Copper-based chalcogenides of earth-abundant elements have recently arisen as an alternate material for solar energy conversion. Cu<sub>2</sub>FeSnS<sub>4</sub> (CITS), a quaternary chalcogenide that has received relatively little attention, has the potential to be developed into a low-cost and environmentlly friendly material for photovoltaics and photocatalysis. Herein, we report, for the first time, the synthesis, characterization, and growth mechanism of novel Au/CITS core–shell nanostructures with controllable morphology. Precise manipulations in the core–shell dimensions are demonstrated to yield two distinct heterostructures with spherical and multipod gold nanoparticle (NP) cores (Au<sub>sp</sub>/CITS and Au<sub>mp</sub>/CITS). In p...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...
Promoting the activities of photocatalysts is still the critical challenge in H2 generation area. He...
Precise control over the topology of plasmonic metal–semiconductor heteronanostructures is essential...
Enhanced photocatalytic activities by Au core Novel Au/Cu 2ZnSnS4 core/shell nanoparticles (NPs) are...
In this work, we demonstrated the practical use of Au@Cu2O core–shell and Au@Cu2Se yolk–shell nanocr...
Chalcogenide-based semiconductor-metal heterostructures are interesting catalysts for solar-to-chemi...
Cu2ZnSnS4, based on abundant and environmental friendly elements and with a direct band gap of 1.5 e...
Cu<sub>2</sub>ZnSnS<sub>4</sub>, based on abundant and environmental friendly elements and with a di...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Ag–Au core–shell triangular nanoprisms (Ag@Au TNPs) have aroused extensive research interest in the ...
Oriented attachments have been extensively studied as an effective method for the formation of large...
Although great advances on the synthesis of Au–semiconductor heteronanostructures have been achieved...
Plasmonic Au-copper sulfides hybrid nanocrystals are of great interest for both fundamental research...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...
Promoting the activities of photocatalysts is still the critical challenge in H2 generation area. He...
Precise control over the topology of plasmonic metal–semiconductor heteronanostructures is essential...
Enhanced photocatalytic activities by Au core Novel Au/Cu 2ZnSnS4 core/shell nanoparticles (NPs) are...
In this work, we demonstrated the practical use of Au@Cu2O core–shell and Au@Cu2Se yolk–shell nanocr...
Chalcogenide-based semiconductor-metal heterostructures are interesting catalysts for solar-to-chemi...
Cu2ZnSnS4, based on abundant and environmental friendly elements and with a direct band gap of 1.5 e...
Cu<sub>2</sub>ZnSnS<sub>4</sub>, based on abundant and environmental friendly elements and with a di...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Traditionally, bandgap materials are a prerequisite to photocatalysis since they can harness a reaso...
Ag–Au core–shell triangular nanoprisms (Ag@Au TNPs) have aroused extensive research interest in the ...
Oriented attachments have been extensively studied as an effective method for the formation of large...
Although great advances on the synthesis of Au–semiconductor heteronanostructures have been achieved...
Plasmonic Au-copper sulfides hybrid nanocrystals are of great interest for both fundamental research...
We present the fabrication of core-shell-satellite Au@SiO2 -Pt nanostructures and demonstrate that L...
We present a novel, straightforward, and reproducible method to form tailored CuS@Au hybrid structur...
Promoting the activities of photocatalysts is still the critical challenge in H2 generation area. He...