Discovering and developing molecules and processes for generating hydrogen through #artificialphotosynthesis and for producing #solarfuels from sunlight and CO₂
We wish you a festive holiday season with LIGHTS and a lot to ChEC off of your wishlist ✨ 🎁
As our university project formally comes to an end this month, we will not post to this account anymore next year.
As the research on solar water splitting certainly doesn't stop, ... ➡
The Swiss Army Knife of Electrodes: Pillar[6]arene-Modified Electrodes for Molecular Electrocatalysis Over a Wide pH Range (S. David Tilley and co-workers) @UZH_Chemistry@TilleyLab @HRoithmeyer #openaccess https://t.co/fw8msMYzbs
#Newarticle published in ACS Applied Materials & Interfaces
🔬Hard X-ray Photoelectron Spectroscopy Probing Fe Segregation during the Oxygen Evolution Reaction
🧑🔬👩🔬F. Longo, P.J. Lloreda-Jurado, @gilrostra, A.R. Gonzalez-Elipe, F. Yubero, et al.
https://t.co/Ugicq0Ux0e
This study presents a hybrid polyethyleneimine/TiO₂ protective layer as a low-cost photoanode for solar water oxidation. The hybrid layer facilitates hole transfer from the photoanode and results in high photostability over 400 hours. @TilleyLab@UZH_Chemistry
Our curious Summer School participants have all arrived at Aegerisee 👍. It's not looking quite as stunning today 🌧 (sunrise image by Sergi Gomez Sanchis) - but we instead focus on the two magical forks from @yogi_chem, explaining electrochemistry in detail this afternoon.
Improved catalysts with exceptional performance and enhanced stability for Solar Hydrogen Production published by @PardisAdams@TilleyLab and co-authors @UZH_Chemistry and @UZHPhysics: https://t.co/3n6Kd63hc2
One-Step Hydrothermal Synthesis of Sn-Doped Sb2Se3 for Solar Hydrogen Production | ACS Catalysis https://t.co/famfJP9VRb
New by @wang_zhenbin@TilleyLab@PardisAdams ..