MXene-TTFs nanocomposite for tuneable photonics
Bidragets beskrivning
The power to manipulate light has always fascinated people and led to many applications in our daily lives. Finding advanced optically active materials is the key to realizing and enhancing this power. This project will develop a new optically active material at Aalto University, utilizing the combination of the state-of-the-art 2-dimensional nanomaterial and molecular material, which has not been explored so far. The new material will combine the key merits of the existing ones, and also enable scalable and low-cost fabrication without using toxic and rare elements. The project can result in immediate applications e.g. active IR camouflage, dynamic thermal regulation for buildings or individuals, as well as existing devices that need high-performance optically active materials. It will also enable many futurist applications such as photonics memory, optical computing, nonlinear optical devices, structural coloration, and active metasurfaces.
Visa merStartår
2024
Slutår
2028
Beviljade finansiering
Finansiär
Finlands Akademi
Typ av finansiering
Akademiforskare
Beslutfattare
Forskningsrådet för naturvetenskap och teknik
13.06.2024
13.06.2024
Övriga uppgifter
Finansieringsbeslutets nummer
360835
Vetenskapsområden
Materialteknik
Forskningsområden
Funktionaaliset materiaalit, puolijohteet
Identifierade teman
photonics, optics, laser