Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting properties, their extreme fragility has hampered their use in potential applications. One way to improve the stability is to grow them on substrates; however, there is no general method to grow these wires over large areas. The existing methods suffer from poor coverage and associated formation of larger nanoparticles on the substrate. Herein, we demonstrate a room temperature method for growth of these nanowires with high coverage over large areas by in situ functionalization of the substrate. Using control experiments, we demonstrate that an in situ functionalization of the substrate is the key step in controlling the areal density of the wire...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for man...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for ma...
Although ultrathin Au nanowires (similar to 2 nm diameter) are expected to demonstrate several inter...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
Advancing synthetic capabilities is important for the development of nanoscience and nanotechnology....
ABSTRACT: Graphene is promising as a transparent, flexible, and possibly cost-effective substrate fo...
Graphene is promising as a transparent, flexible, and possibly cost-effective substrate for nanowire...
We report a nanowire growth that is highly unconventional: (1) nanowires can grow from substrate-bou...
When materials approach the size of few nanometers, they show properties which are significantly dif...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
Semiconductor nanowires are key building blocks for the next generation of light-emitting diodes, so...
This thesis focuses on the development and application of a new type of nanowire growth where ultrat...
This thesis mostly summarizes the synthetic modification on vertically standing gold nanowire (Au NW...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for man...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for ma...
Although ultrathin Au nanowires (similar to 2 nm diameter) are expected to demonstrate several inter...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
Advancing synthetic capabilities is important for the development of nanoscience and nanotechnology....
ABSTRACT: Graphene is promising as a transparent, flexible, and possibly cost-effective substrate fo...
Graphene is promising as a transparent, flexible, and possibly cost-effective substrate for nanowire...
We report a nanowire growth that is highly unconventional: (1) nanowires can grow from substrate-bou...
When materials approach the size of few nanometers, they show properties which are significantly dif...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
Semiconductor nanowires are key building blocks for the next generation of light-emitting diodes, so...
This thesis focuses on the development and application of a new type of nanowire growth where ultrat...
This thesis mostly summarizes the synthetic modification on vertically standing gold nanowire (Au NW...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
[[abstract]]The growth mechanism of oriented Au nanowires fabricated by immersion plating was invest...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for man...
Creating nanoscale heterostructures with molecular-scale (<2 nm) metal wires is critical for ma...