College of Chemistry and Chemical Engineering and Key Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province, Shantou University, 515063, Shantou, China.
National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, Suzhou, 215123, China.
Adv Sci (Weinh). 2023 Apr;10(11):e2206830. doi: 10.1002/advs.202206830. Epub 2023 Jan 27.
Organic photothermal cocrystals, integrating the advantages of intrinsic organic cocrystals and the fascinating photothermal conversion ability, hold attracted considerable interest in both basic science and practical applications, involving photoacoustic imaging, seawater desalination, and photothermal therapy, and so on. However, these organic photothermal cocrystals currently suffer individual cases discovered step by step, as well as the deep and systemic investigation in the corresponding photothermal conversion mechanisms is rarely carried out, suggesting a huge challenge for their further developments. Therefore, it is urgently necessary to investigate and explore the rational design and synthesis of high-performance organic photothermal cocrystals for future applications. This review first and systematically summarizes the organic photothermal cocrystal in terms of molecular classification, the photothermal conversion mechanism, and their corresponding applications. The timely interpretation of the cocrystal photothermal effect will provide broad prospects for the purposeful fabrication of excellent organic photothermal cocrystals toward great efficiency, low cost, and multifunctionality.
有机光热共晶,集固有有机共晶的优点和迷人的光热转换能力于一身,在基础科学和实际应用中都引起了相当大的兴趣,涉及光声成像、海水淡化和光热治疗等领域。然而,这些有机光热共晶目前是逐个发现的案例,而且对相应的光热转换机制的深入和系统的研究很少进行,这对它们的进一步发展提出了巨大的挑战。因此,迫切需要研究和探索用于未来应用的高性能有机光热共晶的合理设计和合成。本综述首先从分子分类、光热转换机制以及相应的应用方面系统地总结了有机光热共晶。对共晶光热效应的及时解释,将为有目的地制造高效、低成本和多功能的优秀有机光热共晶提供广阔的前景。