Themed collection 2022 Horizons Outstanding Paper Award Winners

8 items
Editorial

Materials Horizons 2022 Outstanding Paper Award

Recognising some of the outstanding work published in Materials Horizons, as well as the authors behind those articles.

Graphical abstract: Materials Horizons 2022 Outstanding Paper Award
From the themed collection: 2022 Horizons Outstanding Paper Award Winners
Editorial

Nanoscale Horizons 2022 Outstanding Paper Award

Recognizing some of the outstanding work published in Nanoscale Horizons, as well as the authors behind those articles.

Graphical abstract: Nanoscale Horizons 2022 Outstanding Paper Award
From the themed collection: 2022 Horizons Outstanding Paper Award Winners
Open Access Focus

Organic building blocks at inorganic nanomaterial interfaces

Inorganic–organic interfaces: a tutorial on using organic functional groups to enhance the performances and/or enable new functionality of inorganic nanomaterials.

Graphical abstract: Organic building blocks at inorganic nanomaterial interfaces
From the themed collection: Focus article collection
Open Access Review Article

Machine learning in electron microscopy for advanced nanocharacterization: current developments, available tools and future outlook

The cross-fertilisation between the listed disciplines with a long standing knowledge on the application of artificial intelligence protocols and electron microscopy for materials science can entail the next breakthroughs in the field.

Graphical abstract: Machine learning in electron microscopy for advanced nanocharacterization: current developments, available tools and future outlook
Open Access Communication

Ultra-stable self-standing Au nanowires/TiO2 nanoporous membrane system for high-performance photoelectrochemical water splitting cells

Here we introduce for the first time a synthesis method of a core–shell photoanode composed of nanostructured self-standing titania nanotubes filled with Au nanowires. Photoanode shows high photon to current efficiency of 35% and incredible stability.

Graphical abstract: Ultra-stable self-standing Au nanowires/TiO2 nanoporous membrane system for high-performance photoelectrochemical water splitting cells
Communication

Biomimetic reconstruction of butterfly wing scale nanostructures for radiative cooling and structural coloration

The butterfly wing scales of several species exhibit dual functionalities of radiative cooling and structural coloring. Here, we artificially reconstruct a butterfly wing scale of periodically grating nanostructures with extremely high porosity.

Graphical abstract: Biomimetic reconstruction of butterfly wing scale nanostructures for radiative cooling and structural coloration
From the themed collection: 2022 Horizons Outstanding Paper Award Winners
Communication

Shining light in blind alleys: deciphering bacterial attachment in silicon microstructures

Chemically manipulated silicon diffraction gratings serve as a toolbox for the systematic investigation on how different material properties guide bacterial attachment onto a surface, which is imperative for mediating infections and biofouling.

Graphical abstract: Shining light in blind alleys: deciphering bacterial attachment in silicon microstructures
From the themed collection: 2022 Horizons Outstanding Paper Award Winners
Communication

Semi-paracrystallinity in semi-conducting polymers

We introduce a new structural model for polymer materials: the semi-paracrystallinity. The assessment of structural order in semi-paracrystalline materials requires to consider the quality of ordering of the paracrystalline lattice and the degree of paracrystallinity.

Graphical abstract: Semi-paracrystallinity in semi-conducting polymers
From the themed collection: 2022 Horizons Outstanding Paper Award Winners
8 items

About this collection

We are delighted to announce the winners of the 2022 Materials Horizons Outstanding Paper Award and 2022 Nanoscale Horizons Outstanding Paper Award.

Please join us in congratulating our winners. We hope you enjoy reading their outstanding articles as much as we did!

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