A theoretical study has been conducted to explore the mechanics of self-organizing channel networks with dimensions in the submicron range and nanorange. The channels form by the partial release and bond back of prestressed thin films. In the release phase, the film spontaneously buckles into wrinkles of a certain wavelength, followed by a bond-back phase in which the final channel geometry is established through cohesive interface attractions. Results are presented in terms of the channel spacing, height, and width as a function of the film stiffness, thickness, eigenstrain, etch width, and interface energy. We have identified two dimensionless parameters that fully quantify the network assembly, showing excellent agreement with experiment...
A method is presented to form metallic nanowires and nanochannels by guided self-assembly. The metho...
A rapid process for the formation of nanowire network structures is presented. The technique uses ad...
The development of science and technology of advanced materials using nanoscale units can be conduct...
A theoretical study has been conducted to explore the mechanics of self-organizing channel networks ...
Highly ordered two-dimensional self-organized nanochannel networks as well as free-standing nanomemb...
Highly ordered two-dimensional self-organized nanochannel networks as well as free-standing nanomemb...
Buckling of thin films on a rigid substrate during use or fabrication is a well-known but unwanted p...
Buckling of thin films on a rigid substrate during use or fabrication is a well-known but unwanted p...
In this paper we theoretically analyze the mechanism of nanochannel formation by an evolutionary etc...
KEY WORDS self-assembly; STM; strained metallic interfaces; ultrathin films; misfit dislocation netw...
We report a new mechanism of self-organization that can lead to robust surface ordering. We have qua...
This study reports on the way of control the self-assembly process of nanostructures with various ex...
<p>When a local mechanical perturbation is applied to the surface of<br>a thin film of a mechanicall...
A central goal in nanoresearch is to create entirely new materials from nanosized basic units such a...
We propose a generic, simple, and parallel nanofabrication technique to obtain three-dimensional mul...
A method is presented to form metallic nanowires and nanochannels by guided self-assembly. The metho...
A rapid process for the formation of nanowire network structures is presented. The technique uses ad...
The development of science and technology of advanced materials using nanoscale units can be conduct...
A theoretical study has been conducted to explore the mechanics of self-organizing channel networks ...
Highly ordered two-dimensional self-organized nanochannel networks as well as free-standing nanomemb...
Highly ordered two-dimensional self-organized nanochannel networks as well as free-standing nanomemb...
Buckling of thin films on a rigid substrate during use or fabrication is a well-known but unwanted p...
Buckling of thin films on a rigid substrate during use or fabrication is a well-known but unwanted p...
In this paper we theoretically analyze the mechanism of nanochannel formation by an evolutionary etc...
KEY WORDS self-assembly; STM; strained metallic interfaces; ultrathin films; misfit dislocation netw...
We report a new mechanism of self-organization that can lead to robust surface ordering. We have qua...
This study reports on the way of control the self-assembly process of nanostructures with various ex...
<p>When a local mechanical perturbation is applied to the surface of<br>a thin film of a mechanicall...
A central goal in nanoresearch is to create entirely new materials from nanosized basic units such a...
We propose a generic, simple, and parallel nanofabrication technique to obtain three-dimensional mul...
A method is presented to form metallic nanowires and nanochannels by guided self-assembly. The metho...
A rapid process for the formation of nanowire network structures is presented. The technique uses ad...
The development of science and technology of advanced materials using nanoscale units can be conduct...