Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion technology. Flexible and low‐cost thermoelectric generators are especially suited to power flexible electronics and sensors using body heat or other ambient heat sources. Bismuth telluride (Bi2Te3) based thermoelectric materials exhibit their best performance near room temperature making them an ideal candidate to power wearable electronics and sensors using body heat. In this report, Bi2Te3 thin films are deposited on a flexible polyimide substrate using low‐cost and scalable manufacturing methods. The synthesized Bi2Te3 nanocrystals have a thickness of 35 ± 15 nm and a lateral dimension of 692 ± 186 nm. Thin films fabricated from these nan...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
International audienceFlexible Bi2Te3-based thermoelectric devices can function as power generators ...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric generators are an environmentally friendly and reliable solid‐state energy conversion...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Thermoelectric materials offer the possibility of harvesting huge amounts of waste heat, such as veh...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
International audienceFlexible Bi2Te3-based thermoelectric devices can function as power generators ...
Flexible Bi2Te3-based thermoelectric devices can function as power generators for powering wearable ...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
We herein report the results of a facile two-step surfactant assisted reflux synthesis of bismuth te...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...
Printing is a versatile method to transform semiconducting nanoparticle inks into functional and fle...