AbstractThis paper introduces a high precision 3D nanofabrication approach using ultrasonic vibration assisted nanomachining using an AFM operating in constant height control mode. Nanostructures with 3D features were successfully fabricated on PMMA film with the feature height manipulated through controlling the absolute heights of z-scanner in AFM. Two methods were used to move the AFM tip to create desire features, vector mode and raster scan mode. Relatively simple features, such as stair-like nanostructure with five steps was successfully fabricated in vector mode. Complex nanostructure with discrete height levels and continuous changes were successfully fabricated in raster scan mode. By carefully selecting the machining parameters, t...
Atomic force microscopy (AFM) was developed in 1986. It is an important and versatile surface techni...
This paper presents a novel mechanical material removal method to produce nanostructures with a prec...
Direct writing methods are a generic and simple means to produce designed structures in three dimens...
AbstractThis paper introduces a high precision 3D nanofabrication approach using ultrasonic vibratio...
AbstractThis paper explores AFM-based 3D nanomachining process assisted by ultrasonic vibration. 3D ...
This paper proposed a phase-closed-loop nanomachining control method to realize the directly control...
A novel method relying on atomic force microscope (AFM) tip based nanomachining is presented to enab...
The ultrasonic vibration (UV)-assisted method, as an innovative nanomachining process, has competiti...
poster abstractRecent developments in science and engineering have advanced the atomic manufacture o...
Ultrasonic AFM may improve fabrication technologies on the nanometer scale. In the presence of ultra...
Ultra-thin films (e.g., graphene, MoS2, and black phosphorus) have shown amazing performance in a va...
The MEMS technology for various nano/micro devices often requires special facilities and complicated...
This study proposes a new method on 3D micro fabrication using a combination technique of nano-scale...
nano devices. In this paper, we study the use of lithography process to build the desired nanostruct...
This paper presents an atomic force microscopy (AFM) tip-based nanomachining method to fabricate per...
Atomic force microscopy (AFM) was developed in 1986. It is an important and versatile surface techni...
This paper presents a novel mechanical material removal method to produce nanostructures with a prec...
Direct writing methods are a generic and simple means to produce designed structures in three dimens...
AbstractThis paper introduces a high precision 3D nanofabrication approach using ultrasonic vibratio...
AbstractThis paper explores AFM-based 3D nanomachining process assisted by ultrasonic vibration. 3D ...
This paper proposed a phase-closed-loop nanomachining control method to realize the directly control...
A novel method relying on atomic force microscope (AFM) tip based nanomachining is presented to enab...
The ultrasonic vibration (UV)-assisted method, as an innovative nanomachining process, has competiti...
poster abstractRecent developments in science and engineering have advanced the atomic manufacture o...
Ultrasonic AFM may improve fabrication technologies on the nanometer scale. In the presence of ultra...
Ultra-thin films (e.g., graphene, MoS2, and black phosphorus) have shown amazing performance in a va...
The MEMS technology for various nano/micro devices often requires special facilities and complicated...
This study proposes a new method on 3D micro fabrication using a combination technique of nano-scale...
nano devices. In this paper, we study the use of lithography process to build the desired nanostruct...
This paper presents an atomic force microscopy (AFM) tip-based nanomachining method to fabricate per...
Atomic force microscopy (AFM) was developed in 1986. It is an important and versatile surface techni...
This paper presents a novel mechanical material removal method to produce nanostructures with a prec...
Direct writing methods are a generic and simple means to produce designed structures in three dimens...