited “Uses of nanotechnology in printed electronics”, Vivek Subramanian, Printed Electronics 205, Pira International,
`Thistle Marble Arch, London, UK, Sept 14-15, 2005
`60. invited “Printed organic transistors for low-cost RFID applications”, Vivek Subramanian, Proceedings of SPIE-The
`International Society for Optical Engineering vol. 5940, (594013/1-594013/9) , pp. 170-178, 2005.
`61. invited “Advanced printed materials and devices for ultra-low-cost RFID”, Vivek Subramanian, Printed RFID: Achieving
`low cost tags through printed electronics – Pira International, Gatwick, Surrey, UK, May 10-11, 2005.
`62. Plenary session invited talk “Printed Organic Transistors for Ultra-low-cost RFID Applications”, Vivek Subramanian,
`Paul C. Chang, Josephine B. Lee, Steven E. Molesa, and Steven K. Volkman, Polytronic 2004: 4th International IEEE
`Conference on Polymers and Adhesives in Microelectronics and Photonics, Portland, Oregon, USA, 12 September 2004.
`63. invited “Materials, Device, and Circuits Issues for low-cost printed RFID”, V. Subramanian, 2nd Cintelliq Organic
`Semiconductor Conference, 2004 (OSC-2004), Cambridge, England, October 2004.
`64. invited “All-printed flexible organic thin film transistors: Current status and outlook for the future”, V. Subramanian, J.
`M. J. Fréchet, P. C. Chang, D. C. Huang, J. B. Lee, F. Liao, B. A. Mattis, S. Molesa, A. R. Murphy, D. R. Redinger, and
`S. K. Volkman, 206th meeting of the Electrochemical Society, Honolulu, HI, October 2004.
`65. invited “Nanoscale organic transistors: towards gain in molecular devices”, V. Subramanian, P. C. Chang, J. B. Lee, T.
`Le, A. Murphy, J. M. J. Frechet, and A. Liddle, 2004 IEEE Nanoscale Devices and Systems Integration Conference, Miami,
`FL, 2004.
`
`Page 7 of 16
`
`
`
`66. invited “Towards Printed Low-Cost RFID Tags: Device, Materials and Circuit Technologies”, V. Subramanian, 2nd
`Advanced Technology Workshop on Printing an Intelligent Future: Printed Organic and Molecular Electronic
`Technologies, Boston, MA, March 16-19, 2003.
`67. invited “Prospects for organic semiconductor based devices and circuits: applications, performance, and reliability
`considerations”, V. Subramanian, 2002 Topical Research Conference on Reliability, Oct 2002.
`68. invited “FinFET - quasi-planar double-gate MOSFET”, S. H. Tang, L. Chang, N. Lindert, Y-K. Choi, W-C. Lee, X. Huang,
`V. Subramanian, J. Bokor, T-J. King, C. Hu, 20001 IEEE International Solid-State Circuits Conference Digest of Technical
`Papers, pp. 118-119, 437, 2001.
`69. invited “3-D ICs with Multiple Si Layers: Performance Analysis, and Technology”, K. Saraswat, K. Banerjee, A. Joshi,
`P. Kalavade, S. Souri, and V. Subramanian, presented at The Fifth International Symposium on Low and High Dielectric
`Constant Materials: Materials Science, Processing, and Reliability Issues, 197th meeting of the Electrochemical Society,
`Toronto, Ontario, Canada, May 14-18, 2000.
`70. invited “Novel 3-D Structures”, K. C. Saraswat, S. J. Souri, V. Subramanian, A. R. Joshi, and A. W. Wang, 1999 IEEE
`International SOI Conference Proceedings, pp. 54-55.
`71. invited “Seeding Technology for High Performance TFTs”, K. C. Saraswat and V. Subramanian, Proceedings of the
`Electronic Display Forum 98, EIAJ/SEMI, Yokohama, April 1998, pp. 2.7-2.15.
`72. invited “A Low-Temperature Polycrystalline Si TFT Technology for Large-Area AMLCD Drivers”, K. C. Saraswat, V.
`Subramanian, and S. Jurichich, Polycrystalline Thin Films III - Structure, Texture, Properties, and Applications, MRS
`Symposium Proceedings pp 439-449, 1997.
`73. invited “A low temperature polycrystalline SiGe CMOS TFT technology for large area AMLCD drivers”, K. C. Saraswat,
`S. Jurichich, T.-J. King, V. Subramanian, and A. Wang, Proceedings of Thin Film Transistor Technologies III, ECS
`Symposium, 1996, pp. 186-196.
`Journal Papers
`1.
`“Inkjet printing of precisely defined features using contact-angle hysteresis”, Dan Soltman, Ben Smith, S.J.S. Morris,
`Vivek Subramanian, Journal of Colloid and Interface Science, Volume 400, Pages 135–139, 2013
`“Femtoliter-Scale Patterning by High-Speed, Highly Scaled Inverse Gravure Printing”, R Kitsomboonloha, SJS Morris, X
`Rong, V Subramanian, Langmuir 28 (48), 16711-16723, 2012
`“Resistance Switching Characteristics of Solid Electrolyte Chalcogenide Ag2Se Nanoparticles for Flexible Nonvolatile
`Memory Applications”, J. Jang, F. Pan, K. Braam, and V. Subramanian, Advanced Materials, 24, pp. 3573-3576, 2012
`“High-Performance Printed Transistors Realized Using Femtoliter Gravure-Printed Sub-(cid:20)(cid:19) (cid:541)(cid:80) (cid:48)(cid:72)(cid:87)(cid:68)(cid:79)(cid:79)(cid:76)(cid:70) (cid:49)(cid:68)(cid:81)(cid:82)(cid:83)(cid:68)(cid:85)(cid:87)(cid:76)(cid:70)(cid:79)(cid:72)
`Patterns and Highly Uniform Polymer Dielectric and Semiconductor Layers”, H. Kang, R. Kitsomboonloha, J. Jang, and
`V. Subramanian, Advanced Materials, 24, pp. 3065–3069, 2012
`“All Printed Edge-Triggered Register Using Single Walled Carbon Nanotube-Based Thin Film Transistor” J. Noh, M.
`Jung, K. Jung, G. Lee, S. Lim, D. Kim, V. Subramanian, G. Cho, Journal of Nanoscience and Nanotechnology, 12, pp. pp.
`4261-4264, 2012
`“Effect of sintering conditions on mixed ionic-electronic conducting properties of silver sulfide nanoparticles”. Shong Yin,
`Kazuya Terabe, Michael F. Toney, and Vivek Subramanian, J. Appl. Phys. 111, 053530 (2012)
`“Characterization and optimization of a printed, primary silver-zinc battery”, Kyle Braam, Steven K. Volkman, Vivek
`Subramanian, Journal of Power Sources, vol. 199, pp. 367-372, 2012.
`“Mechanistic Studies on Sintering of Silver Nanoparticles”, Steven K. Volkman, Shong Yin, Teymur Bakhishev, Kanan
`Puntambekar, Vivek Subramanian, Michael F. Toney, Chemistry of Materials, vol. 23, pp 4634–4640, 2011.
`“Fully Gravure-Printed D Flip-Flop on Plastic Foils Using Single-Walled Carbon-Nanotube-Based TFTs”, J. Noh, M.
`Jung, K. Jung, G. Lee, J. Kim, S. Lim, D. Kim, Y. Choi, Y. Kim, V. Subramanian, G. Cho, Electron Device Letters, IEEE
`, vol.32, pp.638-640, 2011
`10. “Measurement, analysis, and modeling of 1/f noise in pentacene thin film transistors”, H. Kang, L. Jagannathan, V.
`Subramanian, Applied Physics Letters, vol., 99, pp 062106-062108, 2011.
`11. “A Detailed Study of the Forming Stage of an Electrochemical Resistive Switching Memory by KMC Simulation”, F. Pan,
`S. Yin, V. Subramanian, IEEE Electron Device Letters, IEEE , vol.32, pp.949-951, 2011
`
`9.
`
`2.
`
`3.
`
`4.
`
`5.
`
`6.
`
`7.
`
`8.
`
`Page 8 of 16
`
`
`
`18.
`
`16.
`
`12. “High-speed organic transistors fabricated using a novel hybrid-printing technique”, H-Y. Tseng, B. Purushothaman, J.
`Anthony, V. Subramanian, Organic Electronics, Vol. 12, pp. 1120-1125, 2011.
`13. “AM Radio Circuit Using Printed Electronic Components”, J. Noh, J. Kim, N. Lim, J. Kim, V. Subramanian, G. Cho,
`Journal of Nanoscience and Nanotechnology, Volume 11, pp. 4384-4388, 2011
`14. “All Inkjet-Printed, Fully Self-Aligned Circuits for Low-Cost Applications”, H-Y. Tseng and V. Subramanian, Organic
`Electronics, Vol. 12, pp. 249-256, 2011
`15. “Modeling of printed single walled carbon nanotube thin film transistors for attaining optimized clock signals”, Jinsoo
`Noh, Minhun Jung, Kyunghwan Jung, Soyeon Lim, Gwangyong Lee, Vivek Subramanian, Ashley D. Leonard, James
`Tour, and Gyoujin Cho, J. Appl. Phys. 108, pp. 102811, 2010
` “Fully gravure and ink-jet printed high speed pBTTT organic thin film transistors”, Alejandro de la Fuente Vornbrock,
`Donovan Sung, Hongki Kang, Rungrot Kitsomboonloha, Vivek Subramanian, Organic Electronics, 11, pp. 2037-2044,
`2010
`17. “Scalability of Roll-to-Roll Gravure-Printed Electrodes on Plastic Foils”, Jinsoo Noh, Dongsun Yeom, Chaemin Lim,
`Hwajin Cha, Jukyung Han, Junseok Kim, Yongsu Park, Vivek Subramanian, Gyoujin Cho, IEEE Transactions on
`Electronics Packaging Manufacturing, vol. 33, pp. 275 – 283, 2010
` “Methodology for inkjet printing partially wetting films”, D. Soltman, B. Smith, H. Kang, S. Morris, and V. Subramanian,
`Langmuir, 26, pp. 15686-15693, 2010
`19. “Hydrostatic optimization of inkjet-printed films”, H. Kang, D. Soltman, and V. Subramanian, Langmuir, 26, pp 11568–
`11573,