that it is even possible to build a glucose fuel cell which can be used in the human blood stream, taking advantage of the significant proton conductivity that can be found in ceria thin films. https://t.co/4Qr47H21t0
@FlugschuleE 5 Leute im selben Flugzeug? Unglaubwürdig! Ansonsten ist langsam kaum noch was unmöglich (jaaa ist es sicher trotzdem .... Blah blah :) ) https://t.co/cViGlObJ5I
@DieDenkmaschine @FlugschuleE Das schlimmste ist ja an sich das dass alles in 2022 gar nicht so unglaublich weit hergeholt ist. Nur das diese quarklutscher nicht in der Lage sind Informationen zu finden macht es halt unglaubwürdig, die haben von nichts ein
RT @ToughSf: One of the biggest obstacles to implanted medical devices is energy. Batteries can leak and external power sources need wires…
This work shows that ceramic electrolytes can be used in potentially implantable #glucose #fuelcells with unprecedented #miniaturization. #innovation https://t.co/tmVIqJsO83
"A Ceramic-Electrolyte Glucose Fuel Cell for Implantable Electronics" https://t.co/4y9CfbP5JE
Statt mit #Batterien, könnten zukünftig medizinische #Implantate direkt Strom aus dem Körper verwenden. Die neu erforschte Mini-#Brennstoffzelle spaltet dafür körpereigene Glucose und erzeugt daraus den benötigen Strom. #Verfahrentechnologie #Biochemie h
인체의 포도당을 전기 에너지로 변환하는 기술은 60년대 부터 있긴 했는데, 소형화 라던가 전지를 인체에 넣는 방법의 문제라던가 등으로 현실화 되지 못했던것이 기술 발전으로 실현 가능성이 보이게 된 모양.... https://t.co/IoljTT5QR9
A Ceramic-Electrolyte Glucose Fuel Cell for Implantable Electronics The findings demonstrate that ceramic-based micro-glucose-fuel-cells constitute the smallest potentially implantable power sources to date. https://t.co/EwGxIu4tBf
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
A Ceramic‐Electrolyte Glucose Fuel Cell for Implantable Electronics https://t.co/Ay73WRc3hX
A Ceramic-Electrolyte Glucose Fuel Cell for Implantable Electronics https://t.co/ldTeVoijhD
Next-generation implantable devices such as sensors, drug-delivery systems, and electroceuticals require efficient, reliable, and highly miniaturized power sources. https://t.co/heyqj13w74 #Science #TechnologyNews #Technology
RT @ToughSf: One of the biggest obstacles to implanted medical devices is energy. Batteries can leak and external power sources need wires…
RT @ToughSf: One of the biggest obstacles to implanted medical devices is energy. Batteries can leak and external power sources need wires…
A Ceramic‐Electrolyte Glucose Fuel Cell for Implantable Electronics. #glucose #fuelcell #electric #electronics @MIT Read more at: https://t.co/Ri5cMKbaqA
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @ToughSf: One of the biggest obstacles to implanted medical devices is energy. Batteries can leak and external power sources need wires…
Praticamente un parassita.
One of the biggest obstacles to implanted medical devices is energy. Batteries can leak and external power sources need wires running through the skin, which become permanent infection risks. Ceramic electrolyte glucose-powered devices are the solution: ht
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
RT @TechXplore_com: Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.…
Ultrathin #fuelcell uses the body's own sugar to generate electricity @MIT @advmater https://t.co/fZXrzoG26e https://t.co/D3XCkfg1vO
RT @AdvSciNews: Implantable biomedical devices such as sensors and drug-delivery systems need small power sources. Here, researchers @MIT…