Lu Qichen, Wang Xun
Key Lab of Organic Optoelectronics and Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Adv Sci (Weinh). 2022 Jan;9(1):e2104225. doi: 10.1002/advs.202104225. Epub 2021 Nov 27.
Sub-nanometric materials (SNMs) are an attractive scope in recent years due to their atomic-level size and unique properties. Among various performances of SNMs, photothermal energy conversion is one of the most important ones because it can efficiently utilize the light energy. Herein, the SNMs with photothermal energy conversion behaviors and their applications are reviewed. First, a hydrothermal/solvothermal method for the synthesis of SNMs is systematically discussed, including the LaMer pathway and the cluster-nuclei coassembly pathway. Based on this synthetic strategy, many kinds of SNMs with different morphologies are successfully prepared, such as nanorings, nanowires, nanosheets, and nanobelts. These SNMs exhibit excellent photothermal performance under the laser or solar irradiation according to their different light absorption ranges. These enhanced absorption performances of SNMs are induced by the mechanism of plasmonic localized heating or nonradiative relaxation. Finally, the applications of the photothermal SNMs are illustrated. The SNMs with photothermal behaviors can be widely applied in the fields of solar vapor generation, biomedicine, and light-responsive composites construction. It is hoped that this review can provide new viewpoints and profound understanding to the SNMs in photothermal energy conversion.
亚纳米材料(SNMs)因其原子级尺寸和独特性能,近年来成为一个引人关注的领域。在亚纳米材料的各种性能中,光热能量转换是最重要的性能之一,因为它能够有效利用光能。在此,对具有光热能量转换行为的亚纳米材料及其应用进行综述。首先,系统讨论了用于合成亚纳米材料的水热/溶剂热法,包括LaMer途径和簇核共组装途径。基于这种合成策略,成功制备了多种不同形态的亚纳米材料,如纳米环、纳米线、纳米片和纳米带。根据其不同的光吸收范围,这些亚纳米材料在激光或太阳辐射下表现出优异的光热性能。亚纳米材料的这些增强吸收性能是由等离子体局部加热或非辐射弛豫机制引起的。最后,阐述了光热亚纳米材料的应用。具有光热行为的亚纳米材料可广泛应用于太阳能蒸汽产生、生物医学和光响应复合材料构建等领域。希望这篇综述能为亚纳米材料在光热能量转换方面提供新的观点和深刻的理解。