Flexible thermoelectric materials and devices: From materials to applications

L Zhang, XL Shi, YL Yang, ZG Chen - Materials today, 2021 - Elsevier
With the ever-growing development of multifunctional and miniature electronics, the
exploring of high-power microwatt-milliwatt self-charging technology is highly essential …

Flexible thermoelectric materials and generators: challenges and innovations

Y Wang, L Yang, XL Shi, X Shi, L Chen… - Advanced …, 2019 - Wiley Online Library
The urgent need for ecofriendly, stable, long‐lifetime power sources is driving the booming
market for miniaturized and integrated electronics, including wearable and medical …

Polymer based thermoelectric nanocomposite materials and devices: Fabrication and characteristics

N Nandihalli, CJ Liu, T Mori - Nano Energy, 2020 - Elsevier
Organic thermoelectric (TE) materials capitalize on advantages such as low thermal
conductivity, low-cost, eco-friendly, versatile processability, light-weight, mechanical …

A review on conductive polymers and their hybrids for flexible and wearable thermoelectric applications

G Prunet, F Pawula, G Fleury, E Cloutet… - Materials Today …, 2021 - Elsevier
There is a growing demand for flexible and wearable next-generation electronic devices that
must be capable of bending and stretching under mechanical deformation. In this regard …

Recent progress on PEDOT: PSS based polymer blends and composites for flexible electronics and thermoelectric devices

Y Yang, H Deng, Q Fu - Materials Chemistry Frontiers, 2020 - pubs.rsc.org
With the development of flexible electronic devices such as organic electrodes, medical
sensors and light-emitting diodes, the conductive polymer, poly (3, 4 …

Thermoelectrics: From history, a window to the future

D Beretta, N Neophytou, JM Hodges… - Materials Science and …, 2019 - Elsevier
Thermoelectricity offers a sustainable path to recover and convert waste heat into readily
available electric energy, and has been studied for more than two centuries. From the …

Organic thermoelectric materials for energy harvesting and temperature control

B Russ, A Glaudell, JJ Urban, ML Chabinyc… - Nature Reviews …, 2016 - nature.com
Conjugated polymers and related processing techniques have been developed for organic
electronic devices ranging from lightweight photovoltaics to flexible displays. These …

Organic-based flexible thermoelectric generators: From materials to devices

S Masoumi, S O'Shaughnessy, A Pakdel - Nano Energy, 2022 - Elsevier
There is a rapidly growing demand for self-powered technologies in wearable electronic
devices that can be integrated with the human body to accomplish various functions …

Review of experimental approaches for improving zT of thermoelectric materials

Z Ma, J Wei, P Song, M Zhang, L Yang, J Ma… - Materials Science in …, 2021 - Elsevier
In the past years, various work has been devoted to improving the thermoelectric figure of
merit zT, and remarkable advances have been achieved. In 2019, an abnormal zT value …

Highly conductive, ultra-flexible and continuously processable PEDOT: PSS fibers with high thermoelectric properties for wearable energy harvesting

N Wen, Z Fan, S Yang, Y Zhao, T Cong, S Xu, H Zhang… - Nano Energy, 2020 - Elsevier
Abstract Conducting polymers, particularly poly (3, 4-ethylenedioxythiophene): poly
(styrenesulfonate)(PEDOT: PSS), have been intensively studied for thermoelectric (TE) …