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Collaborative Research Center 1333 Molecular Heterogeneous Catalysis in Confined Geometries www.crc1333.de
CRC 1333









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Great discussions, new collaborations, and exciting catalysis research at the International CataLysis Networking Conference 2026! Congratulations to #CRC1333 doctoral researcher Yannick Weidemann, winner of one of six Poster Prizes. 👏🏆 ▶️ more here🔗 bit.ly/4unhIP1 #SFB1333 #Catalysis #Chemistry
📣 Exciting news from Hashtag#CRC1333 — congratulations to @kenichiendo.bsky.social and collaborators on their new publication in the Journal of Chemical Information and Modeling!
#CRC “Catalysis” receives funding for the 3rd time. Congratulations to the entire team on this great achievement! Researchers at the CRC 1333 develop sustainable chemical processes with the potential for industrial applications and new reaction pathways. 👉 sohub.io/b4v7
New #CRC1333 paper in ACS Catalysis 📣 Mesoporous confinement boosts cooperative asymmetric catalysis—enzyme-inspired “active sites” speed up reactions while staying tunable. ▶️more: 🔗bit.ly/496LEra Great interdisciplinary CRC collaboration, congrats to all authors!🎉 #catalysis #chemistry #sfb1333
Many thanks to Dr. Gerhard Mestl (#clariant) for an inspiring #CRC1333 course on catalyst design in industry. From lab concept to large-scale application, he shared insights on innovation, scale-up, and the differences between academia and industry—highly valuable for early-career researchers.
Kicking off #CatalysisNetworkingConference 2026 today in Weimar 🚀 Bringing together ~200 researchers from 6 @dfg.de-funded CRCs/TRRs in catalysis for talks, posters, and exchange on latest advances. Looking forward to new ideas and collaborations! ▶️more: 🔗 bit.ly/4tJyS9i #crc1333 #catalysisnetwork
😍A warm welcome back to Dr. Zari Dilruba, now a postdoctoral researcher in @endogroup.bsky.social within the #CRC1333. Her research focuses on hybrid #MOCOF materials for #catalysis. ▶️more here: 🔗 bit.ly/4dZSO3a #SFB1333 #WomenInSTEM #femalescientists #catalysis
🎉 Great news: our #CRC1333 at @unistuttgart.bsky.social has been granted a third funding period by @dfg.de ! A huge thank you to all CRC members for your outstanding research, collaboration & dedication over the past years — this achievement would not have been possible without you! 👏
📣 Today: We are very pleased to welcome Prof. Matthias Beller from the @likat.bsky.social our #CRC1333 Colloquium. He will give a talk on "How to develop a sustainable economy? Examples from the Chemical Industry and Energy Technologies". ▶️ more info here: 🔗 bit.ly/48yWXIi
Thanks to Prof. Matthias Beller for visiting the #CRC1333 colloquium. He spoke about rising energy & resource demand, limits of natural efficiency, and the need for innovation in catalysis, energy storage & circular carbon use 🌍 #SFB1333 #catalysis #chemistry
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CRC 1333
CRC 1333
CRC 1333
CRC 1333
CRC 1333
CRC 1333
CRC 1333
CRC 1333
CRC 1333
Universität Stuttgart
We are very happy to welcome within the CRC 1333 Colloquium Series: Prof. Dr. Matthias Beller Thursday, April 30, 2026, 11:30-12:30 pm Leibniz Institute for Catalysis e. V. Topic: “How to develop a su...
bit.ly
Die #DFG fördert zur weiteren Stärkung der #Spitzenforschung an den Hochschulen 13 neue #Sonderforschungsbereiche (SFB). Die Themen reichen von der Erforschung extraterrestrischen Lebens bis zu Papieranwendungen der Zukunft. Einzelheiten 👉 www.dfg.de/de/aktuelles/…
CRC 1333 Colloquium: Prof. Dr. Matthias Beller - Collaborative Research Center 1333
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New paper out! Have you ever been irritated by enigmatic paragraphs of a MOF synthesis procedure or had difficulties in preparing a clean data set for machine learning? We demonstrated efficient data management of MOF synthesis data using JSON schema tools. pubs.acs.org/doi/10.1021/...
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The successful synthesis of metal–organic frameworks (MOFs) in high yield and purity critically depends on the details of the procedure. Therefore, the machine-readable as well as findable, accessible...
pubs.acs.org
Data Management and Analysis of Metal–Organic Framework Synthesis Using Data Models
Deutsche Forschungsgemeinschaft
Kenichi Endo