MEMS Express from MNX

MEMS News <[email protected]> Thu, 16 Aug 2018 22:34:05 -0400 (EDT)
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View Mailing Online [url: http://www.memsnet.org/news/mailings/1479/]


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MEMS technology

Device Built via Laser Lift-Off Could Advance Precision Medicine
Aug 2018 DAEJEON, South Korea, Aug. 15, 2018 — Researchers have fabricated a flexible drug delivery microdevice (f-DDM) with controlled release using a laser micromachining technique. The device could provide controlled release for personalized drug ...Photonics Spectra: 2018-08-15
[url: https://www.bing.com/cr?IG=84588C4731844896AA807020CEF99723&amp;CID=3D8C2AA4D0C46FB63B9C26EAD1CB6E67&amp;rd=1&amp;h=7pR5jlCNlaNklBzyVGF5nmHx31_-St_vl6yq0els5TM&amp;v=1&amp;r=https://www.photonics.com/Articles/Device_Built_via_Laser_Lift-Off_Could_Advance/a63806&amp;p=DevEx.LB.1,5032.1]

Video Friday: Harvard&#39;s Peacock Spider Robot, and More
A soft robotic peacock spider. Researchers have combined three different manufacturing techniques to create a novel origami-inspired soft material microfabrication process that goes beyond what existing approaches can achieve at this small scale.IEEE Spectrum: 2018-08-10
[url: https://www.bing.com/cr?IG=9BD758ADBBD8490C898716F9F7543445&amp;CID=20B6C51FABB5687E2BE0C951AABA69B2&amp;rd=1&amp;h=N-z_d_KFLv848pQGSSWNTNVeC_3fnC_7V8rwpNKj4C4&amp;v=1&amp;r=https://spectrum.ieee.org/automaton/robotics/robotics-hardware/video-friday-harvard-peacock-spider-robot-and-more&amp;p=DevEx.LB.1,5037.1]

Flexible color displays with microfluidics
The schematic principles of device design and fabrication: The proposed microfluidic device made of polydimethylsiloxane (PDMS) polymer, using standard photolithography fabrication techniques to form pixel-patterned microchannels. The pressure inside the ...Phys.org: 2018-08-16
[url: https://www.bing.com/cr?IG=33CA48C10B2D4B7B845256AFE4FC14DD&amp;CID=12D7D2893EC963FB3E45DEC73FC66229&amp;rd=1&amp;h=dMoYHssWfDPo5XD_GyR4x7oJnExuW3_5upkyUlT7_EA&amp;v=1&amp;r=https://phys.org/news/2018-08-flexible-microfluidics.html&amp;p=DevEx.LB.1,5035.1]

Biomimetic micro/nanoscale fiber reinforced composites
Micro/nanostructure of fish scale and biomimetic fabrication and characterization. (a) arapaima giga; (b-d) micro/nanostructure of fish scale, three colored dotted lines represent three periodically arranged fiber layers; (e-f) biomimetic bottom-up ...Phys.org: 2018-08-13
[url: https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=VKMLV6f3EV1SNpGoS9K6jJwcAgSUe7cs7QmdTsD6FaA&amp;v=1&amp;r=https://phys.org/news/2018-08-biomimetic-micronanoscale-fiber-composites.html&amp;p=DevEx.LB.1,5041.1]

Optical MEMS, Nanophotonics, and Their Application
Nanofabrication technology has made significant progress more recently, and it is now possible to further scale MEMS down to nanoelectromechanical systems (NEMS). The fusion of MEMS/NEMS with nanophotonic elements opens up new possibilities and creates ...Optics and Photonics News: 2018-08-16
[url: https://www.bing.com/cr?IG=9534F3FA99E645EB882BD3AC0F75A242&amp;CID=08CDA4875F55640A36FAA8C95E396555&amp;rd=1&amp;h=ms-n5E45Hdxh0onz-cUWIxhHUPt1s6jaNkweAeDT44Q&amp;v=1&amp;r=https://www.osa-opn.org/home/book_reviews/2018/0818/optical_mems_nanophotonics_and_their_application/&amp;p=DevEx.LB.1,5036.1]


MEMS business

The Rise and Fall of Qualcomm Mirasol e-Readers
But rather than moving around dye like an E-Ink screen, IMOD uses tiny moving mirror-like elements, referred to as being a micro-electro-mechanical system, or MEMS (also known as a “micro-machine”). The downside to IMOD has historically been that it ...Good e-Reader: 2018-08-16
[url: https://www.bing.com/cr?IG=F88A20E6292747598868C54CD860AEFA&amp;CID=1490D43D1A6164331DF8D8731B6E6590&amp;rd=1&amp;h=9JLOseSrSmXv8YfhNAFIzXfO3ZtMPsBb08ESRcuD1Vo&amp;v=1&amp;r=https://goodereader.com/blog/electronic-readers/the-rise-and-fall-of-qualcomm-mirasol-e-readers&amp;p=DevEx.LB.1,5044.1]

Allegro MicroSystems sets up R&amp;D centre in Czech Republic
Supplier of high-performance power and sensor semiconductor ICs, Allegro MicroSystems, announces that the company has established a new R&amp;D centre in the Czech Republic. This new centre is currently staffed with two dozen engineers located in Prague.Evertiq Global: 2018-08-15
[url: https://www.bing.com/cr?IG=A199B442DC48463E9DDCDC4B943B775D&amp;CID=305478C5AC6464E92AF3748BAD6B65A3&amp;rd=1&amp;h=HI33rZoGk4vrDePd_Skvm88hYO4-DblHq393UcsVllc&amp;v=1&amp;r=https://evertiq.com/design/44638&amp;p=DevEx.LB.1,5037.1]


Nanotechnology

Schwarzite: Long-Sought Nanoscale Carbon Structure Discovered
The discovery of buckyballs astonished and pleased chemists in the 1980s, nanotubes enthused physicists in the 1990s, and graphene excited materials scientists in the 2000s, but one nanoscale carbon structure - a negatively curved surface known as a ...AZoNano: 2018-08-16
[url: https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=tIFUb1Mwn9gv6X3wBQ7Lfamy-5yfUBEGzu-wDhk52rE&amp;v=1&amp;r=https://www.azonano.com/news.aspx?newsID=36299&amp;p=DevEx.LB.1,5037.1]

Novel nanotechnology sensors could enable smarter textiles
(Nanowerk News) A team of engineers at the University of Delaware is developing next-generation smart textiles by creating flexible carbon nanotube composite coatings on a wide range of fibers, including cotton, nylon and wool. Their discovery is reported ...Nanowerk: 2018-08-16
[url: https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=jCdCT56DTFCFL_1CTDO3bnEQ1WaMig0GQogK9HAJzYk&amp;v=1&amp;r=https://www.nanowerk.com/nanotechnology-news2/newsid=50902.php&amp;p=DevEx.LB.1,5035.1]

Five ways that natural nanotechnology could inspire human design
Though nanotechnology is portrayed as a fairly recent human invention, nature is actually full of nanoscopic architectures. They underpin the essential functions of a variety of life forms, from bacteria to berries, wasps to whales. In fact, tactful use of ...Phys.org: 2018-08-13
[url: https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=Wfl2me_hw2sGQFMSlVxHR5K6rka_5R25Co0KxW8R4sc&amp;v=1&amp;r=https://phys.org/news/2018-08-ways-natural-nanotechnology-human.html&amp;p=DevEx.LB.1,5037.1]





Featured Event

NMDC 2018[1]

MEMS Event Calendar:

NMDC 2018
[url: http://www.ieeenmdc.org/2018]
2018-10-14 - 2018-10-17
Portland, Oregon
IEEE 13th Nanotechnology Materials and Devices Conference

IEEE-SENSORS 2018
[url: http://ieee-sensors2018.org/]
2018-10-28 - 2018-10-31
New Delhi, India

Medical MEMS and Sensors 2018
[url: http://www.medicalmemsconference.com/index.html]
2018-11-07 - 2018-11-08
Santa Clara, CA

PowerMEMS 2018
[url: http://powermems2018.org/]
2018-12-04 - 2018-12-07
Daytona Beach, FL


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<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px;            display:block; background-color:#C4CBDA; padding:5px">MEMS technology</h1>

<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=84588C4731844896AA807020CEF99723&amp;CID=3D8C2AA4D0C46FB63B9C26EAD1CB6E67&amp;rd=1&amp;h=7pR5jlCNlaNklBzyVGF5nmHx31_-St_vl6yq0els5TM&amp;v=1&amp;r=https://www.photonics.com/Articles/Device_Built_via_Laser_Lift-Off_Could_Advance/a63806&amp;p=DevEx.LB.1,5032.1" target="_new"><img src="https://www.bing.com/th?id=ON.F1BF917982B7E481E7928F5647A5D608&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=84588C4731844896AA807020CEF99723&amp;CID=3D8C2AA4D0C46FB63B9C26EAD1CB6E67&amp;rd=1&amp;h=7pR5jlCNlaNklBzyVGF5nmHx31_-St_vl6yq0els5TM&amp;v=1&amp;r=https://www.photonics.com/Articles/Device_Built_via_Laser_Lift-Off_Could_Advance/a6380
 6&amp;p=DevEx.LB.1,5032.1" target="_new" title="https://www.bing.com/cr?IG=84588C4731844896AA807020CEF99723&amp;CID=3D8C2AA4D0C46FB63B9C26EAD1CB6E67&amp;rd=1&amp;h=7pR5jlCNlaNklBzyVGF5nmHx31
 _-St_vl6yq0els5TM&amp;v=1&amp;r=https://www.photonics.com/Articles/Device_Built_via_Laser_Lift-Off_Could_Advance/a63806&amp;p=DevEx.LB.1,5032.1">Device Built via Laser Lift-Off Could Advance Precision Medicine</a>
</dt>
<dd style="margin-bottom:0.5ex">Aug 2018 DAEJEON, South Korea, Aug. 15, 2018 — Researchers have fabricated a flexible drug delivery microdevice (f-DDM) with controlled release using a laser micromachining technique. The device could provide controlled release for personalized drug ...<br /><div style="font-style:italic; font-size:smaller">Photonics Spectra: 2018-08-15 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=9BD758ADBBD8490C898716F9F7543445&amp;CID=20B6C51FABB5687E2BE0C951AABA69B2&amp;rd=1&amp;h=N-z_d_KFLv848pQGSSWNTNVeC_3fnC_7V8rwpNKj4C4&amp;v=1&amp;r=https://spectrum.ieee.org/automaton/robotics/robotics-hardware/video-friday-harvard-peacock-spider-robot-and-more&amp;p=DevEx.LB.1,5037.1" target="_new"><img src="https://www.bing.com/th?id=ON.C4E852DC0D6F0FD892B02E6DADC19D97&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=9BD758ADBBD8490C898716F9F7543445&amp;CID=20B6C51FABB5687E2BE0C951AABA69B2&amp;rd=1&amp;h=N-z_d_KFLv848pQGSSWNTNVeC_3fnC_7V8rwpNKj4C4&amp;v=1&amp;r=https://spectrum.ieee.org/automaton/robotics/robotics-hardwa
 re/video-friday-harvard-peacock-spider-robot-and-more&amp;p=DevEx.LB.1,5037.1" target="_new" title="https://www.bing.com/cr?IG=9BD758ADBBD8490C898716F9F7543445&amp;CID=20B6C51FABB5687E2BE0C9
 51AABA69B2&amp;rd=1&amp;h=N-z_d_KFLv848pQGSSWNTNVeC_3fnC_7V8rwpNKj4C4&amp;v=1&amp;r=https://spectrum.ieee.org/automaton/robotics/robotics-hardware/video-friday-harvard-peacock-spider-robot-and-more&amp;p=DevEx.LB.1,5037.1">Video Friday: Harvard's Peacock Spider Robot, and More</a>
</dt>
<dd style="margin-bottom:0.5ex">A soft robotic peacock spider. Researchers have combined three different manufacturing techniques to create a novel origami-inspired soft material microfabrication process that goes beyond what existing approaches can achieve at this small scale.<br /><div style="font-style:italic; font-size:smaller">IEEE Spectrum: 2018-08-10 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=33CA48C10B2D4B7B845256AFE4FC14DD&amp;CID=12D7D2893EC963FB3E45DEC73FC66229&amp;rd=1&amp;h=dMoYHssWfDPo5XD_GyR4x7oJnExuW3_5upkyUlT7_EA&amp;v=1&amp;r=https://phys.org/news/2018-08-flexible-microfluidics.html&amp;p=DevEx.LB.1,5035.1" target="_new"><img src="https://www.bing.com/th?id=ON.F2EDD63327F0C23D3A0581429A24BB57&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=33CA48C10B2D4B7B845256AFE4FC14DD&amp;CID=12D7D2893EC963FB3E45DEC73FC66229&amp;rd=1&amp;h=dMoYHssWfDPo5XD_GyR4x7oJnExuW3_5upkyUlT7_EA&amp;v=1&amp;r=https://phys.org/news/2018-08-flexible-microfluidics.html&amp;p=DevEx.LB.1,5035.1" target="_new" title="https://www.
 bing.com/cr?IG=33CA48C10B2D4B7B845256AFE4FC14DD&amp;CID=12D7D2893EC963FB3E45DEC73FC66229&amp;rd=1&amp;h=dMoYHssWfDPo5XD_GyR4x7oJnExuW3_5upkyUlT7_EA&amp;v=1&amp;r=https://phys.org/news/2018-0
 8-flexible-microfluidics.html&amp;p=DevEx.LB.1,5035.1">Flexible color displays with microfluidics</a>
</dt>
<dd style="margin-bottom:0.5ex">The schematic principles of device design and fabrication: The proposed microfluidic device made of polydimethylsiloxane (PDMS) polymer, using standard photolithography fabrication techniques to form pixel-patterned microchannels. The pressure inside the ...<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-08-16 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=VKMLV6f3EV1SNpGoS9K6jJwcAgSUe7cs7QmdTsD6FaA&amp;v=1&amp;r=https://phys.org/news/2018-08-biomimetic-micronanoscale-fiber-composites.html&amp;p=DevEx.LB.1,5041.1" target="_new"><img src="https://www.bing.com/th?id=ON.A7E5A270B1F05660F34015546B356686&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=VKMLV6f3EV1SNpGoS9K6jJwcAgSUe7cs7QmdTsD6FaA&amp;v=1&amp;r=https://phys.org/news/2018-08-biomimetic-micronanoscale-fiber-composites.html&amp;p=DevEx.LB.1,5
 041.1" target="_new" title="https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=VKMLV6f3EV1SNpGoS9K6jJwcAgSUe7cs7QmdTsD6FaA&am
 p;v=1&amp;r=https://phys.org/news/2018-08-biomimetic-micronanoscale-fiber-composites.html&amp;p=DevEx.LB.1,5041.1">Biomimetic micro/nanoscale fiber reinforced composites</a>
</dt>
<dd style="margin-bottom:0.5ex">Micro/nanostructure of fish scale and biomimetic fabrication and characterization. (a) arapaima giga; (b-d) micro/nanostructure of fish scale, three colored dotted lines represent three periodically arranged fiber layers; (e-f) biomimetic bottom-up ...<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-08-13 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=9534F3FA99E645EB882BD3AC0F75A242&amp;CID=08CDA4875F55640A36FAA8C95E396555&amp;rd=1&amp;h=ms-n5E45Hdxh0onz-cUWIxhHUPt1s6jaNkweAeDT44Q&amp;v=1&amp;r=https://www.osa-opn.org/home/book_reviews/2018/0818/optical_mems_nanophotonics_and_their_application/&amp;p=DevEx.LB.1,5036.1" target="_new"><img src="https://www.bing.com/th?id=ON.39F164FC3C50C31C8A9776193665BE0F&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=9534F3FA99E645EB882BD3AC0F75A242&amp;CID=08CDA4875F55640A36FAA8C95E396555&amp;rd=1&amp;h=ms-n5E45Hdxh0onz-cUWIxhHUPt1s6jaNkweAeDT44Q&amp;v=1&amp;r=https://www.osa-opn.org/home/book_reviews/2018/0818/optical_mems_nanopho
 tonics_and_their_application/&amp;p=DevEx.LB.1,5036.1" target="_new" title="https://www.bing.com/cr?IG=9534F3FA99E645EB882BD3AC0F75A242&amp;CID=08CDA4875F55640A36FAA8C95E396555&amp;rd=1&amp;
 h=ms-n5E45Hdxh0onz-cUWIxhHUPt1s6jaNkweAeDT44Q&amp;v=1&amp;r=https://www.osa-opn.org/home/book_reviews/2018/0818/optical_mems_nanophotonics_and_their_application/&amp;p=DevEx.LB.1,5036.1">Optical MEMS, Nanophotonics, and Their Application</a>
</dt>
<dd style="margin-bottom:0.5ex">Nanofabrication technology has made significant progress more recently, and it is now possible to further scale MEMS down to nanoelectromechanical systems (NEMS). The fusion of MEMS/NEMS with nanophotonic elements opens up new possibilities and creates ...<br /><div style="font-style:italic; font-size:smaller">Optics and Photonics News: 2018-08-16 - MEMS technology</div>
</dd>
<div style="clear:right"></div>

</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px;            display:block; background-color:#C4CBDA; padding:5px">MEMS business</h1>

<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=F88A20E6292747598868C54CD860AEFA&amp;CID=1490D43D1A6164331DF8D8731B6E6590&amp;rd=1&amp;h=9JLOseSrSmXv8YfhNAFIzXfO3ZtMPsBb08ESRcuD1Vo&amp;v=1&amp;r=https://goodereader.com/blog/electronic-readers/the-rise-and-fall-of-qualcomm-mirasol-e-readers&amp;p=DevEx.LB.1,5044.1" target="_new"><img src="https://www.bing.com/th?id=ON.46B469F39E9800175C66881721201166&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=F88A20E6292747598868C54CD860AEFA&amp;CID=1490D43D1A6164331DF8D8731B6E6590&amp;rd=1&amp;h=9JLOseSrSmXv8YfhNAFIzXfO3ZtMPsBb08ESRcuD1Vo&amp;v=1&amp;r=https://goodereader.com/blog/electronic-readers/the-rise-and-fall-of-qualcomm-
 mirasol-e-readers&amp;p=DevEx.LB.1,5044.1" target="_new" title="https://www.bing.com/cr?IG=F88A20E6292747598868C54CD860AEFA&amp;CID=1490D43D1A6164331DF8D8731B6E6590&amp;rd=1&amp;h=9JLOseSrSm
 Xv8YfhNAFIzXfO3ZtMPsBb08ESRcuD1Vo&amp;v=1&amp;r=https://goodereader.com/blog/electronic-readers/the-rise-and-fall-of-qualcomm-mirasol-e-readers&amp;p=DevEx.LB.1,5044.1">The Rise and Fall of Qualcomm Mirasol e-Readers</a>
</dt>
<dd style="margin-bottom:0.5ex">But rather than moving around dye like an E-Ink screen, IMOD uses tiny moving mirror-like elements, referred to as being a micro-electro-mechanical system, or MEMS (also known as a “micro-machine”). The downside to IMOD has historically been that it ...<br /><div style="font-style:italic; font-size:smaller">Good e-Reader: 2018-08-16 - MEMS business</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=A199B442DC48463E9DDCDC4B943B775D&amp;CID=305478C5AC6464E92AF3748BAD6B65A3&amp;rd=1&amp;h=HI33rZoGk4vrDePd_Skvm88hYO4-DblHq393UcsVllc&amp;v=1&amp;r=https://evertiq.com/design/44638&amp;p=DevEx.LB.1,5037.1" target="_new"><img src="https://www.bing.com/th?id=ON.8943BDC26B28B1A0FAF893A3AE82D85E&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=A199B442DC48463E9DDCDC4B943B775D&amp;CID=305478C5AC6464E92AF3748BAD6B65A3&amp;rd=1&amp;h=HI33rZoGk4vrDePd_Skvm88hYO4-DblHq393UcsVllc&amp;v=1&amp;r=https://evertiq.com/design/44638&amp;p=DevEx.LB.1,5037.1" target="_new" title="https://www.bing.com/cr?IG=A199B442DC48463E9DDCDC4B943B775D&am
 p;CID=305478C5AC6464E92AF3748BAD6B65A3&amp;rd=1&amp;h=HI33rZoGk4vrDePd_Skvm88hYO4-DblHq393UcsVllc&amp;v=1&amp;r=https://evertiq.com/design/44638&amp;p=DevEx.LB.1,5037.1">Allegro MicroSystems
  sets up R&D centre in Czech Republic</a>
</dt>
<dd style="margin-bottom:0.5ex">Supplier of high-performance power and sensor semiconductor ICs, Allegro MicroSystems, announces that the company has established a new R&D centre in the Czech Republic. This new centre is currently staffed with two dozen engineers located in Prague.<br /><div style="font-style:italic; font-size:smaller">Evertiq Global: 2018-08-15 - MEMS business</div>
</dd>
<div style="clear:right"></div>

</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px;            display:block; background-color:#C4CBDA; padding:5px">Nanotechnology</h1>

<dl style="width:600px">
<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=tIFUb1Mwn9gv6X3wBQ7Lfamy-5yfUBEGzu-wDhk52rE&amp;v=1&amp;r=https://www.azonano.com/news.aspx?newsID=36299&amp;p=DevEx.LB.1,5037.1" target="_new"><img src="https://www.bing.com/th?id=ON.F34D227D88B21AA11D924CEDD5DE91AE&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=59B0C5B7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=tIFUb1Mwn9gv6X3wBQ7Lfamy-5yfUBEGzu-wDhk52rE&amp;v=1&amp;r=https://www.azonano.com/news.aspx?newsID=36299&amp;p=DevEx.LB.1,5037.1" target="_new" title="https://www.bing.com/cr?IG=59B0C5B
 7F6764CE0B83DB616FE06E65F&amp;CID=0453100D274F68EA04EE1C432623692B&amp;rd=1&amp;h=tIFUb1Mwn9gv6X3wBQ7Lfamy-5yfUBEGzu-wDhk52rE&amp;v=1&amp;r=https://www.azonano.com/news.aspx?newsID=36299&amp
 ;p=DevEx.LB.1,5037.1">Schwarzite: Long-Sought Nanoscale Carbon Structure Discovered</a>
</dt>
<dd style="margin-bottom:0.5ex">The discovery of buckyballs astonished and pleased chemists in the 1980s, nanotubes enthused physicists in the 1990s, and graphene excited materials scientists in the 2000s, but one nanoscale carbon structure - a negatively curved surface known as a ...<br /><div style="font-style:italic; font-size:smaller">AZoNano: 2018-08-16 - Nanotechnology</div>
</dd>
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<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=jCdCT56DTFCFL_1CTDO3bnEQ1WaMig0GQogK9HAJzYk&amp;v=1&amp;r=https://www.nanowerk.com/nanotechnology-news2/newsid=50902.php&amp;p=DevEx.LB.1,5035.1" target="_new"><img src="https://www.bing.com/th?id=ON.D05ED49E07BC731114627F8B1669E46B&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=jCdCT56DTFCFL_1CTDO3bnEQ1WaMig0GQogK9HAJzYk&amp;v=1&amp;r=https://www.nanowerk.com/nanotechnology-news2/newsid=50902.php&amp;p=DevEx.LB.1,5035.1" target="_new" title="ht
 tps://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=jCdCT56DTFCFL_1CTDO3bnEQ1WaMig0GQogK9HAJzYk&amp;v=1&amp;r=https://www.nanowe
 rk.com/nanotechnology-news2/newsid=50902.php&amp;p=DevEx.LB.1,5035.1">Novel nanotechnology sensors could enable smarter textiles</a>
</dt>
<dd style="margin-bottom:0.5ex">(Nanowerk News) A team of engineers at the University of Delaware is developing next-generation smart textiles by creating flexible carbon nanotube composite coatings on a wide range of fibers, including cotton, nylon and wool. Their discovery is reported ...<br /><div style="font-style:italic; font-size:smaller">Nanowerk: 2018-08-16 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>

<dt style="font-weight:bold; margin-top: 0.5ex"><span style="margin:1px; float:right"><a href="https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=Wfl2me_hw2sGQFMSlVxHR5K6rka_5R25Co0KxW8R4sc&amp;v=1&amp;r=https://phys.org/news/2018-08-ways-natural-nanotechnology-human.html&amp;p=DevEx.LB.1,5037.1" target="_new"><img src="https://www.bing.com/th?id=ON.376BAD81814D8AEFABD07B5B0ECC3FAC&amp;pid=News" style="border:none" alt="thumbnail"/></a></span><a href="https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=Wfl2me_hw2sGQFMSlVxHR5K6rka_5R25Co0KxW8R4sc&amp;v=1&amp;r=https://phys.org/news/2018-08-ways-natural-nanotechnology-human.html&amp;p=DevEx.LB.1,5037.1" target="_ne
 w" title="https://www.bing.com/cr?IG=B96D03D025754AD7820283A5354FAC56&amp;CID=0DCDF8324CC26ABC3EEBF47C4DCD6B40&amp;rd=1&amp;h=Wfl2me_hw2sGQFMSlVxHR5K6rka_5R25Co0KxW8R4sc&amp;v=1&amp;r=https:
 //phys.org/news/2018-08-ways-natural-nanotechnology-human.html&amp;p=DevEx.LB.1,5037.1">Five ways that natural nanotechnology could inspire human design</a>
</dt>
<dd style="margin-bottom:0.5ex">Though nanotechnology is portrayed as a fairly recent human invention, nature is actually full of nanoscopic architectures. They underpin the essential functions of a variety of life forms, from bacteria to berries, wasps to whales. In fact, tactful use of ...<br /><div style="font-style:italic; font-size:smaller">Phys.org: 2018-08-13 - Nanotechnology</div>
</dd>
<div style="clear:right"></div>

</dl>
<h1 style="font-size:20px; font-weight:normal; color:#003366; width:590px;            display:block; background-color:#C4CBDA; padding:5px">Featured Event</h1>
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<dt><b><a href="http://www.ieeenmdc.org/2018">NMDC 2018</a></b></dt>
<dd>2018-10-14 - 2018-10-17<br />Portland, Oregon<br />IEEE 13th Nanotechnology Materials and Devices Conference<br />
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<dt><b><a href="http://powermems2018.org/">PowerMEMS 2018</a></b></dt>
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</dd></dl>
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