2023•Advanced Functional MaterialsRequires access

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Abstract

Thermoelectric Fabrics In article number 2300092, Taeyoon Lee and co-workers depict, a bismuth telluride (Bi2Te3) thermoelectric fabric that detects a finger touch by generating an output voltage from temperature differences. Bi2Te3 nanoparticles, are formed inside the fabric, if there is a temperature difference, the fabric generates an output voltage. Therefore, the temperature difference can be detected by measuring output voltages of the Bi2Te3 thermoelectric fabric.

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Thermoelectric Fabrics In article number 2300092, Taeyoon Lee and co-workers depict, a bismuth telluride (Bi2Te3) thermoelectric fabric that detects a finger touch by generating an output voltage from temperature differences. Bi2Te3 nanoparticles, are formed inside the fabric, if there is a temperature difference, the fabric generates an output voltage. Therefore, the temperature difference can be detected by measuring output voltages of the Bi2Te3 thermoelectric fabric.

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Available abstract

Thermoelectric Fabrics In article number 2300092, Taeyoon Lee and co-workers depict, a bismuth telluride (Bi2Te3) thermoelectric fabric that detects a finger touch by generating an output voltage from temperature differences. Bi2Te3 nanoparticles, are formed inside the fabric, if there is a temperature difference, the fabric generates an output voltage. Therefore, the temperature difference can be detected by measuring output voltages of the Bi2Te3 thermoelectric fabric.

Key concepts: Bismuth telluride, Thermoelectric effect, Materials science, Voltage, Thermoelectric generator, Thermoelectric materials, Optoelectronics, Thermoelectric cooling

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