摩擦电效应
热电效应
材料科学
热电发电机
电介质
聚酰亚胺
电压
载流子
热电材料
光电子学
纳米技术
电气工程
图层(电子)
热力学
热导率
复合材料
物理
工程类
作者
Sun‐Woo Kim,Jin‐Kyeom Kim,Ji Young Park,Jinhong Mun,Sungwoo Jung,Seong Eun Yang,Geunsik Lee,Pooi See Lee,Hyun‐Cheol Song,Changduk Yang,Hyesung Park,Jae Sung Son,Jeong Min Baik
标识
DOI:10.1002/aenm.202202987
摘要
Abstract The present work demonstrates the very first approach to enhancing the output voltage of a thermoelectric generator by introducing highly charged polyimide‐based dielectrics. High charge density over 320 µC m −2 in C 60 ‐containing block polyimide (PI‐ b ‐C 60 ) having excellent charge retention characteristics is obtained through an ion injection process, attached at the cooling part of a thermoelectric generator consisting of Cu/p‐type BiSbTe/Au/Cr/SiO 2 /Si. This significantly increases the electric potential difference across the thermoelectric generator (TEG) from 4.2 to 8.2 mV at the temperature difference of 20 K, and this increase can be maintained over 1 day. Density functional theory studies support that the enhancement depends on the dielectric constant and the insulating properties of the dielectric. Finally, a TEG consisting of 81 p‐type BiSbTe legs with PI‐ b ‐C 60 generates an output voltage of 0.632 V, and the charged energy of the 10 mF‐capacitor is boosted by 30 s. These results demonstrate the possibility of large‐area TEG fabrication without the need for modification of the TE materials by introducing a new mechanism which is based on the coupling effect between thermoelectric carriers and triboelectric charges.
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