热电效应
材料科学
工程物理
热电材料
环境科学
纳米技术
工程类
物理
热力学
作者
Víctor Toral,Sonia Gómez‐Gijón,Francisco J. Romero,Diego P. Morales,Encarnación Castillo,Noel Rodríguez,Sara Rojas,Francisco Molina‐Lopez,Almudena Rivadeneyra
出处
期刊:ACS applied electronic materials
[American Chemical Society]
日期:2024-07-26
标识
DOI:10.1021/acsaelm.4c00770
摘要
In the evolution of pervasive electronics, it is imperative to significantly reduce the energy consumption of power systems and embrace sustainable materials and fabrication processes with minimal carbon footprint. Within this context, thermoelectric generators (TEGs) have garnered substantial attention in recent years because of the readily available thermal gradients in the environment, making them a promising energy-harvesting technology. Current commercial room-temperature thermoelectrics are based on scarce, expensive, and/or toxic V–VI chalcogenide materials, which limit their widespread use. Thermoelectric polymers partially address this issue, and as such, they have been intensively studied in the field in the past decade. However, less popular materials have recently appeared to respond to the challenges of room-temperature thermoelectrics in terms of sustainability and cost. In this contribution, we comprehensively review the latest advancements in emerging alternative materials with the potential to pave the way for the next generation of sustainable TEGs. This upcoming generation includes flexible and printed TEGs for applications like wearables or the Internet of Things.
科研通智能强力驱动
Strongly Powered by AbleSci AI