Canary James W
Department of Chemistry, New York University, New York, NY 10003, USA.
Chem Soc Rev. 2009 Mar;38(3):747-56. doi: 10.1039/b800412a. Epub 2009 Jan 20.
Efficient chiroptical molecular redox switches have been engineered that display multiple stable optically active forms, chemically reversible redox processes, and highly sensitive chiroptical responses. Systems that have been studied in this context include electro-active organic polymers, redox-active coordination complexes, and certain organic compounds that may be oxidized or reduced reversibly. Studies in this field have yielded diverse platforms that benefit from dynamic stereochemical and electronic phenomena. This tutorial review introduces basic design criteria for chiroptical molecular switches, summarizes examples, and provides an outlook for future work in the area.
高效的手性光化学分子氧化还原开关已经被设计出来,它们具有多种稳定的光学活性形式、化学可逆的氧化还原过程以及高度灵敏的手性光化学响应。在这种背景下研究的体系包括电活性有机聚合物、氧化还原活性配位络合物以及某些可以可逆氧化或还原的有机化合物。该领域的研究已经产生了多种受益于动态立体化学和电子现象的平台。本教程综述介绍了手性光化学分子开关的基本设计标准,总结了实例,并对该领域未来的工作进行了展望。