Our just accepted work on polarons in 2D perovskites. Congrats to the team! It took us three years to understand it!
Polaron Vibronic Progression Shapes the Optical Response of 2D Perovskites - Dyksik - Advanced Science - Wiley Online Library https://t.co/kI1l2Qedfu
The last paper from my research in the @PhotophysicsO group is now online! Thanks @maloima, the group and collaborators for all the fun times and great science! 👨🎓 https://t.co/t3HOvyedty
📅 One more week to go - deadline is 15 Aug.
Two #PhD positions in my lab @TUChemnitz - apply now, if you want to work on novel semiconductors or spectroscopy. 📢📢
I have two open PhD positions 🎓 in my lab @TUChemnitz starting from October 2023! One will be focusing on spectroscopy/microscopy & the other one on synthesis of perovskites and related compounds. More info here: https://t.co/4ygse8tSLl Please retweet!
#perovskite materials are said to lead the future of solar cell technology, but could they also be lead free? Read our blog post to find out: https://t.co/mjUW5IsOvg
#solarcells#solarenergy#photovoltaics
Where are the optical properties of metal halide perovskites going? Still many cool things to discover....have a look!😉
AddThis | Home https://t.co/AnEhiPsgeD
@brunoehrler This is great! Especially the use of 'bolbewoners' and 'bollenveld' gave me a good chuckle. Since they are located in 's-Hertogenbosch that would also make them Bosche bollen I guess.
Do you find 2D materials fascinating? We too 😊...here is our last work on optical and structural properties- Elucidating the Structure and Photophysics of Layered Perovskites through Cation Fluorination https://t.co/V6Za2nvmrZ
Are CQDOTs gonna be applied in solar cells one day? Only from stable solutions and using a scalable technique! Have a look, the efficiency is almost 9% 😍Scalable PbS Quantum Dot Solar Cell Production by Blade Coating from Stable Inks https://t.co/hjCjPF3TEM
Excited to see our latest research on the microstructure of 2D perovskite films featured on the front cover of Small Structures! I had a blast translating the science into an illustration. @PhotophysicsO
https://t.co/n99Rhc80XO
This was a lot of fun to write: when quantum dot based devices are improved the go-to answer as to how this was achieved is 'trap passivation'. But what do we really know about traps in lead chalcogenides and how can we study them? @PhotophysicsO https://t.co/66fjVGlqPf
A new interesting phenomena at the surface of R-P perovskites - Photochromism in Ruddlesden–Popper copper-based perovskites: a light-induced change of coordination number at the surface - now published in Journal of Materials Chemistry C https://t.co/WTwtZ1jW2B