The temperature dependent thermoelectric power (TEP) of boron- and nitrogen-doped multiwalled carbon nanotube mats has been measured showing that such dopants can be used to modify the majority conduction from p-type to n-type. The TEP of boron-doped nanotubes is positive, indicating hole-like carriers. In contrast, the nitrogen doped material exhibits negative TEP over the same temperature range, suggesting electron-like conduction. Therefore, the TEP distinct nonlinearities are primarily due to the formation of donor and acceptor states in the B- and N-doped materials. The sharply varying density of states used in our model can be directly correlated to the scanning tunneling spectroscopy studies of these materials
Thermoelectricity is an important topic in mesoscopic physics, and has been lately investigated in l...
We report a detailed experimental and theoretical study on thermoelectric properties of boron-doped ...
The charge transport properties of individual, metallic nitrogen doped, single-walled carbon nanotub...
[[abstract]]© 2003 American Chemical Society-The temperature dependent thermoelectric power (TEP) of...
The temperature dependent thermoelectric power (TEP) of boron- and nitrogen-doped multiwalled carbon...
[[abstract]]© 2002 Elsevier-The substitutional placement of boron within the lattice of carbon nanot...
We have measured the thermoelectric power (TEP) and Coulomb charging characteristics of an individua...
Electrical transport measurements on boron-doped multiwalled carbon nanotubes deposited on top of pr...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
Charge transport properties in single-walled carbon nanotubes (SWCNTs) can be significantly modified...
In this thesis, we study the properties of macroscopic samples of single walled carbon nanotubes (SW...
We study thermoelectric power under strong magnetic field (TPM) in carbon nanotubes (CNTs) and quant...
PACS. 73.20.Hb – Impurity and defect levels; energy states of adsorbed species. Abstract. – We repor...
The transport properties of B-doped single-walled carbon nanotubes (SWNTs) are studied from both exp...
The optical properties and thermal conductivity of carbon nanotubes in the presence of Nitrogen dopi...
Thermoelectricity is an important topic in mesoscopic physics, and has been lately investigated in l...
We report a detailed experimental and theoretical study on thermoelectric properties of boron-doped ...
The charge transport properties of individual, metallic nitrogen doped, single-walled carbon nanotub...
[[abstract]]© 2003 American Chemical Society-The temperature dependent thermoelectric power (TEP) of...
The temperature dependent thermoelectric power (TEP) of boron- and nitrogen-doped multiwalled carbon...
[[abstract]]© 2002 Elsevier-The substitutional placement of boron within the lattice of carbon nanot...
We have measured the thermoelectric power (TEP) and Coulomb charging characteristics of an individua...
Electrical transport measurements on boron-doped multiwalled carbon nanotubes deposited on top of pr...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
Charge transport properties in single-walled carbon nanotubes (SWCNTs) can be significantly modified...
In this thesis, we study the properties of macroscopic samples of single walled carbon nanotubes (SW...
We study thermoelectric power under strong magnetic field (TPM) in carbon nanotubes (CNTs) and quant...
PACS. 73.20.Hb – Impurity and defect levels; energy states of adsorbed species. Abstract. – We repor...
The transport properties of B-doped single-walled carbon nanotubes (SWNTs) are studied from both exp...
The optical properties and thermal conductivity of carbon nanotubes in the presence of Nitrogen dopi...
Thermoelectricity is an important topic in mesoscopic physics, and has been lately investigated in l...
We report a detailed experimental and theoretical study on thermoelectric properties of boron-doped ...
The charge transport properties of individual, metallic nitrogen doped, single-walled carbon nanotub...