Recently published in Nature Communications, ICReDD's collaborative research led by the Inokuma group designed "Superacid-resistant macrocyclic BODIPYs" by harnessing the synergistic boron-chelation effect of calix[3]pyrrole-like macrocycles.
https://t.co/qqV99dEWt5
The English press release on our collaborative research group’s development is available at the link below on the Hokkaido University website, titled “A fluorescent dye that works in superacidic environments.”
https://t.co/HgT9pQgTmM
https://t.co/Ha7J4jznlB
Our research group has developed dye material that remains stable even under superacidic condition, and it has been published in Nature Communications!
https://t.co/HgT9pQgTmM
https://t.co/HgT9pQgTmM
We would also greatly appreciate any retweets or reposts to help share our work!
#A newly engineered metal oxide crystal can reversibly absorb and release oxygen at low temperatures, opening new avenues for clean energy, smart electronics, and adaptive building materials. @HokkaidoUni@NatureComms https://t.co/6xCmU17IFj https://t.co/1hdgpiEw3P