AM Saleem, S Shafiee… - … and technology of …, 2015 - iopscience.iop.org
We describe a fast and cost-effective process for the growth of carbon nanofibers (CNFs) at a temperature compatible with complementary metal oxide semiconductor technology, using …
Independent control of density and diameter of carbon nanotubes (CNT) is achieved by catalytic growth from iron nanoparticles pre-defined by inert gas condensation. This two …
GCC Yang, CH Yen - Journal of membrane science, 2013 - Elsevier
The primary aim of this study was to use different materials to form the intermediate layers of tubular carbon nanofibers/carbon/alumina composite membranes (TCCACMs) for removing …
MS Kabir - US Patent 7,977,761, 2011 - Google Patents
US7977761B2 - Controlled growth of a nanostructure on a substrate, and electron emission devices based on the same - Google Patents US7977761B2 - Controlled growth of a …
MS Kabir, A Brud - US Patent 8,106,517, 2012 - Google Patents
US8106517B2 - Connecting and bonding adjacent layers with nanostructures - Google Patents US8106517B2 - Connecting and bonding adjacent layers with nanostructures …
MS Kabir - US Patent 7,687,876, 2010 - Google Patents
The present invention provides for nanostructures grown on a conducting substrate, and a method of making the same. The nanostructures grown according to the claimed method are …
F Schäffel, MH Rümmeli, C Kramberger… - … status solidi (a), 2008 - Wiley Online Library
We have explored the influence of predefined gas phase prepared catalyst particles on carbon nanotube (CNT) properties such as their diameter and number of walls. During the …
A method for making one or more nanostructures is disclosed, the method comprising: depositing a conducting layer on an upper surface of a substrate; depositing a patterned …
MS Kabir - US Patent 7,777,291, 2010 - Google Patents
The present invention provides for nanostructures grown on a conducting or insulating substrate, and a method of making the same. The nanostructures grown according to the …