Sellet Nicolas, Frey Johanna, Cormier Morgan, Goddard Jean-Philippe
Laboratoire d'Innovation Moléculaire et Applications (LIMA), UMR 7042, Université de Haute-Alsace (UHA), Université de Strasbourg, CNRS Mulhouse 68100 France
Chem Sci. 2024 May 1;15(23):8639-8650. doi: 10.1039/d4sc00814f. eCollection 2024 Jun 12.
Cyanines are organic dyes bearing two aza-heterocycles linked by a polymethine chain. Excited states, fluorescence, redox activity, and energy transfer are interesting properties of cyanines which have been used by chemists. Moreover, they are easily accessible and highly tunable. For all these reasons, cyanines are often selected for applications like fluorescent probes, phototherapy and photovoltaics. However, considering cyanines as photocatalysts is a new field of investigation and has been sparsely reported in the literature. This field of research has been launched on the basis of near-infrared light photocatalysis. With a deeper NIR light penetration, the irradiation is compatible with biological tissues. Due to the longer wavelengths that are involved, the safety of the operator can be guaranteed. In this perspective review, the photophysical/redox properties of cyanines are reported as well as their preparations and applications in modern synthetic approaches. Finally, recent examples of cyanine-based NIR-photocatalysis are discussed including photopolymerization and organic synthesis.
花青是一类有机染料,带有两个通过聚甲炔链相连的氮杂环。激发态、荧光、氧化还原活性和能量转移是花青的有趣特性,化学家们已经对其加以利用。此外,它们易于获取且具有高度可调节性。基于所有这些原因,花青常被选用于荧光探针、光疗和光伏等应用。然而,将花青视为光催化剂是一个新的研究领域,在文献中鲜有报道。该研究领域是基于近红外光光催化开展的。由于近红外光具有更深的穿透能力,其照射与生物组织兼容。由于涉及更长的波长,操作人员的安全可以得到保障。在这篇观点综述中,报道了花青的光物理/氧化还原性质及其在现代合成方法中的制备和应用。最后,讨论了基于花青的近红外光催化的近期实例,包括光聚合和有机合成。