{"id":2443,"date":"2013-09-27T09:45:52","date_gmt":"2013-09-27T07:45:52","guid":{"rendered":"https:\/\/sites.uclouvain.be\/ieee\/newsite\/?p=2443"},"modified":"2018-03-12T09:43:02","modified_gmt":"2018-03-12T08:43:02","slug":"lecture-dr-meyya-meyyappan-chief-scientist-at-nasa-nanomaterials-and-their-applications-in-electronics-and-sensor-development","status":"publish","type":"post","link":"https:\/\/sites.uclouvain.be\/ieee\/2013\/09\/27\/lecture-dr-meyya-meyyappan-chief-scientist-at-nasa-nanomaterials-and-their-applications-in-electronics-and-sensor-development\/","title":{"rendered":"Lecture: Dr. Meyya Meyyappan (chief scientist at NASA), &#8220;Nanomaterials and their Applications in Electronics and Sensor Development&#8221;"},"content":{"rendered":"<p>Meyya Meyyappan, Dr., IEEE Distinguished Lecturer, NASA Ames Research Center, Center for Nanotechnology, California.<\/p>\n<p><strong>Nanomaterials and their Applications in Electronics and Sensor Development<\/strong><\/p>\n<p><!--more--><\/p>\n<p>Nanomaterials such as nanowires, graphene, carbon nanotubes and others have been receiving much attention for a wide variety of applications including electronics, optoelectronics, sensors etc.\u00a0 Efforts worldwide in this direction include considerations of beyond-Moore or More-than-Moore developments. This talk will provide an overview of\u00a0 these efforts with specific examples from our work on memory, flexible electronics, nanoscale vacuum electronics and sensor devices for\u00a0 integration. We have been using carbon nanotubes and a variety of silicon and other nanowires for constructing chemical and biosensors. A conventional silicon nanowire top-down approach to construct BioFETs on a 8 &#8221; wafer readily allows exploiting silicon technology for lab-on-a-chip applications. Similarly, nanochem sensors have already been integrated into smart phones. Besides these silicon substrate based technologies, we have also been exploring flexible\u00a0 substrates such as fabric and paper for many of these applications.\u00a0 Finally, vacuum is superior to any semiconductor\u00a0 for carrier transport\u00a0 but vacuum electronics lost the race to silicon due the latter&#8217;s ease of manufacturing.\u00a0 We have developed nanoscale vacuum channel transistors using silicon technology that provide THz performance and can be integrated with MOSFET on the same chip. The author acknowledges contributions from Jinwoo Han, Jeong-Soo Lee, Jing Li, Y. Lu, Jessica Koehne, Mike Oye, and Cattien Nguyen.<\/p>\n<p><strong><em>The conference will be held on the 27th September 2013 at 11:00 in the SUD 02 lecture hall, place Croix-du-Sud, Louvain-la-Neuve.<\/em><\/strong><\/p>\n<p>Drinks and appetizers will be served after the presentation and question-and-answer session.<\/p>\n<p>_______________________________________________________________<\/p>\n<p><strong>Biography<\/strong><\/p>\n<p>Meyya Meyyappan is Chief Scientist for Exploration Technology at NASA Ames Research Center in Moffett Field,\u00a0 CA.\u00a0 Until June 2006, he served as the Director of the Center for Nanotechnology.\u00a0 He is a founding<br \/>\nmember of the Interagency Working Group on Nanotechnology (IWGN) established by the Office of Science and Technology Policy (OSTP).\u00a0 The IWGN is responsible for putting together the National Nanotechnology<br \/>\nInitiative.<\/p>\n<p>Dr. Meyyappan has authored or co-authored over 250 articles in peer- reviewed journals and made over 200 Invited\/Keynote\/Plenary Talks in nanotechnology subjects across the world.\u00a0 His research interests include carbon nanotubes, graphene, and various inorganic nanowires, their growth and characterization, and application development in chemical and biosensors, instrumentation, electronics and optoelectronics.<\/p>\n<p>Dr. Meyyappan is a Fellow of the Institute of Electrical and Electronics\u00a0 Engineers (IEEE), Electrochemical Society (ECS), American Vacuum Society (AVS),\u00a0 Materials Research Society (MRS), Institute of Physics (IOP), American Institute of Chemical Engineers (AIChE) and the California Council of Science and Technology.\u00a0 In addition, he is a member of the American Society of Mechanical Engineers (ASME).\u00a0 He is currently the IEEE Nanotechnology Council (NTC) Distinguished Lecturer on Nanotechnology, IEEE Electron DevicesSociety (EDS) Distinguished Lecturer, and was ASME&#8217;s Distinguished Lecturer on Nanotechnology<br \/>\n(2004-2006).\u00a0 He served as the President of the IEEE&#8217;s Nanotechnology Council in 2006-2007.\u00a0 He currently serves as the Vice President of IEEE-EDS for Educational Activities.<\/p>\n<p>For his contributions and leadership in nanotechnology, he has received\u00a0 numerous awards including: a Presidential Meritorious Award; NASA&#8217;s\u00a0 Outstanding Leadership Medal; Arthur Flemming Award given by the Arthur Flemming Foundation and the George Washington University; IEEE Judith Resnick Award; IEEE-USA Harry Diamond Award; AIChE Nanoscale Science and Engineering Forum Award; Distinguished Engineering Achievement Award by the Engineers&#8217; Council; Pioneer Award in Nanotechnology by the IEEE-NTC.\u00a0 For his sustained contributions to nanotechnology, he was inducted\u00a0 into the Silicon Valley Engineering Council Hall of Fame in February\u00a0 2009.\u00a0 For his educational contributions, he has received:\u00a0 Outstanding<br \/>\nRecognition Award from the NASA Office of Education; the Engineer of the Year Award(2004) by the San Francisco Section of the American Institute of Aeronautics and Astronautics (AIAA); IEEE-EDS Education Award; IEEE-EAB (Educational Activities Board) Meritorious Achievement Award in Continuing Education.<\/p>\n<p>Personal webpage:\u00a0<a href=\"http:\/\/meyya%20meyyappan%2C%20dr.%2C%20ieee%20distinguished%20lecturer%2C%20nasa%20ames%20research%20center%2C%20center%20for%20nanotechnology%2C%20california.%20%20nanomaterials%20and%20their%20applications%20in%20electronics%20and%20sensor%20development%20%20nanomaterials%20such%20as%20nanowires%2C%20graphene%2C%20carbon%20nanotubes%20and%20others%20have%20been%20receiving%20much%20attention%20for%20a%20wide%20variety%20of%20applications%20including%20electronics%2C%20optoelectronics%2C%20sensors%20etc.%20%20efforts%20worldwide%20in%20this%20direction%20include%20considerations%20of%20beyond-moore%20or%20more-than-moore%20developments.%20this%20talk%20will%20provide%20an%20overview%20of%20%20these%20efforts%20with%20specific%20examples%20from%20our%20work%20on%20memory%2C%20flexible%20electronics%2C%20nanoscale%20vacuum%20electronics%20and%20sensor%20devices%20for%20%20integration.%20we%20have%20been%20using%20carbon%20nanotubes%20and%20a%20variety%20of%20silicon%20and%20other%20nanowires%20for%20constructing%20chemical%20and%20biosensors.%20a%20conventional%20silicon%20nanowire%20top-down%20approach%20to%20construct%20biofets%20on%20a%208%20%22%20wafer%20readily%20allows%20exploiting%20silicon%20technology%20for%20lab-on-a-chip%20applications.%20similarly%2C%20nanochem%20sensors%20have%20already%20been%20integrated%20into%20smart%20phones.%20besides%20these%20silicon%20substrate%20based%20technologies%2C%20we%20have%20also%20been%20exploring%20flexible%20%20substrates%20such%20as%20fabric%20and%20paper%20for%20many%20of%20these%20applications.%20%20finally%2C%20vacuum%20is%20superior%20to%20any%20semiconductor%20%20for%20carrier%20transport%20%20but%20vacuum%20electronics%20lost%20the%20race%20to%20silicon%20due%20the%20latter%27s%20ease%20of%20manufacturing.%20%20we%20have%20developed%20nanoscale%20vacuum%20channel%20transistors%20using%20silicon%20technology%20that%20provide%20thz%20performance%20and%20can%20be%20integrated%20with%20mosfet%20on%20the%20same%20chip.%20the%20author%20acknowledges%20contributions%20from%20jinwoo%20han%2C%20jeong-soo%20lee%2C%20jing%20li%2C%20y.%20lu%2C%20jessica%20koehne%2C%20mike%20oye%2C%20and%20cattien%20nguyen.%20%20the%20conference%20will%20be%20held%20on%20the%2027th%20september%202013%20at%2011:00%20in%20the%20SUD%2002%20lecture%20hall,%20place%20Croix-du-Sud,%20Louvain-la-Neuve.%20%20Drinks%20and%20appetizers%20will%20be%20served%20after%20the%20presentation%20and%20question-and-answer%20session.%20%20_______________________________________________________________%20%20%20Meyya%20Meyyappan%20is%20Chief%20Scientist%20for%20Exploration%20Technology%20at%20NASA%20Ames%20Research%20Center%20in%20Moffett%20Field,%20%20CA.%20%20Until%20June%202006,%20he%20served%20as%20the%20Director%20of%20the%20Center%20for%20Nanotechnology.%20%20He%20is%20a%20founding%20member%20of%20the%20Interagency%20Working%20Group%20on%20Nanotechnology%20(IWGN)%20established%20by%20the%20Office%20of%20Science%20and%20Technology%20Policy%20(OSTP).%20%20The%20IWGN%20is%20responsible%20for%20putting%20together%20the%20National%20Nanotechnology%20Initiative.%20%20Dr.%20Meyyappan%20has%20authored%20or%20co-authored%20over%20250%20articles%20in%20peer-%20reviewed%20journals%20and%20made%20over%20200%20Invited\/Keynote\/Plenary%20Talks%20in%20nanotechnology%20subjects%20across%20the%20world.%20%20His%20research%20interests%20include%20carbon%20nanotubes,%20graphene,%20and%20various%20inorganic%20nanowires,%20their%20growth%20and%20characterization,%20and%20application%20development%20in%20chemical%20and%20biosensors,%20instrumentation,%20electronics%20and%20optoelectronics.%20%20Dr.%20Meyyappan%20is%20a%20Fellow%20of%20the%20Institute%20of%20Electrical%20and%20Electronics%20%20Engineers%20(IEEE),%20Electrochemical%20Society%20(ECS),%20American%20Vacuum%20Society%20(AVS),%20%20Materials%20Research%20Society%20(MRS),%20Institute%20of%20Physics%20(IOP),%20American%20Institute%20of%20Chemical%20Engineers%20(AIChE)%20and%20the%20California%20Council%20of%20Science%20and%20Technology.%20%20In%20addition,%20he%20is%20a%20member%20of%20the%20American%20Society%20of%20Mechanical%20Engineers%20(ASME).%20%20He%20is%20currently%20the%20IEEE%20Nanotechnology%20Council%20(NTC)%20Distinguished%20Lecturer%20on%20Nanotechnology,%20IEEE%20Electron%20DevicesSociety%20(EDS)%20Distinguished%20Lecturer,%20and%20was%20ASME's%20Distinguished%20Lecturer%20on%20Nanotechnology%20(2004-2006).%20%20He%20served%20as%20the%20President%20of%20the%20IEEE's%20Nanotechnology%20Council%20in%202006-2007.%20%20He%20currently%20serves%20as%20the%20Vice%20President%20of%20IEEE-EDS%20for%20Educational%20Activities.%20%20For%20his%20contributions%20and%20leadership%20in%20nanotechnology,%20he%20has%20received%20%20numerous%20awards%20including:%20a%20Presidential%20Meritorious%20Award;%20NASA's%20%20Outstanding%20Leadership%20Medal;%20Arthur%20Flemming%20Award%20given%20by%20the%20Arthur%20Flemming%20Foundation%20and%20the%20George%20Washington%20University;%20IEEE%20Judith%20Resnick%20Award;%20IEEE-USA%20Harry%20Diamond%20Award;%20AIChE%20Nanoscale%20Science%20and%20Engineering%20Forum%20Award;%20Distinguished%20Engineering%20Achievement%20Award%20by%20the%20Engineers'%20Council;%20Pioneer%20Award%20in%20Nanotechnology%20by%20the%20IEEE-NTC.%20%20For%20his%20sustained%20contributions%20to%20nanotechnology,%20he%20was%20inducted%20%20into%20the%20Silicon%20Valley%20Engineering%20Council%20Hall%20of%20Fame%20in%20February%20%202009.%20%20For%20his%20educational%20contributions,%20he%20has%20received:%20%20Outstanding%20Recognition%20Award%20from%20the%20NASA%20Office%20of%20Education;%20the%20Engineer%20of%20the%20Year%20Award(2004)%20by%20the%20San%20Francisco%20Section%20of%20the%20American%20Institute%20of%20Aeronautics%20and%20Astronautics%20(AIAA);%20IEEE-EDS%20Education%20Award;%20IEEE-EAB%20(Educational%20Activities%20Board)%20Meritorious%20Achievement%20Award%20in%20Continuing%20Education.%20%20Personal%20webpage:%20http:\/\/www.nasa.gov\/centers\/ames\/research\/2009\/Meyya_Meyyappan.html\">http:\/\/www.nasa.gov\/centers\/ames\/research\/2009\/Meyya_Meyyappan.html<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Meyya Meyyappan, Dr., IEEE Distinguished Lecturer, NASA Ames Research Center, Center for Nanotechnology, California. Nanomaterials and their Applications in Electronics and Sensor Development<\/p>\n","protected":false},"author":13,"featured_media":0,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[1],"tags":[],"class_list":["post-2443","post","type-post","status-publish","format-standard","hentry","category-non-classe"],"_links":{"self":[{"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/posts\/2443","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/users\/13"}],"replies":[{"embeddable":true,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/comments?post=2443"}],"version-history":[{"count":2,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/posts\/2443\/revisions"}],"predecessor-version":[{"id":3443,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/posts\/2443\/revisions\/3443"}],"wp:attachment":[{"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/media?parent=2443"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/categories?post=2443"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/sites.uclouvain.be\/ieee\/wp-json\/wp\/v2\/tags?post=2443"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}