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Reductive #catalytic upcycling of polyolefins for sustainable fuel production (Chem Catalysis 6, 101662; March 19, 2026)

Online Now: Reductive #catalytic upcycling of polyolefins for sustainable fuel production #catalysis

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#RobSelects paper of the week #J_A_C_S: Asymmetric Sm-catalyzed carbon-carbon coupling between alkenes and ketones forming tertiary alcohols. #catalysis https://doi.org/10.1021/jacs.5c20884

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Interesting talk by Danny Broere of the University of Utrecht at #Lunteren2026. He gave exciting insights into equipping metal complexes with new functions by exploiting metal-ligand cooperativity.

pubs.acs.org/doi/abs/10.1...
#ChemSky #Catalysis #MetalComplexes

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Using individual atoms to achieve fossil-free chemistry renewable-carbon.eu/news/?p=174416 #carboncapture #catalysis #ccu #circulareconomy #greenchemistry #hydrogen #methanol #useco2 #RenewableCarbon

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As an organic chemist, should you specialize in synthesis method development or total synthesis?

In his talk at #Lunteren2026, Alois Fürstner shows how his group is excelling at both and makes the point that there is important cross-fertilization between them.

#Chemistry #Synthesis #Catalysis

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Congrats to @andrea-rogo.bsky.social for winning the @rsc.org Sustainable Energy & Fuels #poster #prize 📊🏆 at the Applied #Catalysis for the #Circular #Economy III conference, for his work on Liquid|Solid|Liquid #photocatalysis 👏👏

Check it out in Chem by @cellpress.bsky.social
bit.ly/40YWLxF

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Interesting talk by Géraldine Masson at #Lunteren2026. She gave a presentation with the title "Chiral Brønsted Acid–Driven Enantio- and Regioselective Transformations of Polyunsaturated Systems toward Complex Molecular Architectures".

#ChemSky #Synthesis #Catalysis

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X-ray spectroscopy abstract image with text New workshop x-ray spectroscopy simulation for understanding catalysts. Rutherford Appleton Laboratory, Harwell Campus, Oxfordshire. 10 April 2026, 10 to 4.30 BST

X-ray spectroscopy abstract image with text New workshop x-ray spectroscopy simulation for understanding catalysts. Rutherford Appleton Laboratory, Harwell Campus, Oxfordshire. 10 April 2026, 10 to 4.30 BST

New hybrid workshop - UK Catalysis Hub X-ray Spectroscopy Simulation for Understanding Catalysts, 10 April at Harwell Campus. For computational and experimental researchers. Register for free at ➡️ tinyurl.com/xanesworkshop
#catalysis #chemistry #ChemSky

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Interesting talk by Antonio Echavarren at #Lunteren2026. He talked about the use of gold-carbene catalysis to perform complex and enantioselective transformations in organic synthesis.

pubs.acs.org/doi/10.1021/...
#Synthesis #OrganicChemistry #ChemSky #Catalysis

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𝐆𝐫𝐞𝐞𝐧 𝐂𝐡𝐞𝐦𝐢𝐬𝐭𝐫𝐲 has put together an selection of articles highlighting ground-breaking progress in Catalysis.



🔗https://blogs.rsc.org/gc/2026/03/11/a-selection-of-articles-on-catalysis-in-green-chemistry/



This selection highlights only a small snapshot of recent 𝐆𝐫𝐞𝐞𝐧 𝐂𝐡𝐞𝐦𝐢𝐬𝐭𝐫𝐲 research in catalysis. For much more on sustainable catalytic methods, mechanisms and applications, explore the journal at https://rsc.li/green-chem.



Royal Society of Chemistry #GreenChemistry #Catalysis

𝐆𝐫𝐞𝐞𝐧 𝐂𝐡𝐞𝐦𝐢𝐬𝐭𝐫𝐲 has put together an selection of articles highlighting ground-breaking progress in Catalysis. 🔗https://blogs.rsc.org/gc/2026/03/11/a-selection-of-articles-on-catalysis-in-green-chemistry/ This selection highlights only a small snapshot of recent 𝐆𝐫𝐞𝐞𝐧 𝐂𝐡𝐞𝐦𝐢𝐬𝐭𝐫𝐲 research in catalysis. For much more on sustainable catalytic methods, mechanisms and applications, explore the journal at https://rsc.li/green-chem. Royal Society of Chemistry #GreenChemistry #Catalysis

We've put together a selection of articles highlighting ground-breaking progress in Catalysis.

🔗 blogs.rsc.org/gc/2026/03/1...

This selection offers just a small snapshot of recent research in catalysis.

For more, check out the journal ➡️ rsc.li/green-chem

@rsc.org
#GreenChemistry #Catalysis

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hoto of Prof David Waller with text New hybrid lecture Developing novel catalytic solutions for N2O abatement; a journey from lab to global deployment. Professor David Waller,  Chief Scientist Yara ASA, Porsgrunn, Norway,  Norwegian University of Science and Technology, (NTNU).

hoto of Prof David Waller with text New hybrid lecture Developing novel catalytic solutions for N2O abatement; a journey from lab to global deployment. Professor David Waller, Chief Scientist Yara ASA, Porsgrunn, Norway, Norwegian University of Science and Technology, (NTNU).

New hybrid lecture from Prof. David Waller Chief Scientist Yara ASA, Porsgrunn, Norway NTNU on Developing novel catalytic solutions for N2O abatement: A journey from lab to global deployment. 📅 9 April 2026, 11:00 BST Register for free at ➡️ tinyurl.com/mr3nnmbn #ChemSky #catalysis #chemistry

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Hydrogen storage system based on formic acid production from CO2 electroreduction in acidic media Formic acid is a promising liquid hydrogen carrier. Acidic CO2 electroreduction can produce formic acid, but low local pH promotes hydrogen evolution, hindering high-concentration production. By suppressing proton diffusion and introducing positive charges in the catalyst layer, the local pH is increased, enabling concentrated formic acid generation. This electrolyte can be directly used as a liquid medium for hydrogen storage, releasing hydrogen via selective thermocatalytic decomposition. The depleted solution can be reused as an electrolyte, forming a closed-loop hydrogen storage-release system.

Online Now: Hydrogen storage system based on formic acid production from CO2 electroreduction in acidic media #catalysis

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EPSRC DTP - Automated mechanistic studies in catalysis with quantum chemistry and machine learning at The University of Manchester on FindAPhD.com PhD Project - EPSRC DTP - Automated mechanistic studies in catalysis with quantum chemistry and machine learning at The University of Manchester, listed on FindAPhD.com

PhD opening in Trujillo Group @manchester.ac.uk
Fully funded EPSRC DTP on automated mechanistic studies in catalysis!
Collab Dr Alegre-Requena (Zaragoza).
July/Oct 2026 start.

Details/apply: www.findaphd.com/phds/project...

#phd #catalysis #compchem #ml

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X-ray spectroscopy abstract image with text New workshop x-ray spectroscopy simulation for understanding catalysts. Rutherford Appleton Laboratory, Harwell Campus, Oxfordshire. 10 April 2026, 10 to 4.30 BST

X-ray spectroscopy abstract image with text New workshop x-ray spectroscopy simulation for understanding catalysts. Rutherford Appleton Laboratory, Harwell Campus, Oxfordshire. 10 April 2026, 10 to 4.30 BST

New hybrid workshop - UK Catalysis Hub X-ray Spectroscopy Simulation for Understanding Catalysts, 10 April at Harwell Campus. For computational and experimental researchers. Register for free at ➡️ tinyurl.com/xanesworkshop
#catalysis #chemistry #ChemSky

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photo of Research Complex at Harwell

photo of Research Complex at Harwell

Work with us. Research Associate in Homogeneous Catalysis at Heriot-Watt University. Transform how homogeneous catalysts are discovered and optimised by combining state‑of‑the‑art computational featurisation with experimental reaction‑kinetics data ➡️ tinyurl.com/bdzkbry9
#catalysis #ChemSky

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[Open Access]
Hydroxide and fluoride catalyzed bonding interface closure for low-temperature wafer bonding
2025 Jpn. J. Appl. Phys. 64 03SP06

iopscience.iop.org/article/10.3...

#JJAP
#Physics
#Openaccess
#Wafer
#bonding
#catalysis
#silicon
#dioxide
#energy
#XRR
#silica
#chemistry

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Precisely engineered metal-oxide interfaces in porous single-crystal zirconia monoliths enable enhanced #catalytic activity and durability The dry reforming of methane (DRM) requires high energy input and suffers from coking. This work constructs precise metal-oxide interfaces on porous single-crystal ZrO2 monoliths, achieving efficient low-temperature DRM and showcasing a promising strategy for durable catalyst design.

Online Now: Precisely engineered metal-oxide interfaces in porous single-crystal zirconia monoliths enable enhanced #catalytic activity and durability #catalysis

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Machine learning/molecular mechanics enzymology for the next generation of computational enzymatic catalysis We highlight how machine learning interatomic potentials (MLIPs), embedded within hybrid machine learning and molecular mechanics (ML/MM) frameworks, are transforming computational enzymology. By replacing the costly quantum mechanics (QM) region with reactive MLIPs trained on diverse datasets, ML/MM achieves near-QM accuracy with speedups on the order of thousands, enabling quantitative prediction of stereoselectivity and mutant effects in enzymatic catalysis. Key frontiers, including long-range corrections, field-aware embeddings, reaction modeling, and excited-state simulations, are discussed as pathways toward next-generation computational enzyme design.

Online Now: Machine learning/molecular mechanics enzymology for the next generation of computational enzymatic catalysis #catalysis

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High-density atomic Ag–N frustrated Lewis pair sites for photocatalytic amine oxidation and hydrogen evolution Converting sunlight into hydrogen and valuable chemicals is a central goal of sustainable catalysis but remains challenging. This work introduces a frustrated Lewis pair (FLP)-based design principle for #photocatalysis and shows how atomic sites can be engineered to form FLPs and activate N–H bonds under light. By rationally separating oxidation and reduction half-reactions, the study outlines a general blueprint for solar-driven redox catalysis and the design of next-generation photocatalysts.

Online Now: High-density atomic Ag–N frustrated Lewis pair sites for photocatalytic amine oxidation and hydrogen evolution #catalysis

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An efficient photo-driven retro-Diels-Alder reaction: Dienes on demand This study examines a predicted retro-Diels-Alder pathway for highly strained trans-cyclohexenes and finds the inclusion of an oxygen to be key to observing this reactivity pattern. Computational models and mechanistic experiments reveal that inclusion of oxygen stabilizes the transition state for the retro-Diels-Alder pathway such that it is competitive with thermal isomerization of the strained double bond. This reaction path substantially increases the number of fundamentally different known reactions of trans-cycloalkenes.

Online Now: An efficient photo-driven retro-Diels-Alder reaction: Dienes on demand #catalysis

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Ye Zhu and co-researchers from the National University of Singapore present a stereocontrol connectivity index that parameterizes the stereogenic remoteness of asymmetric reactions.
👉 https://tinyurl.com/yzfknb9p
#AsymmetricReactions #AxialChirality #catalysis #stereocontrol
#BJOC  💎🔓

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Electronegativity-engineered gradient arrangement in high-entropy heterostructures for efficient oxygen evolution High-entropy materials enable versatile catalyst design, yet their interfacial growth and dynamic evolution remain poorly understood. Here, we demonstrate that electronegativity gradients stabilize crystalline-amorphous high-entropy heterostructures through coupled entropy-enthalpy regulation. Under oxygen evolution conditions, electronegativity-guided reconstruction activates a built-in electric field and progressively triggers the lattice oxygen mechanism, establishing interface-engineering principles for high-entropy catalysts in energy conversion.

Online Now: Electronegativity-engineered gradient arrangement in high-entropy heterostructures for efficient oxygen evolution #catalysis

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#RobSelects paper of the week #ScienceMagazine: Intramolecular peptide-catalyst-controlled stereoselective Michael addition between the enamine of an aldehyde and a ketovinylester. #catalysis https://doi.org/10.1126/science.aec8992

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Asymmetric donor engineering in diazine-based polymers for high-efficiency solar-driven H2O2 photosynthesis This study demonstrates how asymmetric donor-acceptor polymers can more effectively harvest solar light, guide charge flow, and activate oxygen and water to produce hydrogen peroxide directly from pure water. By stabilizing key reaction steps and enabling continuous solar-driven H2O2 generation, these materials offer a clean, scalable alternative to traditional chemical synthesis. The work also highlights a molecular design strategy that links fundamental #photocatalysis to practical environmental remediation.

Online Now: Asymmetric donor engineering in diazine-based polymers for high-efficiency solar-driven H2O2 photosynthesis #catalysis

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Photo of Prof David Waller with text New hybrid lecture Developing novel catalytic solutions for N2O abatement; a journey from lab to global deployment. Professor David Waller,  Chief Scientist Yara ASA, Porsgrunn, Norway,  Norwegian University of Science and Technology, (NTNU).

Photo of Prof David Waller with text New hybrid lecture Developing novel catalytic solutions for N2O abatement; a journey from lab to global deployment. Professor David Waller, Chief Scientist Yara ASA, Porsgrunn, Norway, Norwegian University of Science and Technology, (NTNU).

New hybrid lecture from Prof. David Waller Chief Scientist Yara ASA, Porsgrunn, Norway NTNU on Developing novel catalytic solutions for N2O abatement: A journey from lab to global deployment. 📅 9 April 2026, 11:00 BST Register for free at ➡️ tinyurl.com/mr3nnmbn #ChemSky #catalysis #chemistry

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Catalysis Today will publish a Special Issue featuring selected contributions from #CCESC2026, with Dr.
@SilviaMorales_R
as Guest Editor. Exciting times ahead for our community!
#Catalysis #SustainableChemistry #Research #Madrid2026

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Mechanistic insights into the impact of high H2O and high-NOx exhaust from ammonia-fueled engines on Cu-SSZ-13 SCR catalyst activity - Waste Disposal & Sustainable Energy High NOx emission concentrations and H2O contents in ammonia engine exhaust pose significant challenges to the catalyst activity and hydrothermal stability of conventional selective catalytic reductio...

Ammonia engines face a critical challenge: managing high NOx emissions.
New research reveals Cu-SSZ-13 catalysts achieve 95%+ conversion efficiency even under extreme conditions.
A breakthrough for cleaner combustion. doi.org/10.1007/s427...

#AcadeMax #CleanEnergy #Catalysis #AcademicSky

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Developing novel catalytic solutions for N2O abatement A journey from lab to global deployment. A seminar from Professor David Waller, Chief Scientist Yara ASA, Porsgrunn, Norway NTNU

New hybrid lecture from Prof. David Waller Chief Scientist Yara ASA, Porsgrunn, Norway NTNU on Developing novel catalytic solutions for N2O abatement: A journey from lab to global deployment. 📅 9 April 2026, 11:00 BST Register for free at ➡️ tinyurl.com/mr3nnmbn #ChemSky #catalysis #chemistry

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Loved turning liquid–liquid multiphase catalysis and catalyst recycling into visuals for the latest work by Klankermayer et al. (@rwth.bsky.social) on cyclic acetals from CO₂ and diols! Shared on @chemrxiv.org !

#sciart#research#chemistry#catalysis

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Metal-free asymmetric synthesis🌱Chandrakumar Appayee & co-workers showcase how chiral secondary #amines, especially proline-derived, drive enamine & iminium #catalysis for diverse C–C and C–heteroatom bond formations under eco-friendly conditions✨

Read more 👉 buff.ly/vNjbLym

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