High-Performance PEDOT:PSS Flexible Thermoelectric Materials and Their Devices by Triple Post-Treatments

佩多:嘘 材料科学 热电效应 热电材料 光电子学 纳米技术 导电聚合物 塞贝克系数 化学工程 聚合物 复合材料 工程类 热导率 物理 热力学
作者
Shengduo Xu,Min Hong,Xiao‐Lei Shi,Yuan Wang,Lei Ge,Yang Bai,Lianzhou Wang,Matthew S. Dargusch,Jin Zou,Zhi‐Gang Chen
出处
期刊:Chemistry of Materials [American Chemical Society]
卷期号:31 (14): 5238-5244 被引量:222
标识
DOI:10.1021/acs.chemmater.9b01500
摘要

Searching an effective method to enhance the thermoelectric properties of flexible organic films can significantly widen the application of flexible thermoelectric devices. Tuning the microstacking structure and oxidation level can effectively optimize the thermoelectric properties of poly(3,4-ethylenedioxithiophene):poly(styrenesulfonate) (PEDOT:PSS) organic films. Here, we adopt triple post-treatments with formamide (CH3NO), concentrated sulfuric acid (H2SO4), and sodium borohydride in sequence to engineer flexible PEDOT:PSS thermoelectric films. A high power factor of 141 μWm–1 K–2 at 25 °C has been obtained for the PEDOT:PSS film. Such a high power factor stems from the high σ (1786 Scm–1) and S (28.1 μVK–1) after post-treatment with CH3NO, H2SO4, and NaBH4 in order. The increased carrier mobility resulting from both the selective removal of excess insulating PSS within the films and the conformation transition after CH3NO and H2SO4 treatments is responsible for the enhancement of σ, while the subsequent NaBH4 treatment optimize the electrical properties (σ and S) by modulating the oxidation level. A homemade thermoelectric device has also been fabricated using the as-prepared flexible PEDOT:PSS films and had a high output power density of ∼1 μWcm–2 with human arm as a heating source. This study indicates that flexible thermoelectric devices based on cheap conducting polymers have great potential in wearable electronics.
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