The amorphous conducting carbon films have been prepared at three different preparation temperatures with different boron-doping levels. The structural and transport properties of the same have been studied. X-ray diffraction measurements show that the 'd' value of the carbon depends both on atomic percentage of B in the carbon network and also on the preparation temperature. Doping of boron increases the structural graphitic ordering of the films prepared at lower temperatures. On the contrary for the films prepared at higher temperatures the ordering deteriorates as the boron content increases. The d.c electrical transport measurements on these amorphous conducting carbon films show, doping induced metal-insulator transition via critical ...
A type of tetrahedral amorphous carbon (ta-C) film that was doped by boron (ta-C:B) is focused on in...
We present the synthesis and properties of iodine incorporated amorphous carbon films. Optical studi...
Amorphous carbon films are prepared by the pyrolysis of Tetra Chloro Phthalic Anhydride (TCPA) at di...
The amorphous conducting carbon films have been prepared at three different preparation temperatures...
Boron-doped amorphous graphite-like carbon (GLC) films have been prepared with different boron conce...
Boron-doped amorphous graphite-like carbon (GLC) films have been prepared with different boron conce...
The electrical transport properties of boron doped graphitelike amorphous carbon films have been stu...
Boron doped amorphous conducting carbon films show MI transition induced by doping. In this paper we...
In this work, the effect of iodine incorporation on the electrical conductivity, magnetic susceptibi...
The influence of disorder on the electrical properties (DC conductivity and magnetoresistance) of am...
In this work, we discuss the preparation of iodine and sulfur incorporated amorphous carbon (a-C) fi...
In this work, the influence of iodine incorporation on the electrical properties of amorphous conduc...
In this work, we discuss the preparation of iodine and sulfur incorporated amorphous carbon (a-C) fi...
Thin films of carbon-boron-nitrogen alloys were prepared by chemical vapor deposition from gaseous m...
Iodine intercalated amorphous conducting C (a-C:I) films are prepd. by vapor phase pyrolysis of male...
A type of tetrahedral amorphous carbon (ta-C) film that was doped by boron (ta-C:B) is focused on in...
We present the synthesis and properties of iodine incorporated amorphous carbon films. Optical studi...
Amorphous carbon films are prepared by the pyrolysis of Tetra Chloro Phthalic Anhydride (TCPA) at di...
The amorphous conducting carbon films have been prepared at three different preparation temperatures...
Boron-doped amorphous graphite-like carbon (GLC) films have been prepared with different boron conce...
Boron-doped amorphous graphite-like carbon (GLC) films have been prepared with different boron conce...
The electrical transport properties of boron doped graphitelike amorphous carbon films have been stu...
Boron doped amorphous conducting carbon films show MI transition induced by doping. In this paper we...
In this work, the effect of iodine incorporation on the electrical conductivity, magnetic susceptibi...
The influence of disorder on the electrical properties (DC conductivity and magnetoresistance) of am...
In this work, we discuss the preparation of iodine and sulfur incorporated amorphous carbon (a-C) fi...
In this work, the influence of iodine incorporation on the electrical properties of amorphous conduc...
In this work, we discuss the preparation of iodine and sulfur incorporated amorphous carbon (a-C) fi...
Thin films of carbon-boron-nitrogen alloys were prepared by chemical vapor deposition from gaseous m...
Iodine intercalated amorphous conducting C (a-C:I) films are prepd. by vapor phase pyrolysis of male...
A type of tetrahedral amorphous carbon (ta-C) film that was doped by boron (ta-C:B) is focused on in...
We present the synthesis and properties of iodine incorporated amorphous carbon films. Optical studi...
Amorphous carbon films are prepared by the pyrolysis of Tetra Chloro Phthalic Anhydride (TCPA) at di...