Results for technologies (5)
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Electrically tunable thin films for smart optical and chiral devices (No. T4-2362)
Modern optics and photonic devices require materials that can actively control both color and light polarization, a combination not currently available in scalable, energy-efficient formats.
Smart windows and adaptive eyewear
Chiral optical switches and light modulators
Polarizati...
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19531
OPTICAL SWITCHES BASED ON MAGNETIC METAL-ORGANIC FRAMEWORKS (No. T4-2361)
This technology introduces porous, anisotropic metal–organic frameworks (MOFs) with magnetic nanoparticles attached on the surface, enabling precise spatial orientation using external magnetic fields.
Optical and magnetic field sensors
Anti-counterfeiting and document authentica...
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19529
Smart Energy Storage Devices with Visual Charge Monitoring (No. T4-2316)
The growing demand for energy devices that store and deliver power and offer additional functionalities, like instant performance monitoring, is evident.
Smart batteries and supercapacitors with built-in charge indicators
Wearable electronics with integrated energy storage
Optoele...
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18931
Metal Organic Frameworks (MOF) for Gas Adsorption (No. T4-1684)
High-performance materials for gas storage and separation are essential for industrial, environmental, and energy-related applications. Conventional MOFs offer molecular-level control but lack tunability at the micro- and nanoscale.
Gas storage and transportation (e.g., hydrogen, ...
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19533
High-Performance Electrochromic Devices (No. T4-1380)
Current electrochromic materials offer a broad color range and moderate electrochromic activity. However, real-world applications demand more intense coloration, faster switching times, and improved stability.
Smart color-changing glass (windows/glasses/mirrors/windshields etc.)
C...
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5458