Ken Inge
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keninge.bsky.social
Ken Inge
@keninge.bsky.social
Staff Scientist, Stockholm University
Crystallography | Porous Materials | Synthesis
SAVE THE DATE! The 11th European Crystallography School (ECS11) takes place June 28–July 4, 2026, in Stockholm, Sweden. Topics: single-crystal X-ray diffraction, powder X-ray diffraction & 3D electron diffraction.
Learn from leading experts through lectures and hands-on workshops!
www.ecs11.org
November 2, 2025 at 8:15 PM
I had another fun opportunity talking about #MOFs this time on the Swedish kids news program Lilla Aktuellt with my colleague Mathias Nero! #NobelPrize

urplay.se/serie/240068...
October 13, 2025 at 7:33 PM
Had the fantastic opportunity to demonstrate MOF synthesis for the Swedish news program Aktuellt on SVT!

www.svtplay.se/video/8myQL5...
October 12, 2025 at 7:30 PM
Delighted to see our paper on SU-102 for capturing pharmaceutical pollutants from wastewater included in the @nature.com collection on #MOF papers in celebration of the #NobelPrize!

www.nature.com/collections/...
Nobel Prize in Chemistry 2025
The 2025 Nobel Prize in Chemistry has been awarded to Susumu Kitagawa, Richard Robson and Omar M. Yaghi “for the development of metal–organic frameworks.”
www.nature.com
October 12, 2025 at 6:02 PM
So excited about this year’s Nobel Prize in Chemistry! I’m grateful to these pioneers, along with other scientists, for developing the fascinating field of MOFs, and for the inspiration they have provided me and a new generation of chemists. What exciting times! #MOFs #NobelPrize
October 12, 2025 at 5:42 PM
Reposted by Ken Inge
Definitely the most surprised I've been upon acquiring a powder X-ray diffraction pattern, and then looking at the beatiful crystals in an electron microscope! 🔍💎
Using advanced electron crystallography techniques, researchers at Stockholm University have succeeded in determining the structure of the red pigment carmine. It turns out that the substance, used today in products such as candy and paint, has a complex porous structure.
www.su.se/english/news...
Structure of the natural red pigment carmine revealed - Stockholm University
Using advanced electron crystallography techniques, researchers at Stockholm University have succeeded in determining the structure of the historically significant red pigment carmine. It turns out th...
www.su.se
June 4, 2025 at 3:49 PM
Reposted by Ken Inge
Using advanced electron crystallography techniques, researchers at Stockholm University have succeeded in determining the structure of the red pigment carmine. It turns out that the substance, used today in products such as candy and paint, has a complex porous structure.
www.su.se/english/news...
Structure of the natural red pigment carmine revealed - Stockholm University
Using advanced electron crystallography techniques, researchers at Stockholm University have succeeded in determining the structure of the historically significant red pigment carmine. It turns out th...
www.su.se
June 4, 2025 at 2:53 PM
Carmine is a red pigment used since antiquity to color textiles, in paintings by Rembrandt and Van Gogh, and today as a food coloring agent (E120).

Very excited that @esvenssongrape.bsky.social finally reveals the crystal structure of carmine by #3DED!

pubs.acs.org/doi/10.1021/...
Brilliantly Red: The Structure of Carmine
Carmine is a red pigment made from dried cochineal, a scale insect that has been a source of brilliant scarlet reds in clothing and art for more than two millennia, with records dating back to 700 BC....
pubs.acs.org
June 3, 2025 at 4:06 PM
Reposted by Ken Inge
Exicted about our new work on the really unusual (and highly informative) water capture properties of the SU-102 MOFs. A shoutout to @keninge.bsky.social and his group for ongoing work with this awesome series! www.nature.com/articles/s41...
High-capacity water sorbent cycles without hysteresis under dry conditions - Nature Communications
There is a lack of water sorbents capable of cycling water vapor under dry conditions without hysteresis or decomposition. Here, the authors demonstrate that the anionic MOF SU-102 exhibits high-capac...
www.nature.com
May 9, 2025 at 8:51 AM