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用于柔性热发电机的丝网印刷CuS/PEDOT:PSS混合薄膜的制备与表征

Preparation and Characterization of Screen-Printed CuS/PEDOT:PSS Hybrid Films for Flexible Thermoelectric Power Generator.

作者信息

Zhao Junmei, Zhao Xiaolong, Guo Rui, Zhao Yaxin, Yang Chenyu, Zhang Liping, Liu Dan, Ren Yifeng

机构信息

School of Electrical and Control Engineering, North University of China, Taiyuan 030051, China.

Key Laboratory of Instrumentation Science & Dynamic Measurement, Ministry of Education, North University of China, Taiyuan 030051, China.

出版信息

Nanomaterials (Basel). 2022 Jul 15;12(14):2430. doi: 10.3390/nano12142430.

Abstract

In recent years, flexible thermoelectric generators(f-TEG), which can generate electricity by environmental temperature difference and have low cost, have been widely concerned in self-powered energy devices for underground pipe network monitoring. This paper studied the CuS films by screen-printing. The effects of different proportions of p-type CuS/poly 3,4-ethylene dioxythiophene-polystyrene sulfonate (PEDOT:PSS) mixture on the thermoelectric properties of films were studied. The interfacial effect of the two materials, forming a superconducting layer on the surface of CuS, leads to the enhancement of film conductivity with the increase of PEDOT:PSS. In addition, the Seebeck coefficient decreases with the increase of PEDOT:PSS due to the excessive bandgap difference between the two materials. When the content ratio of CuS and PEDOT:PSS was 1:1.2, the prepared film had the optimal thermoelectric performance, with a maximum power factor (PF) of 20.60 μW·m·K. The conductivity reached 75% of the initial value after 1500 bending tests. In addition, a fully printed Te-free f-TEG with a fan-shaped structure by CuS and AgSe was constructed. When the temperature difference (ΔT) was 35 K, the output voltage of the f-TEG was 33.50 mV, and the maximum power was 163.20 nW. Thus, it is envisaged that large thermoelectric output can be obtained by building a multi-layer stacking f-TEG for continuous self-powered monitoring.

摘要

近年来,能够通过环境温差发电且成本低廉的柔性热电发电机(f-TEG)在用于地下管网监测的自供电能量装置中受到广泛关注。本文采用丝网印刷法对硫化铜(CuS)薄膜进行了研究。研究了不同比例的p型CuS/聚3,4-乙撑二氧噻吩-聚苯乙烯磺酸盐(PEDOT:PSS)混合物对薄膜热电性能的影响。两种材料的界面效应,即在CuS表面形成超导层,导致随着PEDOT:PSS含量的增加薄膜电导率增强。此外,由于两种材料之间带隙差异过大,塞贝克系数随PEDOT:PSS含量的增加而降低。当CuS与PEDOT:PSS的含量比为1:1.2时,制备的薄膜具有最佳热电性能,最大功率因子(PF)为20.60 μW·m·K。经过1500次弯曲测试后,电导率达到初始值的75%。此外,构建了一种由CuS和AgSe组成的扇形结构的全印刷无碲f-TEG。当温差(ΔT)为35 K时,f-TEG的输出电压为33.50 mV,最大功率为163.20 nW。因此,可以设想通过构建多层堆叠的f-TEG来实现连续自供电监测,从而获得较大的热电输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/622d/9324872/ce5da38cefd2/nanomaterials-12-02430-g001.jpg

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