Centre for Systems Chemistry, Stratingh Institute for Chemistry, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.
Chem Soc Rev. 2018 Mar 21;47(6):1910-1937. doi: 10.1039/c7cs00772h. Epub 2018 Feb 22.
Molecular photoswitches comprise chromophores that can be interconverted reversibly with light between two states with different photochemical and physicochemical properties. This feature renders them useful for diverse applications, ranging from materials science, biology (specifically photopharmacology) to supramolecular chemistry. With new and more challenging systems to control, especially extending towards biomedical applications, using visible or near-infrared light for photoswitch activation becomes vital. Donor-acceptor Stenhouse adducts are a novel class of visible light-responsive negative photochromes that provide a possible answer to current limitations of other photoswitch classes in the visible and NIR window. Their rapid development since their discovery in 2014, together with first successful examples of applications, demonstrate both their potential and areas where improvements are needed. A better understanding of DASA characteristics and its photoswitching mechanism has revealed that they are in fact a subset of a more general structural class of photochromes, namely Stenhouse photoswitches. This tutorial review aims at providing an introduction and practical guide on DASAs: it focuses on their structure and synthesis, provides fundamental insights for understanding their photoswitching behavior and demonstrates guiding principles for tailoring these switches for given applications.
分子光开关由发色团组成,这些发色团可以通过光在两种具有不同光化学和物理化学性质的状态之间可逆地相互转换。这一特性使它们在从材料科学、生物学(特别是光药理学)到超分子化学等多个领域得到广泛应用。随着需要控制的新的和更具挑战性的系统的出现,特别是向生物医学应用的扩展,使用可见光或近红外光进行光开关激活变得至关重要。供体-受体 Sten豪斯加合物是一类新型的可见光响应型负光致变色化合物,为解决其他光开关类在可见光和近红外窗口中的局限性提供了一种可能的解决方案。自 2014 年发现以来,它们得到了迅速发展,并首次成功应用,这表明它们具有潜力,也需要改进的领域。对 DASA 特性及其光开关机制的深入了解表明,它们实际上是一类更广泛的光致变色化合物(即 Stenhouse 光开关)的一个子集。本综述旨在为 DASA 提供一个介绍和实用指南:重点介绍了它们的结构和合成,为理解其光开关行为提供了基本的见解,并展示了为给定应用定制这些开关的指导原则。