Mukherjee Sanjoy, Thilagar Pakkirisamy
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore-560012, India.
Chem Commun (Camb). 2015 Jul 14;51(55):10988-1003. doi: 10.1039/c5cc03114a.
Luminescent organic materials have attracted significant attention in recent times owing to their opportunities in various functional applications. Interestingly, unlike fluorescence, opportunities hidden within the phosphorescence properties of organic compounds have received considerably less attention even until last few years. It is only in the second decade of the 21st century, within a time span of less than last 5 years, that the concepts and prospects of organic compounds as phosphorescent materials have evolved rapidly. The previously perceived limitations of organic compounds as phosphorescent materials have been overcome and several molecules have been designed using old and new concepts, such as heavy atom effects, matrix assisted isolation, hydrogen bonding and halogen bonding, thereby gaining access to a significant number of materials with efficient phosphorescent features. In addition, significant improvements have been made in the development of RTP (room temperature phosphorescent) materials, which can be used under ambient conditions. In this review, we bring together the vastly different approaches developed by various researchers to understand and appreciate this recent revolution in organic luminescent materials.
近年来,发光有机材料因其在各种功能应用中的潜力而备受关注。有趣的是,与荧光不同,即使直到最近几年,有机化合物磷光特性中隐藏的潜力也受到的关注要少得多。直到21世纪第二个十年,在不到过去5年的时间跨度内,有机化合物作为磷光材料的概念和前景才迅速发展。有机化合物作为磷光材料以前被认为的局限性已经被克服,并且已经使用重原子效应、基质辅助隔离、氢键和卤键等新旧概念设计了几种分子,从而获得了大量具有高效磷光特性的材料。此外,在室温磷光(RTP)材料的开发方面也取得了重大进展,这种材料可以在环境条件下使用。在这篇综述中,我们汇集了不同研究人员开发的截然不同的方法,以理解和欣赏有机发光材料领域的这一最新变革。