Interfacial energy barrier tuning in MnO2/MoS2/Carbon fabric integrated with low resistance textrode for highly efficient wearable thermoelectric generator
Author:
Funder
SRM Institute of Science and Technology
Publisher
Elsevier BV
Subject
General Chemistry,General Materials Science
Reference95 articles.
1. Fascinating electrical transport behavior of topological insulator Bi2Te3 nanorods: toward electrically responsive smart materials;Hou;Small,2022
2. Thermally driven transport and relaxation switching self-powered electromagnetic energy conversion;Cao;Small,2018
3. A comprehensive review on the output voltage/power of wearable thermoelectric generators concerning their geometry and thermoelectric materials;Soleimani;Nano Energy,2021
4. Multifunctional organic–inorganic hybrid perovskite microcrystalline engineering and electromagnetic response switching multi-band devices;Yan;Adv. Mater.,2023
5. Heterodimensional structure porous nanofibers embedded confining magnetic nanocrystals for electromagnetic functional material and device;Zheng;Carbon N Y,2023
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