High figure-of-merit of single-walled carbon nanotubes films with metallic type conduction

Author:

Mishra Suman K.12ORCID,Kaushal Amit13ORCID,Alexander Rajath13ORCID,Patra Soumyabrata14ORCID,Bharti Meetu5ORCID,Rawat V. S.12ORCID,Muthe K. P.4,Singh Bhanu Pratap6ORCID,Singh Ajay14ORCID

Affiliation:

1. Homi Bhabha National Institute 1 , Anushaktinagar, Mumbai, India

2. Advanced Tunable Laser Applications Division 2 , Trombay, Mumbai 400085, India

3. Glass and Advanced Material Division 3 , Trombay, Mumbai 400085, India

4. Technical Physics Division, Bhabha Atomic Research Centre 4 , Trombay, Mumbai 400085, India

5. All India Jat Heroes' Memorial College 5 , Rohtak 124001, Haryana, India

6. CSIR-National Physical Laboratory 6 , New Delhi 110012, India

Abstract

Carbon nanotubes are promising candidates for thermoelectric power generation because of their one-dimensionality mediated high Seebeck coefficient, high electrical conductivity with added advantages of flexibility, light weight, and scalability. We report the temperature-dependent thermoelectric properties of single-walled carbon nanotube (SWCNTs) films. The SWCNTs films exhibit p-type metallic conduction with high Seebeck coefficient (∼69.5 μVK−1) and moderate electrical conductivity (∼76 Scm−1). The films exhibit low thermal conductivity (∼0.1 Wm−1 K−1) due to phonon scattering at the interjunction region. The synergetic combination of thermoelectric properties resulted in a high figure-of-merit of ∼0.11 at 305 K. A flexible thermoelectric generator based on SWCNTs films mounted on a curved hot surface exhibited an output of 17 mV and 54 μA under a small temperature gradient of 10 K. The present work provides possible avenues for developing wearable SWCNTs based thermoelectric power generation modules for harvesting body heat.

Publisher

AIP Publishing

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