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基于四吡啶基卟啉的高效太阳能吸收复合材料用于水蒸发和热电发电。

Highly efficient solar-absorber composite material based on tetrapyridylporphyrin for water evaporation and thermoelectric power generation.

作者信息

Zhang Yifeng, Yan Hanbing, Wang Xuefeng, Zhang Zhenyu, Liu Fengchun, Tu Shan, Chen Xiufang

机构信息

State Grid Shanxi Electric Power Research Institute Taiyuan Shanxi Province 030012 P. R. China

出版信息

RSC Adv. 2022 Oct 11;12(45):28997-29002. doi: 10.1039/d2ra03512j.

Abstract

Photothermal materials based on organic small molecules have the characteristics of structural diversity and easy modification for solar-driven water evaporation and power generation technology. However, there still exist limitations, such as the utilization of solar energy and photostability. Therefore, it is the focus of current research to design organic photothermal materials with excellent photothermal stability, strong solar absorption capacity, and high photothermal conversion efficiency. Herein, photothermal conversion materials based on tetrapyridylporphyrin (TPyP) is studied, which possesses polypyrrole macrocyclic framework (18π electrons), which makes it exhibit strong absorption in the 300-800 nm region with high photothermal conversion. The interfacial-heating evaporation system based on polyurethane (PU) foam loaded with TPyP was prepared, whose solar-to-vapor conversion efficiency and vapor evaporation rate of PU + TPyP foam solar energy reached 56% and 0.81 kg m h, respectively. In addition, TPyP-loaded solar evaporator equipped with abundant microchannels for water flow are integrated with thermoelectric devices, thus achieving an evaporation rate and voltage as high as 0.69 kg m h and 60 mV under 1 kW m solar irradiation, respectively. The successful application of TPyP in water evaporation and power generation effectively addresses the difficulties faced in the process of using organic small molecule photothermal materials to solve the energy crisis.

摘要

基于有机小分子的光热材料具有结构多样、易于修饰等特点,适用于太阳能驱动的水蒸发和发电技术。然而,仍然存在一些局限性,如太阳能利用率和光稳定性等。因此,设计具有优异光热稳定性、强太阳能吸收能力和高光热转换效率的有机光热材料是当前研究的重点。在此,对基于四吡啶基卟啉(TPyP)的光热转换材料进行了研究,该材料具有聚吡咯大环骨架(18π电子),使其在300-800nm区域表现出强烈吸收并具有高光热转换性能。制备了基于负载TPyP的聚氨酯(PU)泡沫的界面加热蒸发系统,其PU + TPyP泡沫太阳能的太阳能-蒸汽转换效率和蒸汽蒸发速率分别达到56%和0.81kg m h。此外,配备有丰富水流微通道的负载TPyP的太阳能蒸发器与热电装置集成,从而在1kW m太阳能辐照下分别实现了高达0.69kg m h的蒸发速率和60mV的电压。TPyP在水蒸发和发电方面的成功应用有效地解决了使用有机小分子光热材料解决能源危机过程中面临的难题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b22/9552526/ef3c0f30b270/d2ra03512j-f1.jpg

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