S'abonner

Connection

a) Transmittance of PILE‐1 over the visible wavelength range. Inset

a) Transmittance of PILE‐1 over the visible wavelength range. Inset

Download scientific diagram | a) Transmittance of PILE‐1 over the visible wavelength range. Inset: photograph of the PILE. b) DSC curves of PILEs and PBA. c) Storage modulus G′ and loss modulus G″ of PILE‐1 and PBA. d) Frequency dependence of the storage modulus G′, loss modulus G″ and loss factor tan δ of PILE‐1. e) Temperature dependence of the shift factor of PILE‐1. f) Temperature dependence of the storage modulus G′ and loss modulus G″ of PILE‐1 from 0 to 150 °C. g) WAXS profiles of PILEs and PBA. h) SEM images of PILEs. і) PILE‐1, іі) PILE‐2, ііі) PILE‐3. from publication: A Mechanically Robust, Self‐Healing, and Adhesive Biomimetic Camouflage Ionic Conductor for Aquatic Environments | Flexible conductive materials capable of simulating transparent ocean organisms have garnered interest in underwater motion monitoring and covert communication applications. However, the creation of underwater flexible conductors that possess mechanical robustness, adhesion, | Underwater, Camouflage and Biomimetics | ResearchGate, the professional network for scientists.

Near-unity broadband omnidirectional emissivity via femtosecond laser surface processing

Flowtron Bug Zapper, 1 Acre of Outdoor Coverage with Powerful 40W Bulb & 5600V Instant Killing Grid, Electric Insect, Fly & Mosquito Zapper, Made in The USA : Home Insect

The Atmospheric Window National Oceanic and Atmospheric Administration

Improved light transmission in nanocrystalline aluminum nitride (AlN)—Enabling a lightweight, thermal shock resistant transparent ceramic - ScienceDirect

Nanomaterials, Free Full-Text

Suppressing phase disproportionation in quasi-2D perovskite light-emitting diodes

Enhanced Pockels Effect in AlN Microring Resonator Modulators Based on AlGaN/AlN Multiple Quantum Wells

The Physics of Light and Color - Basic Aspects of Light Filters

The vis-NIR absorbance spectrum of the ultrathin helical Au−Cu