Recent work on @NatureElectron, we report an approach to transferring laser-induced graphene to ultrathin hydrogel interface at extremely low temperature @ZJU_China Special thanks to Prof.@guzhenlab for the invaluable support! https://t.co/utUCMY6NSx
The intelligent sensor can dynamically distinguish high-density pressure stimuli by generating 2700 virtual taxels from only 23 physical taxels with a super-resolution factor of over 115. | Science Advances https://t.co/Vr5Bt16kTb
Laser-induced reductive sintering of Cu from CuO is a cost-effective method to the industry due to continuously rising cost of noble metals
An in-situ hybrid laser-induced integrated sensor system with antioxidative copper
https://t.co/WprSvfdKFV via @IntJExtremManuf
The proposed cryogenic transfer strategy also allows the transfer of LIG onto other types of adhesive or non-adhesive hydrogels, but only the adhesive hydrogel formed a mechanically stable binding interface especially under the tensile strain.
Recent work on @NatureElectron, we report an approach to transferring laser-induced graphene to ultrathin hydrogel interface at extremely low temperature @ZJU_China Special thanks to Prof.@guzhenlab for the invaluable support! https://t.co/utUCMY6NSx
フィードバック機能を有したハイブレッドフレキブルセンサのレビュー論文が公開されました!
Our review paper about flexible hybrid sensor systems with feedback functions has been published online! https://t.co/FCqPixT2gT
Online symposium next Thursday, 17 September, to celebrate the 5th year of publication of Advanced Materials Technologies. Talks by John Rogers and ZL Wang, co-chairs of the Advisory Board. Hope to "see" you there! #materials#technologies#flexibleelectronics#energyharvesting
Advanced Materials #Technologies Best Of 2019 is now available! Topics include soft #robotics, #wearable electronics, #3Dprinting, energy harvesting and storage, #sensors and #actuators, and many more. Articles are free to read until the end of 2020:
https://t.co/JC0QiTxPlZ