We report on using Nanosphere Photolithography (NPL) for submicron patterning of Frequency Selective Surfaces (FSS). NPL is a combination of two techniques; colloidal nanolithography-where nanospheres form a self-assembled hexagonal close-packed (HCP) array when dispensed on a surface, and photonic jets-which are created when light is incident onto a microsphere in contact with a surface. NPL creates a mask-free HCP hole array in the photoresist. This pattern can be used with evaporation and lift-off to create an array of antenna elements, constituting the FSS. Alternatively, electrodeposition techniques can be used to deposit the metal elements. The later is particularly appealing as it lends itself to reel-to-reel fabrication techniques. ...
This paper discusses the integration of nanosphere lithography (NSL) with other fabrication techniqu...
Developing a cost-effective nanolithography strategy that enables the production of subwavelength fe...
This work presents a fabrication procedure to make large-area, size-tunable, periodically different ...
How surface geometries can be selectively manipulated through nanosphere lithography (NSL) is discus...
This paper presents a procedure for fabricating large-area, size-tunable, metal arrays with a period...
The use of nano/microspheres or beads for optical nanolithography is a consolidated technique for ac...
Nanosphere lithography, a technique of generating hexagonally packed monolayers with nanospheres, ha...
In this study nanosphere lithography (NSL) is demonstrated to be a low-cost, parallel and material i...
We have developed moiré nanosphere lithography (M-NSL), which incorporates in-plane rotation betwee...
Nanosphere lithography (NSL) is a cost- and time-effective technique for the fabrication of well-ord...
How surface geometries can be selectively manipulated through nanosphere lithography (NSL) is discus...
AbstractFabrication of a large area of periodic structures with deep sub-wavelength features is requ...
ABSTRACT: We demonstrate the repeated utilization of self-assembled colloidal spheres for rapid nano...
Optical metasurfacespatterned arrays of plasmonic nanoantennas that enable the precise manipulation...
“The cost-effective manufacturing of metasurfaces over large areas is a critical issue that limits t...
This paper discusses the integration of nanosphere lithography (NSL) with other fabrication techniqu...
Developing a cost-effective nanolithography strategy that enables the production of subwavelength fe...
This work presents a fabrication procedure to make large-area, size-tunable, periodically different ...
How surface geometries can be selectively manipulated through nanosphere lithography (NSL) is discus...
This paper presents a procedure for fabricating large-area, size-tunable, metal arrays with a period...
The use of nano/microspheres or beads for optical nanolithography is a consolidated technique for ac...
Nanosphere lithography, a technique of generating hexagonally packed monolayers with nanospheres, ha...
In this study nanosphere lithography (NSL) is demonstrated to be a low-cost, parallel and material i...
We have developed moiré nanosphere lithography (M-NSL), which incorporates in-plane rotation betwee...
Nanosphere lithography (NSL) is a cost- and time-effective technique for the fabrication of well-ord...
How surface geometries can be selectively manipulated through nanosphere lithography (NSL) is discus...
AbstractFabrication of a large area of periodic structures with deep sub-wavelength features is requ...
ABSTRACT: We demonstrate the repeated utilization of self-assembled colloidal spheres for rapid nano...
Optical metasurfacespatterned arrays of plasmonic nanoantennas that enable the precise manipulation...
“The cost-effective manufacturing of metasurfaces over large areas is a critical issue that limits t...
This paper discusses the integration of nanosphere lithography (NSL) with other fabrication techniqu...
Developing a cost-effective nanolithography strategy that enables the production of subwavelength fe...
This work presents a fabrication procedure to make large-area, size-tunable, periodically different ...