On December 9, 2021, Wu, Minjian; Wang, Xuepu; Pan, Yingtong; Li, Jiuyang; Li, Xun; Sun, Yan; Zou, Yunlong; Zhang, Hefeng; Zhang, Kaka published an article.Application In Synthesis of Phenyl Salicylate The title of the article was Two-Component Design Strategy: Achieving Intense Organic Afterglow and Diverse Functions in Coronene-Matrix Systems. And the article contained the following:
A two-component design strategy developed by us and other research groups, where a second component is used to control the triplet excited state properties of the luminescent component (the first component), has been shown to allow a flexible choice of building blocks to prepare high-performance afterglow materials with intriguing properties. Here, we report the realization of intense organic afterglow and diverse functions by extending this two-component strategy to dopant-matrix systems, which feature small kF, small kP, and very small knr + kq. With coronene mols. and deuterated coronene being fixed as luminescent dopants, variation of organic matrixes reveals that either small-mol. organic matrixes or polymeric matrixes can be used to accommodate coronene mols. and largely reduce knr + kq values, leading to the emergence of very bright organic afterglow at ambient conditions. The obtained coronene-matrix materials have been found to be readily processed into desired shapes, large-area thin films, and aqueous afterglow dispersions by melt casting and other techniques, function as efficient afterglow donors for the fabrication of red afterglow materials, and exhibit promising time-gated bioimaging functionality to avoid interference from strong fluorescence backgrounds. The experimental process involved the reaction of Phenyl Salicylate(cas: 118-55-8).Application In Synthesis of Phenyl Salicylate
The Article related to organic afterglow coronene matrix system, Optical, Electron, and Mass Spectroscopy and Other Related Properties: Spectrometers and Optical Apparatus and other aspects.Application In Synthesis of Phenyl Salicylate
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