The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in real time and under realistic conditions is a nontrivial task due to their small dimensions and the often challenging environment in terms of temperature and pressure. For scrutinizing oxidation of metal nanoparticles, visible light optical spectroscopy based on the plasmonic properties of the metal has been established as a suitable method. However, directly relying on the plasmonic resonance of metal nanoparticles as a built-in probe to track oxidation has a number of drawbacks, including the loss of optical contrast in the late oxidation stages. To address these intrinsic limitations, we present a plasmonic heterodimer-based nanospectroscopy...
The ongoing quest to develop single-particle methods for the in situ study of heterogeneous catalyst...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
Abstract Catalysis is an important and key part of many processes both in fundamental research and i...
Studying nanoparticles for catalytic applications in situ is a challenge because their working envir...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
International audienceColloidal solutions of copper nanoparticles (7.2 +/- 1.1 nm 1.6 diameter), sta...
Studying nanoparticles for catalytic applications in situ is a challenge because their working envir...
Heterogeneous catalysis is an important cornerstone of modern society with strong ties to the develo...
In catalysis, nanoparticles enable chemical transformations and their structural and chemical finger...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
The cyclic methanol and hydrogen economies are two viable options in the strive for clean energy pro...
The ongoing quest to develop single-particle methods for the in situ study of heterogeneous catalyst...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...
The ability to study oxidation, reduction, and other chemical transformations of nanoparticles in re...
Copper nanostructures are ubiquitous in microelectronics and heterogeneous catalysis and their oxida...
Cu nanoparticles are commonly used in microelectronic devices and as catalysts in, for example, meth...
Abstract Catalysis is an important and key part of many processes both in fundamental research and i...
Studying nanoparticles for catalytic applications in situ is a challenge because their working envir...
Chemical reactions involving nanoparticles often follow complex processes. In this respect, real-tim...
International audienceColloidal solutions of copper nanoparticles (7.2 +/- 1.1 nm 1.6 diameter), sta...
Studying nanoparticles for catalytic applications in situ is a challenge because their working envir...
Heterogeneous catalysis is an important cornerstone of modern society with strong ties to the develo...
In catalysis, nanoparticles enable chemical transformations and their structural and chemical finger...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
The cyclic methanol and hydrogen economies are two viable options in the strive for clean energy pro...
The ongoing quest to develop single-particle methods for the in situ study of heterogeneous catalyst...
Understanding the oxidation and reduction mechanisms of catalytically active transition metal nanopa...
The oxidation state of Cu nanoparticles during CO oxidation in CO + O2 gas mixtures was sensitively ...