Nature Catalysis brings together researchers from across all chemistry and related fields. It publishes work on homogeneous catalysis, heterogeneous catalysis, and biocatalysts, incorporating both fundamental and applied studies. Nature Catalysis pro
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A general strategy for the amination of electron-rich and electron-poor heteroaromatics by desaturative catalysis

Nature Catalysis, Published online: 23 April 2024; doi:10.1038/s41929-024-01152-1Aminated heteroaromatics are usually synthesized from heteroaromatic substrates. Now, a general photochemical approach that exploits non-aromatic N-heterocyclic ketones as starting materials for the coupling with amines under desaturative catalysis is reported as an alternative.

Tue Apr 23, 2024 16:40
Embracing data science in catalysis research

Nature Catalysis, Published online: 23 April 2024; doi:10.1038/s41929-024-01150-3The use of data science tools in catalysis research has experienced a surge in the past 10–15 years. This Review provides a holistic overview and categorization of the field across the various approaches and subdisciplines in catalysis.

Tue Apr 23, 2024 16:40
A synthetic methylotrophic <i>Escherichia coli</i> as a chassis for bioproduction from methanol

Nature Catalysis, Published online: 23 April 2024; doi:10.1038/s41929-024-01137-0Synthetic methylotrophic organisms provide potential for valorization of greenhouse gas-derived methanol. Here an Escherichia coli strain is generated that reaches a similar growth rate on methanol to many natural methylotrophs and is capable of producing chemicals from...

Tue Apr 23, 2024 16:40
Progress and roadmap for electro-privileged transformations of bio-derived molecules

Nature Catalysis, Published online: 22 April 2024; doi:10.1038/s41929-024-01131-6Biomass is a renewable source of carbon that can be exploited to produce valuable chemicals and fuels. This Perspective discusses the electrochemical valorization of biomass, identifying specific chemical transformations in which the approach can excel.

Mon Apr 22, 2024 19:32
Dinuclear Cu(I) molecular electrocatalyst for CO<sub>2</sub>-to-C<sub>3</sub> product conversion

Nature Catalysis, Published online: 15 April 2024; doi:10.1038/s41929-024-01147-yThe tunable design of molecular catalysts presents opportunities for the control of product selectivity in CO2 reduction, yet to date, complexes capable of producing multicarbon products have been elusive. Here, a Br-bridged dinuclear Cu(I) complex that turns over C3H7OH...

Mon Apr 15, 2024 15:37
Visualizing the structural evolution of individual active sites in MoS<sub>2</sub> during electrocatalytic hydrogen evolution reaction

Nature Catalysis, Published online: 15 April 2024; doi:10.1038/s41929-024-01148-xElectrocatalysts are often dynamic and their surface structure changes under working conditions. Now the dynamic evolution of MoS2 edges is monitored with nanometre-resolution via electrochemical tip-enhanced Raman spectroscopy during the hydrogen evolution reaction.

Mon Apr 15, 2024 15:37

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