Alexander Pöthig
@apoethig.bsky.social
380 followers 910 following 3 posts
Chemist and Crystallographer | 🏳️‍🌈 | he/him/his | Group Leader @TU_Muenchen | Managing Director @TUMcatalysis | views are my own
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apoethig.bsky.social
📢 Nov 3–7 @ CRC TUM: Join the South German Catalysis Institute — an intensive 5-day course giving PhD students a complete overview of catalysis (homogeneous, heterogeneous, bio, photo, electro + computational) plus industry talks.

🔗 www.crc.tum.de/crc/teaching...

#Catalysis #PhDTraining #TUM
Reposted by Alexander Pöthig
medbioinorgchem.bsky.social
Great EU COST LUCES workshop organized by Dr @apoethig.bsky.social and Prof @lrraurell.bsky.social at the CRC on supramolecular interactions and photophysical properties! Thanks for the wonderful science and discussion! @gmalcantar.bsky.social and Elisabeth Klaus gave excellent presentations 🤗
Reposted by Alexander Pöthig
lrraurell.bsky.social
Very nice @lucescostaction.bsky.social workshop organized by @apoethig.bsky.social. Great scientific discussions and company @jotacarloslima.bsky.social @medbioinorgchem.bsky.social @gmalcantar.bsky.social. Happy to come back in Munich 😃👏👏
Reposted by Alexander Pöthig
ccdc.cam.ac.uk
The first day of the #Crystallography in School workshop at #ECM35 was dedicated to presentations and demo sessions. It was special to see a large attendance of high school teachers at a site of historical significance, as Max von Laue, a Nobel laureate, studied there in the late 19th century.
Reposted by Alexander Pöthig
ccdc.cam.ac.uk
From @apoethig.bsky.social,‬ [2]rotaxanes with enhanced reactivity (@jacs.acspublications.org).

These rotaxanes were shown to deprotect faster compared to non-interlocked structures due to conformational preorganisation.

🔗 CSD Entry XAJJEC: dx.doi.org/10.5517/ccdc...

#FeaturedStructureFriday
apoethig.bsky.social
Thrilled to share that after more than five years of fascinating yet complex research, our article on Metalloenzyme-like Organometallic Nanotubes is out!

A huge thank you to my brilliant co-authors, collaborators, and everyone who contributed to this journey.

#Supramolecular #Organometallics
Endohedral Coordination of Bulky Substrates in Metalloenzyme‐like Organometallic Nanotubes
Artificial receptors inspired by metalloenzymes share three key properties: a structurally flexible cavity, substrate binding via metal–ligand coordination, and metal-based redox activity. Herein, we...
chemistry-europe.onlinelibrary.wiley.com