We report for the first time the self-catalyzed, single-step growth of branched GeSn nanostructures by a vapor–liquid–solid mechanism. These typical GeSn nanostructures consist of ⟨111⟩-oriented, Sn-rich (∼8 atom %) GeSn “branches” grown epitaxially on GeSn “trunks”, with a Sn content of ∼4 atom %. The trunks were seeded from Au0.80Ag0.20 nanoparticles followed by the catalytic growth of secondary branches (diameter ∼ 50 nm) from the excess of Sn on the sidewalls of the trunks, as determined by high-resolution electron microscopy and energy-dispersive X-ray analysis. The nanowires, with ⟨111⟩-directed GeSn branches oriented at ∼70° to the trunks, have no apparent defects or change in crystal structure at the trunk–branch interface; structur...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
peer-reviewedGe1−xSnx nanowires incorporating a large amount of Sn would be useful for mobility enha...
We report for the first time the self-catalyzed, single-step growth of branched GeSn nanostructures ...
Here, the fabrication of a high aspect ratio (>440) Ge1−xSnx nanowires with super-thin (≈9 nm) diame...
The combination of two active Li-ion materials (Ge and Sn) can result in improved conduction paths a...
Li-ion batteries are important energy storage devices today, powering a range of electrical equipmen...
peer-reviewedThe combination of two active Li-ion materials (Ge and Sn) can result in improved condu...
The race to create alternative, Si compatible, scalable, tuneable device materials over the past num...
peer-reviewedHerein, we report the high density growth of lead seeded germanium nanowires (NWs) and ...
Ge1–xSnx nanowires incorporating a large amount of Sn would be useful for mobility enhancement in na...
A single-step electrochemical liquid-liquid-solid (ec-LLS) deposition route is developed for growing...
Germanium tin (GeSn) has been proposed as a promising material for electronic and optical applicatio...
Ge nanowires are playing a big role in the development of new functional microelectronic modules, su...
Engineered two-dimensional (2D) layered materials possess unique physical properties with the potent...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
peer-reviewedGe1−xSnx nanowires incorporating a large amount of Sn would be useful for mobility enha...
We report for the first time the self-catalyzed, single-step growth of branched GeSn nanostructures ...
Here, the fabrication of a high aspect ratio (>440) Ge1−xSnx nanowires with super-thin (≈9 nm) diame...
The combination of two active Li-ion materials (Ge and Sn) can result in improved conduction paths a...
Li-ion batteries are important energy storage devices today, powering a range of electrical equipmen...
peer-reviewedThe combination of two active Li-ion materials (Ge and Sn) can result in improved condu...
The race to create alternative, Si compatible, scalable, tuneable device materials over the past num...
peer-reviewedHerein, we report the high density growth of lead seeded germanium nanowires (NWs) and ...
Ge1–xSnx nanowires incorporating a large amount of Sn would be useful for mobility enhancement in na...
A single-step electrochemical liquid-liquid-solid (ec-LLS) deposition route is developed for growing...
Germanium tin (GeSn) has been proposed as a promising material for electronic and optical applicatio...
Ge nanowires are playing a big role in the development of new functional microelectronic modules, su...
Engineered two-dimensional (2D) layered materials possess unique physical properties with the potent...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
peer-reviewedGe1−xSnx nanowires incorporating a large amount of Sn would be useful for mobility enha...