High-performance and compact-designed flexible thermoelectric modules enabled by a reticulate carbon nanotube architecture
Citations Over TimeTop 1% of 2017 papers
Abstract
It is a great challenge to substantially improve the practical performance of flexible thermoelectric modules due to the absence of air-stable n-type thermoelectric materials with high-power factor. Here an excellent flexible n-type thermoelectric film is developed, which can be conveniently and rapidly prepared based on the as-grown carbon nanotube continuous networks with high conductivity. The optimum n-type film exhibits ultrahigh power factor of ∼1,500 μW m-1 K-2 and outstanding stability in air without encapsulation. Inspired by the findings, we design and successfully fabricate the compact-configuration flexible TE modules, which own great advantages compared with the conventional π-type configuration modules and well integrate the superior thermoelectric properties of p-type and n-type carbon nanotube films resulting in a markedly high performance. Moreover, the research results are highly scalable and also open opportunities for the large-scale production of flexible thermoelectric modules.
Related Papers
- → Optimal design of a multi-couple thermoelectric generator(2000)71 cited
- → Strategies and challenges of high-pressure methods applied to thermoelectric materials(2019)64 cited
- → Comparison of the electronic and thermoelectric properties of three layered phases Bi2Te3, PbBi2Te4 and PbBi4Te7: LEGO thermoelectrics(2018)20 cited
- → Multi-element thermoelectric converters(2002)
- → Single‐Molecule Thermoelectric Devices(2022)