Wearable thermoelectric generators (WTEGs) can incessantly convert body heat into electricity to power electronics. However, the low efficiency of thermoelectric materials, tiny terminal temperature difference, rigidity, and neglecting optimization of lateral heat transfer preclude WTEGs from broad utilization. In this review, we aim to comprehensively summarize the state-of-the-art strategies for the realization of flexibility and high normalized power density in thermoelectric generators by establishing the links among materials, TE performance, and advanced design of WTEGs (structure, heatsinks, thermal regulation, thermal analysis, etc.) based on inorganic bulk TE materials. Each section starts with a concise summary of its fundamentals...
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Power costs increasing, environmental pollution and global warming are issues that we are dealing wi...
Wearable devices constitute a key application area for thermoelectric devices. However, owing to new...
Wearable thermoelectric generators (TEGs) are considered as a promising power supply for low power w...
A wearable thermoelectric generator (WTEG) that utilizes human body heat can be a promising candidat...
Growing energy demands are driving people to generate power in every possible way. New energy source...
Recently, self-powered health monitoring systems using a wearable thermoelectric generator (WTEG) ha...
This meta-study explores some factors that can potentially affect the efficiency of a wearable therm...
Herein, we demonstrate that conventional inorganic materials can be used in wearable systems despite...
This paper explores the heat generated by the human body and the capabilities of wearable thermoelec...
Thermoelectric power generation using human body heat can be applied to wearable sensors, and variou...
Thermoelectric generators (TEGs) are a form of energy harvester and eco-friendly power generation sy...
Research interest in the development of real-time monitoring of personal health indicators using wea...
This paper studies the energy conversion performance and strength of a wearable thermoelectric gener...
This paper presents a discussion on energy scavenging for wearable devices in conjunction with human...
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Power costs increasing, environmental pollution and global warming are issues that we are dealing wi...
Wearable devices constitute a key application area for thermoelectric devices. However, owing to new...
Wearable thermoelectric generators (TEGs) are considered as a promising power supply for low power w...
A wearable thermoelectric generator (WTEG) that utilizes human body heat can be a promising candidat...
Growing energy demands are driving people to generate power in every possible way. New energy source...
Recently, self-powered health monitoring systems using a wearable thermoelectric generator (WTEG) ha...
This meta-study explores some factors that can potentially affect the efficiency of a wearable therm...
Herein, we demonstrate that conventional inorganic materials can be used in wearable systems despite...
This paper explores the heat generated by the human body and the capabilities of wearable thermoelec...
Thermoelectric power generation using human body heat can be applied to wearable sensors, and variou...
Thermoelectric generators (TEGs) are a form of energy harvester and eco-friendly power generation sy...
Research interest in the development of real-time monitoring of personal health indicators using wea...
This paper studies the energy conversion performance and strength of a wearable thermoelectric gener...
This paper presents a discussion on energy scavenging for wearable devices in conjunction with human...
Thermoelectric generators (TEGs) are devices that convert temperature differences into electrical en...
Power costs increasing, environmental pollution and global warming are issues that we are dealing wi...
Wearable devices constitute a key application area for thermoelectric devices. However, owing to new...