The optical bandgap properties of vertically-aligned carbon nanotube (VACNT) arrays were probed through their interaction with white light, with the light reflected from the rotating arrays measured with a spectrometer. The precise deterministic control over the structure of vertically-aligned carbon nanotube arrays through electron beam lithography and well-controlled growth conditions brings with it the ability to produce exotic photonic crystals over a relatively large area. The characterisation of the behaviour of these materials in the presence of light is a necessary first step toward application. Relatively large area array structures of high-quality VACNTs were fabricated in square, hexagonal, circular and pseudorandom patterned arr...
Highly dense periodic arrays of multiwalled carbon nanotubes behave like low-density plasma of very ...
In this study, the optical refractive constants of the (5, 5) SWBNNT and (5, 5) SWCNT systems were c...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
This document presents the modeling and characterization of novel optical devices based on periodic ...
Large area arrays of vertically-aligned carbon nanotubes (VACNTs) are patterned in a quasi-crystalli...
The optical properties of multi-walled carbon nanotube arrays are investigated using the finite-diff...
A finite-difference time-domain (FDTD) method is used to model thermal radiative properties of verti...
Multiwalled carbon nanotubes are highly diffractive structures in the optical regime. Their metallic...
Perfect vertically aligned and periodically arranged arrays of multidielectric heterostructures are ...
In this study, large area metallic nanotube arrays on flexible plastic substrates are produced by te...
Single-walled (SW) carbon nanotube (CNT) arrays with long-range order across macroscopic dimensions ...
Experimental investigations of highly vertically aligned carbon nanotubes (CNTs), also known as CNT...
Highly dense periodic arrays of multiwalled carbon nanotubes behave like low-density plasma of very ...
The fascinating optical properties of nanostructured materials find important applications in a numb...
This paper describes an experimental study of gamma radiation effects in low-density arrays of verti...
Highly dense periodic arrays of multiwalled carbon nanotubes behave like low-density plasma of very ...
In this study, the optical refractive constants of the (5, 5) SWBNNT and (5, 5) SWCNT systems were c...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
This document presents the modeling and characterization of novel optical devices based on periodic ...
Large area arrays of vertically-aligned carbon nanotubes (VACNTs) are patterned in a quasi-crystalli...
The optical properties of multi-walled carbon nanotube arrays are investigated using the finite-diff...
A finite-difference time-domain (FDTD) method is used to model thermal radiative properties of verti...
Multiwalled carbon nanotubes are highly diffractive structures in the optical regime. Their metallic...
Perfect vertically aligned and periodically arranged arrays of multidielectric heterostructures are ...
In this study, large area metallic nanotube arrays on flexible plastic substrates are produced by te...
Single-walled (SW) carbon nanotube (CNT) arrays with long-range order across macroscopic dimensions ...
Experimental investigations of highly vertically aligned carbon nanotubes (CNTs), also known as CNT...
Highly dense periodic arrays of multiwalled carbon nanotubes behave like low-density plasma of very ...
The fascinating optical properties of nanostructured materials find important applications in a numb...
This paper describes an experimental study of gamma radiation effects in low-density arrays of verti...
Highly dense periodic arrays of multiwalled carbon nanotubes behave like low-density plasma of very ...
In this study, the optical refractive constants of the (5, 5) SWBNNT and (5, 5) SWCNT systems were c...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...