Catalysis Research Center
@TUMCatalysis
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News, Research Highlights and Events from the Catalysis Research Center at Technical University of Munich
Garching bei München, Germany
Joined January 2020
Exciting news ahead! Our project CALIDE on Catalytic Light-induced Deracemization reactions has been selected for an ERC Advanced Grant 🙌💡
📣 Good news today for 255 outstanding research leaders who have been offered ERC Advanced Grants. The new funding, worth nearly €652 million, is part of the 🇪🇺EU’s #HorizonEurope programme. Read more 👉 https://t.co/HB95Po7e0o
#ERCAdG #FrontierResearch @EUScienceInnov
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Catalytic Alkyne Semihydrogenation with Polyhydride Ni/Ga Clusters (Roland A. Fischer and co-workers) @FischerGroupTUM @TUMCatalysis @theochem_ISCR @chimie_ISCR #openaccess thanks to #projektDEAL
onlinelibrary.wiley.com
The bimetallic cluster [Ni3(GaTMP)7] reversibly forms di-, tetra- and hexahydride species under hydrogen pressure in solution, that were characterized by low temperature COSY and ROESY NMR experime...
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Ready to take a captivating journey into the realm of photochemical deracemization?🌟Exciting News!🌟Dive in and explore our latest review on this process via short-lived intermediates by @GrosskopfJo📚Out now in @angew_chem! @crc_325 #Photochemistry
https://t.co/JdYvDWpccW
onlinelibrary.wiley.com
Photochemical deracemization offers a unique opportunity to directly obtain enantiopure compounds from their racemates. Short-lived intermediates play a key role in the enantioselectivity-determini...
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Si meets Al! Moritz’s paper on the synthesis and isolation of sodium alumanyl silanides with an Al–Si core is just out in @NatureChemistry: https://t.co/mUvE1YMpH1
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Der Fonds der Chemischen Industrie verlieh Freitag den Dozentenpreis an besonders qualifizierte NachwuchswissenschaftlerInnen aus Chemie u Biochemie: Dr. Oliver Dumele @DumeleLab (@HumboldtUni), Prof. Dr. A. J. Barbara Lechner (@TU_Muenchen), Dr. Sabine Richert (@UniFreiburg)
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Thanks to Abby Doyle from the University of California for her visit in June! Her presentation was about Nickel (Photo)catalysis. We are looking forward to have you with us as plenary speaker at our conference LIT23 in October! Don`t miss registration 👉 https://t.co/IUKXzy3LJn
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Are you interested in oxygen evolution reaction electrocatalysts, which are derived from MOFs? Then take a look at our new collaborative work with @FischerGroupTUM, @EELabMIT, and @WarnanLab at @econversion_de, @TUMCatalysis: https://t.co/IR12Ofq72r
pubs.acs.org
Metal–organic frameworks (MOFs) have been reported to catalyze the oxygen evolution reaction (OER). Despite the established links between the pristine MOFs and their derived metal hydroxide electro...
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We had 2 wonderful visits of Prof. Marc Ambrüster (@ArmbrusterLab) and Prof. Ujjal K. Gautam (Department of Chemical Sciences IISER-Mohali). Thank you very much for great lectures and interesting discussions! (@TU_Muenchen @econversion_de and @TUMCatalysis)
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The WACKER Silicone Award 2023 goes to… Shigeyoshi Inoue, Professor of Silicon Chemistry at TU Munich! Congratulations! Inoue will be awarded at the 10th European Silicon Days in Montpellier, France. Learn more in our #pressrelease here https://t.co/oD8qYsLb0k
#SiliconeAward
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We have an open #PhDposition 🥳 Apply now: Fully Funded PhD Position (up to 4 years; 75%) in Additive Manufactured Metal-Organic Framework based 3D Electrodes for Energy Applications https://t.co/chVDDyfq9I With @DTUtweet collaboration! Looking forward to meet you 😊
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Shiori’s latest paper from the group has just appeared in @NatureSynthesis: A silicon analogue of a ketenyl anion and its use as a ligand for a transition metal. https://t.co/c23QVyuiPo
nature.com
Nature Synthesis - The heavy analogues of ynolates or ketenyl anions have not yet been studied. Here the synthesis, isolation and characterization of a sila-ketenyl anion, the silicon analogue of a...
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Photosynthesis: varying roads lead to the reaction center LMU chemists use high-precision quantum chemistry to study key elements of super-efficient energy transfer in an important element of photosynthesis. https://t.co/WvPIW31EQd
@TUMCatalysis @LMU_Muenchen @TU_Muenchen
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Really nice press release📸 on Philip's and @WarnanLab 's work about smart light traps👏📰
A new system that uses the principle of #photosynthesis can generate energy from light with very high efficiency and could make industrial chemical processes, like the production of syngas, more #sustainable: https://t.co/MKGLicrclO
#inorganicchemistry #batteries 📷A.Eckert
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The Lercher Group reports a groundbreaking approach for upcycling of polyolefins into alkanes in @ScienceMagazine! 🔥 An ionic liquid medium is the key to breakdown postconsumer items to high-quality alkanes at relatively low temperatures! Worth reading! https://t.co/QGQGpFLlDr
science.org
Aluminum chloride–based ionic liquids promote conversion of plastic waste into liquid fuels at temperatures below 100°C.
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The call for nominations for the 2023 Dr. Karl Wamsler Innovation Award has started!
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Photocatalytic Nanozymes - Look even more fancy than expected!😎 Have a look at Philip's great illustration of his and @WarnanLab 's work on controllable syngas evolution and artificial photosynthesis🌞🍃 using molecular catalysts in MOFs👏🥳 https://t.co/WBa0ZblBIA
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Bimetallic flower-power for CO2 electroreduction in @ACSCatalysis⚡️🌸
Gold–Rhodium Nanoflowers for the Plasmon-Enhanced CO2 Electroreduction Reaction upon Visible Light https://t.co/O4R4fHadjG
@TU_Muenchen @TUMCatalysis @usponline @ufscaroficial
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Expect the unexpected! Now in @J_A_C_S, the in-depth mechanism of deracemization reactions via HAT. Something for everyone: #photochemistry 💡, DFT 🖥️ and TA spec 📸. Great teamwork of @GrosskopfJo, the Nürnberger group and @BannwarthTC! @crc_325
pubs.acs.org
Upon irradiation in the presence of a chiral benzophenone catalyst (5 mol %), a racemic mixture of a given chiral imidazolidine-2,4-dione (hydantoin) can be converted almost quantitatively into the...
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Huge congrats to @XuHuihui6 and all the team (Arseni, @Cath_Weetman & Shiori)! We just had a paper on an alluminium-telluride monomer its conversion into an aluminium tellurocarbonate via CO2 reduction, accepted in @angew_chem! https://t.co/6QVgclaUuT
onlinelibrary.wiley.com
Facile isolation of various dimeric aluminum selenides and tellurides, as well as an aluminum-telluride monomer featuring a terminal Al=Te bond, is reported. The aluminum-telluride monomer exhibits...
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Long live the electron!🔌 This cover art🎨 impressively illustrates the light-driven electron storage and on-demand "dark-photocatalysis". Great work Philip, you really played the blender-game through!👏 https://t.co/p8r0icbkGv
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