Herein we present an inexpensive facile wet-chemistry-free approach to the transfer of chemical vapour-deposited multiwalled carbon nanotubes to flexible transparent polymer substrates in a single-step process. By controlling the nanotube length, we demonstrate accurate control over the electrical conductivity and optical transparency of the transferred thin films. Uniaxial strains of up to 140% induced only minor reductions in sample conductivity, opening up a number of applications in stretchable electronics. Nanotube alignment offers enhanced functionality for applications such as polarisation selective electrodes and flexible supercapacitor substrates. A capacitance of 17 F/g was determined for supercapacitors fabricated from the report...
Transparent conducting films (TCF) made up from carbon nanotubes (CNTs) have a tremendous potential ...
Conducting and transparent interfacial thin films have been prepared from double-walled carbon nanot...
This thesis presents the development of chemical vapour deposited (CVD) graphene and multi-walled c...
Herein we present an inexpensive facile wet-chemistry-free approach to the transfer of chemical vapo...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
We propose a technique for one-step micropatterning of as-grown carbon-nanotube films on a plastic s...
Dense, aligned single-walled carbon nanotubes (SWCNTs) were obtained by nitric acid treatment and th...
The fabrication of flexible transparent conducting films (TCFs) is important for the development of ...
We describe a simple process for the fabrication of transparent and flexible, solid-state supercapac...
We prepare thin single-walled carbon nanotube networks on a transparent and flexible substrate with ...
There is a great need for viable alternatives to today’s transparent conductive film using largely i...
The high growth temperature of carbon nanotubes ( CNTs) hinders their direct assembly on temperature...
The main objective of the emerging field of flexible macroelectronics is to develop scalable and cos...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Discovering scalable routes to fabricate large scale electronic devices on flexible substrates has b...
Transparent conducting films (TCF) made up from carbon nanotubes (CNTs) have a tremendous potential ...
Conducting and transparent interfacial thin films have been prepared from double-walled carbon nanot...
This thesis presents the development of chemical vapour deposited (CVD) graphene and multi-walled c...
Herein we present an inexpensive facile wet-chemistry-free approach to the transfer of chemical vapo...
which permits unrestricted use, distribution, and reproduction in any medium, provided the original ...
We propose a technique for one-step micropatterning of as-grown carbon-nanotube films on a plastic s...
Dense, aligned single-walled carbon nanotubes (SWCNTs) were obtained by nitric acid treatment and th...
The fabrication of flexible transparent conducting films (TCFs) is important for the development of ...
We describe a simple process for the fabrication of transparent and flexible, solid-state supercapac...
We prepare thin single-walled carbon nanotube networks on a transparent and flexible substrate with ...
There is a great need for viable alternatives to today’s transparent conductive film using largely i...
The high growth temperature of carbon nanotubes ( CNTs) hinders their direct assembly on temperature...
The main objective of the emerging field of flexible macroelectronics is to develop scalable and cos...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
Discovering scalable routes to fabricate large scale electronic devices on flexible substrates has b...
Transparent conducting films (TCF) made up from carbon nanotubes (CNTs) have a tremendous potential ...
Conducting and transparent interfacial thin films have been prepared from double-walled carbon nanot...
This thesis presents the development of chemical vapour deposited (CVD) graphene and multi-walled c...