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Nanotechnology Now - Press Release: A molecule like a nanobattery: Chemical scientists decipher complex electronic structure of a three-nuclear metallorganic compound with the capacity of donating and receiving multiple electrons


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Home > Press > A molecule like a nanobattery: Chemical scientists decipher complex electronic structure of a three-nuclear metallorganic compound with the capacity of donating and receiving multiple electrons
The fingertip of a wireless voltage detection glove illuminates when the wearer s hand approaches a live cable. Purdue University engineers have developed a method to transform existing cloth items into battery-free wearables resistant to laundry.
CREDIT
(Purdue University photo/Rebecca McElhoe)
Abstract:
Marina Sala de Medeiros, Debkalpa Goswami, Daniela Chanci, Carolina Moreno, and Ramses V. Martinez
The commercial development of smart garments is currently hindered by significant challenges, such as dependence on batteries, reduced washability, and difficult incorporation into existing large-scale textile manufacturing technologies. This work describes an industrially-scalable approach to transform conventional fab ....

United States , Rebecca Mcelhoe , Debkalpa Goswami , Daniela Chanci , Steveng Martin , Purdue University , Us Services , Purdue Research Foundation Office Of Technology Commercialization , Association Of Public , Purdue Research Foundation , Flexible Electronics , Wave Inc , Home Press , Most Innovative University , Ipwatchdog Institute , Nano Energy , Purdue School Of Industrial Engineering , Office Of Technology Commercialization , Convergence Center , Textiles Wirelessly Powered , Omniphobic Silk Based , Sala De Medeiros , Carolina Moreno , West Lafayette , Ramses Martinez , Industrial Engineering ,

Forget wearables: Future washable smart clothes powered by Wi-Fi will monitor your health


Forget wearables: Future washable smart clothes powered by Wi-Fi will monitor your health
Purdue University engineers have developed a method to transform existing cloth items into battery-free wearables resistant to laundry. These smart clothes are powered wirelessly through a flexible, silk-based coil sewn on the textile.
In the near future, all your clothes will become smart. These smart cloths will outperform conventional passive garments, thanks to their miniaturized electronic circuits and sensors, which will allow you to seamlessly communicate with your phone, computer, car and other machines. This smart clothing will not only make you more productive but also check on your health status and even call for help if you suffer an accident. The reason why this smart clothing is not all over your closet yet is that the fabrication of this smart clothing is quite challenging, as clothes need to be periodically washed and electronics despise water. ....

Purdue University , Nano Energy , Office Of Technology Commercialization , Purdue Research Foundation Office Of Technology Commercialization , School Of Industrial Engineering , Ramses Martinez , Industrial Engineering , Weldon School , Biomedical Engineering , Purdue Research Foundation Office , Technology Commercialization , பர்‌ட்யூ பல்கலைக்கழகம் , நானோ ஆற்றல் , அலுவலகம் ஆஃப் தொழில்நுட்பம் வணிகமயமாக்கல் , பர்‌ட்யூ ஆராய்ச்சி அடித்தளம் அலுவலகம் ஆஃப் தொழில்நுட்பம் வணிகமயமாக்கல் , பள்ளி ஆஃப் தொழில்துறை பொறியியல் , ர்யாம்ஸெஸ் மார்டினெஸ் , தொழில்துறை பொறியியல் , வெல்டன் பள்ளி , உயிர் மருத்துவ பொறியியல் , பர்‌ட்யூ ஆராய்ச்சி அடித்தளம் அலுவலகம் , தொழில்நுட்பம் வணிகமயமாக்கல் ,