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- W4309353445 abstract "With recent progress in the field of wearable and bio-integrated devices, which are widely used for various applications, such as real-time health monitoring, point-of-care diagnostics, and biological actuators, the need for a continuous and reliable power source is increasing. As solid-state devices with no moving parts, thermoelectric energy generators provide a reliable solution for harnessing body heat and converting it into electricity on demand. However, traditional thermoelectric generators, comprising inorganic materials, are rigid and bulky, limiting their wide deployment. Nonconventional thermoelectric generators, composed of organic and hybrid thermoelectric materials, are flexible and lightweight. In this chapter, we will discuss the working principle of thermoelectric energy harvesting, including materials, devices, and applications. While we briefly touch upon the inorganic materials, we will focus primarily on the organic and hybrid materials, which are nontoxic, flexible, easy to manufacture, easy to scale, and readily available at low cost, providing a promising solution for lightweight and conformal thermoelectric power generation." @default.
- W4309353445 created "2022-11-26" @default.
- W4309353445 creator A5039388604 @default.
- W4309353445 creator A5059994808 @default.
- W4309353445 date "2022-11-18" @default.
- W4309353445 modified "2023-09-26" @default.
- W4309353445 title "Thermoelectric Energy Harvesters and Applications" @default.
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- W4309353445 doi "https://doi.org/10.1002/9783527829682.ch6" @default.
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