Continuous and uniform carbon nanofilms (CNFs) are prepared by pyrolysis of polyimide films which are produced by molecular layer deposition (MLD). The film thickness can be easily controlled at nanometer scale by altering the cycle numbers. During the annealing process at 600 °C, the polyimide film is subject to shrinkage of 70% in thickness. The obtained CNFs do not exhibit a well-graphitized structure due to the low calcination temperature. No clear pore structures are observed in the produced films. CNFs grown on a glass substrate with a thickness of about 1.4 nm shows almost 98% optical transmittance in the visible spectrum range. Au nanoparticles coated with CNFs are produced by this method. Carbon nanotubes with uniform wall thicknes...
The thin film of carbonfluorine was deposited on the surfaces of aligned carbon nanotubes using a pl...
The preparation of aligned and/or micropatterned carbon nanotubes is important to applications rangi...
Films and coatings of carbonaceous nanostructures are employed in nanoelectronics, biotechnology and...
Continuous and uniform carbon nanofilms (CNFs) are prepared by pyrolysis of polyimide films which ar...
Carbon nanotubes (CNTs) are a viable product for many different markets, one of which is energy deve...
Molecular layer deposition (MLD) techniques were used to deposit conformal coatings on bulk quantiti...
Freestanding, vertical, multiwalled carbon nanotubes (MWCNTs) are formed during the vacuum depositio...
Various chemical vapor deposition (CVD) processes are currently used to produce carbon materials wit...
Atomic layer deposition (ALD) can be used to coat high aspect ratio and high surface area substrates...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
Carbon nanostructures (fibres, multi and single walled tubes) have been synthesized by catalytic che...
In this article, we report on an efficient post-treatment protocol for the manufacturing of pristin...
Polyaniline coated carbon nanofiber was fabricated using one-step vapor deposition polymerization te...
Carbon nanowires are fabricated by the Langmuir Blodgett (LB) method via the top down approach on am...
A thin film of a new type of carbon nanostructures is synthesised, by plasma enhanced chemical vapou...
The thin film of carbonfluorine was deposited on the surfaces of aligned carbon nanotubes using a pl...
The preparation of aligned and/or micropatterned carbon nanotubes is important to applications rangi...
Films and coatings of carbonaceous nanostructures are employed in nanoelectronics, biotechnology and...
Continuous and uniform carbon nanofilms (CNFs) are prepared by pyrolysis of polyimide films which ar...
Carbon nanotubes (CNTs) are a viable product for many different markets, one of which is energy deve...
Molecular layer deposition (MLD) techniques were used to deposit conformal coatings on bulk quantiti...
Freestanding, vertical, multiwalled carbon nanotubes (MWCNTs) are formed during the vacuum depositio...
Various chemical vapor deposition (CVD) processes are currently used to produce carbon materials wit...
Atomic layer deposition (ALD) can be used to coat high aspect ratio and high surface area substrates...
Vertically aligned carbon nanofibres were grown at temperatures as low as 120degreesC by plasma-enha...
Carbon nanostructures (fibres, multi and single walled tubes) have been synthesized by catalytic che...
In this article, we report on an efficient post-treatment protocol for the manufacturing of pristin...
Polyaniline coated carbon nanofiber was fabricated using one-step vapor deposition polymerization te...
Carbon nanowires are fabricated by the Langmuir Blodgett (LB) method via the top down approach on am...
A thin film of a new type of carbon nanostructures is synthesised, by plasma enhanced chemical vapou...
The thin film of carbonfluorine was deposited on the surfaces of aligned carbon nanotubes using a pl...
The preparation of aligned and/or micropatterned carbon nanotubes is important to applications rangi...
Films and coatings of carbonaceous nanostructures are employed in nanoelectronics, biotechnology and...