International audienceAbstract Operation of temperature sensors over extended temperature ranges, and particularly in extreme conditions, poses challenges with both the mechanical integrity of the sensing material and the operational range of the sensor. With an emissive bendable organic crystalline material, here we propose that organic crystals can be used as mechanically robust and compliant fluorescence-based thermal sensors with wide range of temperature coverage and complete retention of mechanical elasticity. The exemplary material described remains elastically bendable and shows highly linear correlation with the emission wavelength and intensity between 77 K to 277 K, while it also transduces its own fluorescence in active waveguid...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
International audienceOrganic crystals that are capable to deform (reversibly or irreversibly) simil...
International audienceApplications in extreme conditions, such as those encountered in space explora...
International audienceReshaping of elongated organic crystals that can be used as semiconductors, wa...
Stimuli-responsive crystals capable of energy conversion have emerged as promising materials for sma...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
Wearable and stretchable physical sensors that can conformally contact on the surface of organs or s...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
International audienceOrganic crystals that are capable to deform (reversibly or irreversibly) simil...
International audienceApplications in extreme conditions, such as those encountered in space explora...
International audienceReshaping of elongated organic crystals that can be used as semiconductors, wa...
Stimuli-responsive crystals capable of energy conversion have emerged as promising materials for sma...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
Wearable and stretchable physical sensors that can conformally contact on the surface of organs or s...
High quality opal-like photonic crystals containing graphene are fabricated using evaporation-driven...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Distributed sensing of temperature can be achieved by using time-correlated two-photon excited fluor...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...
Flexible sensing surfaces are the next frontier in large area electronics. Integrating sensors and e...