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Flexible hybrid piezoelectric-thermoelectric generator for harnessing electrical energy from mechanical and thermal energy

•Thermoelectric and piezoelectric effect based flexible hybrid device.•Piezoelectric nanogenerator (PENG) is made of PVDF-ZnO.•Thermoelectric generator (TEG) is made of n-Bi2Te3-RGO and p-Sb2Te3-RGO.•The output power of TEG and PENG is ∼1.8 nW at ΔT = 4 K and ∼1.2 µW, respectively. Thermoelectric an...

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Bibliographic Details
Published in:Energy conversion and management 2019-10, Vol.198, p.111783, Article 111783
Main Authors: Kumar, Sunil, Singh, Huidrom Hemojit, Khare, Neeraj
Format: Article
Language:English
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Summary:•Thermoelectric and piezoelectric effect based flexible hybrid device.•Piezoelectric nanogenerator (PENG) is made of PVDF-ZnO.•Thermoelectric generator (TEG) is made of n-Bi2Te3-RGO and p-Sb2Te3-RGO.•The output power of TEG and PENG is ∼1.8 nW at ΔT = 4 K and ∼1.2 µW, respectively. Thermoelectric and piezoelectric generators have drawn considerable attention for generating electrical energy from heat and mechanical vibrations for replacing the commercially available rechargeable batteries. In this report, we have fabricated flexible hybrid device by combining of the piezoelectric nanogenerator (PVDF-ZnO) and thermoelectric generator (n-leg and p-leg made of Bi2Te3-RGO (Reduced Graphene Oxide) and Sb2Te3-RGO, respectively) by simple chemical solution method. The focus of this research is to integrate thermoelectric and piezoelectric in a small flexible device to harvest electrical energy from both thermal and mechanical energies. The output power of thermoelectric generator is ∼1.8 nW at a temperature difference of 4 K and the output power of piezoelectric generator is ∼1.2 µW.
ISSN:0196-8904
1879-2227
DOI:10.1016/j.enconman.2019.111783