We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small as 6 nm without the need for a metal catalyst. The nanowires, synthesized using the purpose-built precursor hexakis(trimethylsilyl)digermane, exhibit high aspect ratios (>1000) while maintaining a uniform core diameter along their length. Additionally, the nanowires are encased in an amorphous shell of material derived from the precursor, which acts to passivate their surfaces and isolates the Ge seed particles from which the nanowires grow. The diameter of the nanowires was found to depend on the synthesis temperature employed. Specifically, there is a linear relationship between the inverse radius of the nanowires and the synthesis temperatu...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
Germanium nanowires were grown on Au coated Si substrates at 380 degrees C in a high vacuum (5 x 10(...
New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes ...
We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small a...
We report the controlled self-seeded growth of highly crystalline Ge nanowires, in the absence of co...
We report the controlled self-seeded growth of highly crystalline Ge nanowires, in the absence of co...
Despite the huge progress recently made in understanding the phenomena of metal-promoted growth of o...
We report here a novel and simple method, without using any seeds or catalysts, to synthesize single...
Sub-20 nm diameter Ge nanowires with narrow size distributions were grown from Ag nanoparticle seeds...
Ge nanowires are playing a big role in the development of new functional microelectronic modules, su...
Highly symmetric self-organized arrays of germanium nanowires with average diameters of similar to 1...
Despite the huge progress recently made in understanding the phenomena of metal-promoted growth of o...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes ...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
Germanium nanowires were grown on Au coated Si substrates at 380 degrees C in a high vacuum (5 x 10(...
New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes ...
We report the self-seeded growth of highly crystalline Ge nanowires, with a mean diameter as small a...
We report the controlled self-seeded growth of highly crystalline Ge nanowires, in the absence of co...
We report the controlled self-seeded growth of highly crystalline Ge nanowires, in the absence of co...
Despite the huge progress recently made in understanding the phenomena of metal-promoted growth of o...
We report here a novel and simple method, without using any seeds or catalysts, to synthesize single...
Sub-20 nm diameter Ge nanowires with narrow size distributions were grown from Ag nanoparticle seeds...
Ge nanowires are playing a big role in the development of new functional microelectronic modules, su...
Highly symmetric self-organized arrays of germanium nanowires with average diameters of similar to 1...
Despite the huge progress recently made in understanding the phenomena of metal-promoted growth of o...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes ...
In order to continue the ever impressive and successful scaling pace of MOSFETs, tremendous research...
Germanium nanowires were grown on Au coated Si substrates at 380 degrees C in a high vacuum (5 x 10(...
New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes ...