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Bimetallic sites for catalysis: from binuclear metal sites to bimetallic nanoclusters and nanoparticles
Heterogeneous bimetallic catalysts have broad applications in industrial processes, but
achieving a fundamental understanding on the nature of the active sites in bimetallic …
achieving a fundamental understanding on the nature of the active sites in bimetallic …
Machine learning for electrocatalyst and photocatalyst design and discovery
Electrocatalysts and photocatalysts are key to a sustainable future, generating clean fuels,
reducing the impact of global warming, and providing solutions to environmental pollution …
reducing the impact of global warming, and providing solutions to environmental pollution …
Single-atom alloy catalysis
Single-atom alloys (SAAs) play an increasingly significant role in the field of single-site
catalysis and are typically composed of catalytically active elements atomically dispersed in …
catalysis and are typically composed of catalytically active elements atomically dispersed in …
In Situ/Operando Electrocatalyst Characterization by X-ray Absorption Spectroscopy
During the last decades, X-ray absorption spectroscopy (XAS) has become an
indispensable method for probing the structure and composition of heterogeneous catalysts …
indispensable method for probing the structure and composition of heterogeneous catalysts …
Synthesis, structure, properties, and applications of bimetallic nanoparticles of noble metals
Bimetallic nanoparticles of noble metals are of high interest in imaging, biomedical devices,
including nanomedicine, and heterogeneous catalysis. Synthesis, properties …
including nanomedicine, and heterogeneous catalysis. Synthesis, properties …
Confining isolated atoms and clusters in crystalline porous materials for catalysis
Abstract Structure–reactivity relationships for nanoparticle-based catalysts have been
greatly influenced by the study of catalytic materials with either supported isolated metal …
greatly influenced by the study of catalytic materials with either supported isolated metal …
Tracking the Evolution of Single-Atom Catalysts for the CO2 Electrocatalytic Reduction Using Operando X-ray Absorption Spectroscopy and Machine Learning
Transition metal-nitrogen-doped carbons (TMNCs) are a promising class of catalysts for the
CO2 electrochemical reduction reaction. In particular, high CO2-to-CO conversion activities …
CO2 electrochemical reduction reaction. In particular, high CO2-to-CO conversion activities …
Dilute alloys based on Au, Ag, or Cu for efficient catalysis: from synthesis to active sites
The development of new catalyst materials for energy-efficient chemical synthesis is critical
as over 80% of industrial processes rely on catalysts, with many of the most energy-intensive …
as over 80% of industrial processes rely on catalysts, with many of the most energy-intensive …
Deep learning meets nanophotonics: a generalized accurate predictor for near fields and far fields of arbitrary 3D nanostructures
Deep artificial neural networks are powerful tools with many possible applications in
nanophotonics. Here, we demonstrate how a deep neural network can be used as a fast …
nanophotonics. Here, we demonstrate how a deep neural network can be used as a fast …
How machine learning can accelerate electrocatalysis discovery and optimization
Advances in machine learning (ML) provide the means to bypass bottlenecks in the
discovery of new electrocatalysts using traditional approaches. In this review, we highlight …
discovery of new electrocatalysts using traditional approaches. In this review, we highlight …