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聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐热电性能的 提升策略研究进展 被引量:7

Progress of Strategies for Improving Thermoelectric Performance of Poly(3,4-ethylenedioxythiophene):Poly(styrene sulfonate)
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摘要 近十年,有机聚合物及其复合热电材料与柔性器件取得了显著进展,在废热回收利用、可穿戴电子学、软体机器人和物联网等领域有广泛的应用.其中,聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸(PEDOT:PSS)是迄今研究最多也是性能最高的聚合物体系.本文对近年来有关PEDOT:PSS热电性能有效提升主要策略的文献报道进行了总结.首先,从PEDOT:PSS的二次掺杂/去掺杂、酸或碱处理和离子液体处理方面等,重点论述了掺杂/去掺杂策略的研究进展;然后,分别从改善聚集态结构、构筑PEDOT微纳米结构和与碳纳米材料复合等3个方面,重点介绍了采用此3种策略提升PEDOT:PSS热电性能的研究进展;最后,对该领域进行总结,提出了开展进一步研究的建议,并对其未来发展前景进行展望. In the recent decade,due to their versatile advantages of solution processability,light-in-weight,super flexibility,low thermal conductivity and highly adjustable molecular structures or components,organic and organic/inorganic composite thermoelectric materials as well as their flexible devices have made great progress.A variety of judicious strategies of both material preparation and flexible device assembly have been developed to improve the corresponding thermoelectric performances.Hence,they are very promising for wide application fields,including harvesting of waste heat,flexible electronics,soft robotics and internet-of-things.So far,in all of the reported organic polymer and composite thermoelectric materials,poly(3,4-ethylene dioxyethiophene):poly(styrene sulfonate)(PEDOT:PSS)is probably the most frequently studied and most successful system with the highest thermoelectric performance.Nevertheless,compared with inorganic thermoelectric materials,the thermoelectric properties of PEDOT:PSS is distinctly lower than the maximum value of the inorganic counterparts.Considering the fact of few special reviews about the strategies to effectively enhance the thermoelectric performances for PEDOT:PSS to date,it is timely and urgent to publish a relevant review.Here,we present a summarization of the recent progress in the development of strategies to significantly enhance the thermoelectric properties of PEDOT:PSS developed so far.First,the advances of the doping/de-doping strategies,such as second doping/de-doping,acid or alkali treatment,and treating by ionic liquid,are focused in details.The corresponding mechanism is discussed as well.Then,the recent developments of three types of boosting strategies,i.e.tuning of aggregation structures(including crystalline and orientation microstructures),construction of PEDOT nano-micro structures(for example,nanospheres,nanorods,micro-or nano-tubes and nanofibers),and fabrication of thermoelectric composites with inorganic particles such as carbon nanotubes and graphene nanoplatelets,are concentrated.The relevant thermoelectric properties are compared.Finally,we conclude that some strategies to effectively enhance the thermoelectric properties for PEDOT:PSS have been successfully developed,and there is still a long way to go for the actual applications.In particular,three tentative suggestions to the future investigations are proposed,i.e.in-depth investigation of the mechanism between microstructure and thermoelectric performances for the neat PEDOT:PSS,developing novel fabrication procedures with strong interfacial interaction like covalent-bonding and the relevant mechanism study,and exploiting of precise measurement techniques for the thermoelectric parameters of films,hydrogels and aerogels.Finally,the prospects of the future work are outlooked.
作者 黄轩 刘卓鑫 刘福生 陈光明 Xuan Huang;Zhuo-xin Liu;Fu-sheng Liu;Guang-ming Chen(College of Materials Science and Engineering,Shenzhen University,Shenzhen 518055)
出处 《高分子学报》 SCIE CAS CSCD 北大核心 2021年第4期339-349,I0002,共12页 Acta Polymerica Sinica
基金 国家自然科学基金(基金号51973122)资助项目.
关键词 聚(3 4-乙烯二氧噻吩):聚(苯乙烯磺酸) 热电性能 结构-性能关系 Poly(3 4-ethylenedioxythiophene):poly(styrene sulfonate) Thermoelectric properties Structureperformance relationship
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