Carbon nanotube (CNT) forests are known to be among the darkest materials on earth. They can absorb the entire visible range of electromagnetic wave more efficiently than any other known black material. We have attempted controlled mechanical processing of the CNTs and, surprisingly, observed mirror-like reflection from the processed area with 10%–15% reflectivity, a level higher than typical reflectivity of pure forests by over two orders of magnitude, for a wide range of the spectrum (570–1100 nm). Patterning of micro mirrors in the forest is demonstrated to show its potential application for producing monolithically integrated reflector-absorber arrays in the materia
The forests of carbon nanotubes have been termed as the darkest man-made materials. Such materials e...
Carbon nanotube forests are vertically grown tubular formations of graphene. Samples were grown with...
We demonstrate subwavelength imaging in the visible range by using a metal coated carbon nanotube fo...
Carbon nanotube (CNT) forests are known to be among the darkest materials on earth. They can absorb ...
Vertically aligned Carbon Nanotubes (VACNTs) which are commonly referred to as CNT forests, have man...
Carbon nanotube (CNT) forests can be the darkest manmade surfaces in the visible to near-infrared ra...
Black surfaces are useful as black-body sources for optical calibration, stray light suppression in ...
Vertically aligned Carbon Nanotubes (CNTs) which are commonly referred to as CNT forests, have many ...
Carbon nanotube (CNT) forests are the darkest man-made materials on Earth. The optical properties of...
Vertically Aligned Carbon Nanotube arrays (also termed as VACNTs or CNT forest) have recently found ...
Despite the "darker than black" association attributed to carbon nanotube forests, here is shown tha...
Vertically Aligned Carbon Nanotube arrays (also termed as VACNTs or CNT forest) have recently found ...
The tunable optical properties of the bulk structure of carbon nanotubes (CNT) were recently reveale...
The relationship between the physical structure of carbon nanotube (CNT) honeycomb structures and th...
This paper proposes three new approaches for micro patterning of CNT forest in order to make it usef...
The forests of carbon nanotubes have been termed as the darkest man-made materials. Such materials e...
Carbon nanotube forests are vertically grown tubular formations of graphene. Samples were grown with...
We demonstrate subwavelength imaging in the visible range by using a metal coated carbon nanotube fo...
Carbon nanotube (CNT) forests are known to be among the darkest materials on earth. They can absorb ...
Vertically aligned Carbon Nanotubes (VACNTs) which are commonly referred to as CNT forests, have man...
Carbon nanotube (CNT) forests can be the darkest manmade surfaces in the visible to near-infrared ra...
Black surfaces are useful as black-body sources for optical calibration, stray light suppression in ...
Vertically aligned Carbon Nanotubes (CNTs) which are commonly referred to as CNT forests, have many ...
Carbon nanotube (CNT) forests are the darkest man-made materials on Earth. The optical properties of...
Vertically Aligned Carbon Nanotube arrays (also termed as VACNTs or CNT forest) have recently found ...
Despite the "darker than black" association attributed to carbon nanotube forests, here is shown tha...
Vertically Aligned Carbon Nanotube arrays (also termed as VACNTs or CNT forest) have recently found ...
The tunable optical properties of the bulk structure of carbon nanotubes (CNT) were recently reveale...
The relationship between the physical structure of carbon nanotube (CNT) honeycomb structures and th...
This paper proposes three new approaches for micro patterning of CNT forest in order to make it usef...
The forests of carbon nanotubes have been termed as the darkest man-made materials. Such materials e...
Carbon nanotube forests are vertically grown tubular formations of graphene. Samples were grown with...
We demonstrate subwavelength imaging in the visible range by using a metal coated carbon nanotube fo...