紧身衣
深铬移
发色团
荧光
分子间力
材料科学
光化学
取代基
合理设计
发光
放松(心理学)
聚集诱导发射
氢键
量子产额
分子工程
化学物理
结构异构体
光致发光
超分子化学
分子间相互作用
背景(考古学)
激子
非共价相互作用
卤素
超分子组装
荧光团
设计要素和原则
纳米技术
作者
Tim Patten,Sebastian H. Röttger,Peter G. Jones,Daniel B Werz,Anna Krawczuk
标识
DOI:10.1002/adom.202502067
摘要
Abstract Understanding how molecular packing governs solid‐state fluorescence is key to unlocking new emissive materials. A comprehensive study of BODIPY derivatives with diverse substitution patterns is presented, showing how these modifications govern intermolecular interactions, packing motifs, and ultimately photophysical behavior in the solid state. Substituent effects dictate whether π–π stacking, hydrogen bonding, or halogen interactions dominate, resulting in distinct emission shifts and variations in fluorescence quantum yield. While increased chromophore overlap often leads to bathochromic emission, it also correlates with reduced quantum efficiency because of enhanced non‐radiative relaxation processes. Notably, compounds with similar degrees of overlap can exhibit different emission profiles, underscoring the pivotal role of substituent‐controlled packing. These insights provide a foundation for rational design of solid‐state luminescent materials based on BODIPY scaffolds.
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