Thermoelectric power generation using human body heat can be applied to wearable sensors, and various applications are possible. Because the thermoelectric generator (TEG) is highly dependent on the thermoelectric material, research on improving the performance of the thermoelectric material has been conducted. Thus far, in developing thermoelectric materials, the researchers have focused on improving the figure of merit, ZT. For a TEG placed on the human body, however, the power density does not always increase as the material ZT increases. In this study, the material properties and ZT of P-type BiSbTe3 were simulated for carrier concentration ranging from 3 × 1017 to 3 × 1020 cm−3, and the power density of a TEG fabricated from the materi...
Thermoelectric generators (TEGs) are a form of energy harvester and eco-friendly power generation sy...
This study aimed to increase the energy efficiency of thermoelectric generators designed by consider...
This paper presents a discussion on energy scavenging for wearable devices in conjunction with human...
Thermoelectric power generation using human body heat can be applied to wearable sensors, and variou...
Wearable devices constitute a key application area for thermoelectric devices. However, owing to new...
This meta-study explores some factors that can potentially affect the efficiency of a wearable therm...
Wearable thermoelectric generators (TEGs) are considered as a promising power supply for low power w...
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Wearable thermoelectric generators (WTEGs) can incessantly convert body heat into electricity to pow...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Growing energy demands are driving people to generate power in every possible way. New energy source...
Thermoelectric materials could play a crucial role in the future of wearable electronic devices. The...
This paper studies the energy conversion performance and strength of a wearable thermoelectric gener...
The development studies in thermoelectric generator (TEG) systems are mostly disconnected to paramet...
Thermoelectric generators (TEGs) are a form of energy harvester and eco-friendly power generation sy...
This study aimed to increase the energy efficiency of thermoelectric generators designed by consider...
This paper presents a discussion on energy scavenging for wearable devices in conjunction with human...
Thermoelectric power generation using human body heat can be applied to wearable sensors, and variou...
Wearable devices constitute a key application area for thermoelectric devices. However, owing to new...
This meta-study explores some factors that can potentially affect the efficiency of a wearable therm...
Wearable thermoelectric generators (TEGs) are considered as a promising power supply for low power w...
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Wearable thermoelectric generators (WTEGs) can incessantly convert body heat into electricity to pow...
Thermoelectric (TE) materials have the capability of converting heat into electricity, which can imp...
Growing energy demands are driving people to generate power in every possible way. New energy source...
Thermoelectric materials could play a crucial role in the future of wearable electronic devices. The...
This paper studies the energy conversion performance and strength of a wearable thermoelectric gener...
The development studies in thermoelectric generator (TEG) systems are mostly disconnected to paramet...
Thermoelectric generators (TEGs) are a form of energy harvester and eco-friendly power generation sy...
This study aimed to increase the energy efficiency of thermoelectric generators designed by consider...
This paper presents a discussion on energy scavenging for wearable devices in conjunction with human...