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用于一体化光热电转换的超柔性聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐/螺旋碳纳米管薄膜

Ultraflexible PEDOT:PSS/Helical Carbon Nanotubes Film for All-in-One Photothermoelectric Conversion.

作者信息

Jin Xin-Zheng, Li Huan, Wang Ying, Yang Zhen-Yu, Qi Xiao-Dong, Yang Jing-Hui, Wang Yong

机构信息

School of Materials Science & Engineering, Key Laboratory of Advanced Technologies of Materials (Ministry of Education), Southwest Jiaotong University, Chengdu 610031, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 May 31. doi: 10.1021/acsami.2c05875.

Abstract

Photothermoelectric (PTE) conversion can achieve the recovery of low-quality light or heat efficiently. Much effort has been devoted to the exploitation of the inorganic heterogeneous asynchronous (separate) PTE conversion system. Here, a full organic PTE film with a pseudobilayer architecture (PBA) according to the homogeneous synchronous (all-in-one) PTE conversion hypothesis was prepared via successive drop-casting a PEDOT:PSS/helical carbon nanotube (HCNT) mixture and PEDOT:PSS onto a vacuum ultraviolet treated substrate. Our results prove that the heptagon-pentagon pairs embedded in HCNTs promote a denser arrangement of the molecular chains of PEDOT, which enhances the crystallinity and affects the thermoelectric properties. The weak connection and hollow structure of HCNTs inhibit the dissipation of heat, and the value of the film reaches over 0.01. The PBA film shows better photothermal conversion performance than a neat PEDOT:PSS film and stably generates a temperature difference of over 25.68 °C without external cooling. A flexible PTE chip demo was manufactured, and the ideal open-circuit voltage (simulated via COMSOL) of that reaches over 1.5 mV under weak NIR stimulation (83.12 mW/cm), which is the best value reported for an organic all-in-one PTE device, and the real maximum output power reaches 2.55 nW (166.01 mW/cm). The chip has incredible ultraflexibility, and its inner resistance changes less than 1.42% after 10000 bending cycles and displays ultrahigh stability (similarity >90%) in a continuous periodic output. Our work fills the deficit of homogeneous synchronous PTE research for a PEDOT:PSS composite and is a preliminary attempt in an ultraflexible integrated all-in-one PTE chip design.

摘要

光热发电(PTE)转换能够高效地实现对低质量光或热的回收。人们已付出诸多努力来开发无机异质异步(分离式)PTE转换系统。在此,依据均质同步(一体化)PTE转换假说,通过将聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)/螺旋碳纳米管(HCNT)混合物与PEDOT:PSS依次滴铸到经真空紫外处理的基板上,制备出了具有伪双层结构(PBA)的全有机PTE薄膜。我们的研究结果证明,嵌入HCNTs中的七边形-五边形对促进了PEDOT分子链更致密的排列,这增强了结晶度并影响了热电性能。HCNTs的弱连接和中空结构抑制了热耗散,薄膜的 值超过0.01。PBA薄膜展现出比纯PEDOT:PSS薄膜更好的光热转换性能,并且在无外部冷却的情况下能稳定产生超过25.68℃的温差。制造了一个柔性PTE芯片演示器件,在弱近红外刺激(83.12 mW/cm)下,其理想开路电压(通过COMSOL模拟)超过1.5 mV,这是有机一体化PTE器件所报道的最佳值,实际最大输出功率达到2.55 nW(166.01 mW/cm)。该芯片具有令人难以置信的超柔韧性,在10000次弯曲循环后其内阻变化小于1.42%,并且在连续周期性输出中显示出超高稳定性(相似度>90%)。我们的工作填补了PEDOT:PSS复合材料均质同步PTE研究的空白,并且是超柔性集成一体化PTE芯片设计的初步尝试。

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