@TzeChienSUM A simple approach to observe quantum coherence between exciton sublevels without a magnetic field in #perovskite nanocrystal ensembles. Underlying spin decoherence mechanisms are revealed https://t.co/ZdyK0Au0x7
Glad to see our recent work published online @NatureComms. We clarified the complex spin decoherence mechanisms in CsPbBr3 nanocrystals. Pleas check out this link https://t.co/bnx8sdmcp2.
Thank you to everyone on the team๐๐๐
Are you interested in 3D printing and defined polymers? Check out our latest publication on rational design of precise macromolecules for 3D printing using @NanoscribeGmbH technology. Well done Samantha @_cattso (PhD in @Cluster3DMM2O at @UniHeidelberg)! https://t.co/S0CAnahIOl
Yeng Ming Lam, @SumLab_NTU and team at @NTUsg and @ASTARsg develop a method to fabricate low-dimensional #perovskite capping layers with metals other than lead or tin. #SolarCells https://t.co/RH3gHFTYE3
Full precursor solution method expands the metal cation library of low-dimensional interfaces for engineering stable and efficient #perovskite solar cells. https://t.co/lLM6J8B023
@SumLab_NTU#NatureEnergyJnl
Farewell party for Dr. @sankaranrameshw ๐ and pre-celebration for Dr.@JWMelvinLim ๐ before group @SumLab_NTU meeting๐ฅณ๐ฅณ๐ฅณ. All the best to them โบ๏ธ
Separating the interplay of carrier diffusion, surface recombination and photon recycling in #perovskites using #ultrafast#spectroscopy? What are the intrinsic limits of carrier diffusion? Check out our latest work @NanoLetters by @GeoFong@SumLab_NTU - https://t.co/34fnVomDph