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Electrical & Systems Engineering

Wang Research Group

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Media Coverage

  • “Is a stretchable smart tablet in our future?“, MSU Today, Feb 2017
    This news article also appeared at EurekAlert!, Science Daily, Science Bulletin, Science Blog, Nanowerk, Newswise, TechXplore, Solid State Technology, Lab manager, Global SMT & Packaging, etc.
  • “Printed ICs that can flex and stretch“, EE Times Europe, Feb 2017
  • “Stretchable material could boost electronic devices“, R&D Magazine, Feb 2017
  • “Stretch OLED technology could pave way for new smart fabrics, wearables, even tablets“, PC World, Feb 2017
  • “Stretchable smart tablet could be a reality in future“, International Business Times, Feb 2017
  • “Researchers hope new technology could one day be used in stretchable smart tablets“, CBC News, Feb 2017
  • “Get ready for the ‘stretchphone’: Radical new circuits could lead to shape changing screens and smart clothes and wallpaper“, Daily Mail (UK), Feb 2017
  • “Manufacture stretchable smart tablets on the cheap“, Electronics 360, Feb 2017
  • “Inkjet-printable stretchy circuits could lead to huge e-wallpaper screens“, New Atlas, Feb 2017
  • “How inkjet printers could lead to stretchy electronics“, Futurity, Feb 2017
  • “Stretchable smart tablets getting closer to reality“, Ferret.com (Australia), Feb 2017
  • “An ultra-thin stretchable tablet may soon be a future reality“, News World India, Feb 2017
  • “喷墨打印柔性电路板或可用于制造大型墙纸屏幕“, cnBeta, Feb 2017
  • “现实版的《预言家日报》|神奇的智能织物“, 搜狐科技, Feb 2017
  • “折叠屏幕还远吗?研究人员研发出可拉伸电路板“, 环球网, Feb 2017
  • “超低成本制造柔性电路:如同喷墨打印机印刷报纸“, 传送门, Feb 2017
  • “Flexible Device Captures Energy from Human Motion“, MSU Today, Dec 2016
  • “Swipe to charge! Radical ‘nanogenerator’ could charge your phone from the movement of a finger“, Daily Mail, Dec 2016
  • “New nanogenerator may lead to human-powered smartphones“, The Christian Science Monitor, Dec 2016
  • “Pioneering nanotechnology developed to capture energy from people“, Tech Times, Dec 2016
  • “Thin and flexible energy harvesting could be cheap“, EE Time Europe, Dec 2016
  • “Swiping could power future devices“, VOA News, Dec 2016
  • “Flexible device captures energy from human motion“, Phys.org, Dec 2016
  • “Pioneering nanotechnology captures energy from people“, Science Daily, Dec 2016
  • “滑动屏幕就能给手机充电,这项黑科技要火“, 搜狐科技, Dec 2016
  • “最新黑科技:手指划划就能给手机充电“, 新华网, Dec 2016
  • “Research Brief: Engineers create light-activated ‘curtains’“, UC Berkeley News, Jan 2014
  • “Engineers create light-activated ‘curtains’“, ScienceDaily, Jan 2014
  • “Engineers create light-activated ‘curtains’“, Phys.org, Jan 2014
  • “CNT active matrix makes flexible imager“, nanotechweb.org, Nov 2013
  • “Flexible electronics: Sophisticated skin“, Nature Materials, Sep 2013
  • “A Printing Process to Make Wall-Sized Displays“, Technology Review, Aug 2013
  • “Printing High-Performance Circuits With Carbon Nanotubes“, C&EN, Aug 2013
  • “Researchers Publish Cookbook for Carbon Nanotubes“, IEEE Spectrum, Aug 2013
  • “Electronic Skin Lights Up When Touched“, IEEE Spectrum, Aug 2013
  • “Paper-thin e-skin responds to touch, holds promise for sensory robotics and interactive environments“, UC Berkeley News, July 2013
  • “Berkeley researchers develop flexible touch screen“, The Daily Californian, July 2013
  • “Skin that glows on touch“, Nature, July 2013
  • “ScienceShot: The Ultimate Flat Screen TV“, Science, July 2013
  • “Electronic “Skin” Emits Light When Pressed“, Technology Review, July 2013
  • “Sensory, Light-Up Skin and the Dawn of Touchy-Feely Robots“, TIME, July 2013
  • “Electronic ‘Skin’ Responds to Your Fingertips“, abc News, July 2013
  • “Touch your robot, and its new skin will light up“, CNET, July 2013
  • “Robotic Skin Lights Up When Touched“, Wired, July 2013
  • “Robot Skin Lights Up In Response To Pressure, Could Cover Prosthetic Limbs, Make Smart Wallpaper“, International Business Times, July 2013
  • “This Wonder System Turns Any Surface Into A Touchscreen“, Fast Company, July 2013
  • “E-skin lights up when touched“, nanotechweb.org, July 2013
  • “Electronics First: A Sensor-LED That Flexes“, Discovery News, July 2013
  • “Helping Robots Become More Touchy-Feely, Literally: Paper-Thin E-Skin Responds to Touch by Lighting Up“, ScienceDaily, July 2013
  • “Paper-thin e-skin responds to touch by lighting up“, Phys.org, July 2013
  • “Paper-thin e-skin holds promise for robotics“, Nanowerk, July 2013
  • “E-Skin Imbues Robots With Sense Of Touch, And May Wallpaper The World With Touch-Screen Capability“, Medical Daily, July 2013
  • “E-Skin Lights Up at a Touch“, photonics.com, July 2013
  • “Bendy E-Skin To Make Robots ‘Touchy Feely’“, Futurity.org, July 2013
  • “USC scientists unlock the potential of carbon nanotubes“, USC News, Nov 2012
  • “Cloning Could Make Structurally Pure Nanotubes for Nanoelectronics“, NIST News, Nov 2012
  • “Scientists ‘Clone’ Carbon Nanotubes to Unlock Their Potential for Use in Electronics“, ScienceDaily, Nov 2012
  • “‘Cloning’ Could Make Structurally Pure Nanotubes for Nanoelectronics“, ScienceDaily, Nov 2012
  • “Researchers demonstrate technique for growing virtually pure samples of single-wall carbon nanotubes“, Nanowerk, Nov 2012
  • “Scientists ‘clone’ carbon nanotubes to unlock their potential“, Phys.org, Nov 2012
  • “Carbon nanotubes ‘cloned’ by USC researchers” EE Times, Nov 2012
  • “USC scientists ‘clone’ carbon nanotubes to unlock their potential for use in electronics“, EurekAlert, Nov 2012
  • “‘Seeds’ grow carbon nanotube clones“, Futurity.org, Nov 2012
  • “‘Cloned’ Carbon Nanotubes Could Outclass Silicon In Electronics“, Silicon Semiconductor, Nov 2012
  • “Study Finds ‘Cloning’ Could Make Structurally Pure Nanotubes for Nanoelectronics“, Scicasts, Nov 2012
  • “‘Cloning’ could make structurally pure nanotubes for nanoelectronics“, American Ceramic Society, Nov 2012
  • “‘Cloning’ could make structurally pure nanotubes for nanoelectronics“, Solid State Technology, Nov 2012
  • “III-V semiconductors grow on silicon“, nanotechweb.org, Jul 2012
  • “Semiconducting CNT networks make bendy circuits“, nanotechweb.org, Mar 2012
  • “Fully Printed Carbon Nanotube Transistor Circuits for Displays“, ScienceDaily, Dec 2011
  • “Printed CNT transistor circuits may lead to cheaper OLED displays“, Phys.org, Dec 2011
  • “Ink-jet printed circuits for OLED displays“, Printed Electronics World, Dec 2011
  • “First inkjet-printed carbon nanotube circuit“, ZD Net, Dec 2011
  • “UCLA shows low-cost printing process for OLED backplane transistors“, EE Times, Dec 2011
  • “UCLA researchers demonstrate fully printed carbon nanotube transistor circuits for displays“, UCLA Newsroom, Nov 2011
  • “Chemical sensing: Bomb detector sewn up“, Nature, Apr 2010
  • “Practical Nanotube Electronics“, Technology Review, Nov 2009
  • “Producing Nanotube Transistor Arrays Made Easy“, Softpedia, Nov 2009
  • “CMOS: No Longer the Only Electronics Game In Town“, USC Press Release, Mar 2009
  • “How Do You Build A Synthetic Brain“, ScienceDaily, Feb 2009

Chuan Wang, Ph.D.

Electrical & Systems Engineering, Washington University

1 Brookings Drive, Campus Box 1042

Saint Louis, MO 63130

Tel: (314) 935-2598, Email: chuanwang AT wustl DOT edu

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