材料科学
发光
宽带
纳米点
激发态
光电子学
封装(网络)
微波食品加热
金属
圆极化
纳米技术
光学
电信
原子物理学
物理
微带线
冶金
计算机网络
计算机科学
作者
Zhichen Zhang,Shaoling Jing,Zhi‐Gang Gu,Jian Zhang
标识
DOI:10.1002/adom.202500995
摘要
Abstract Developing high circularly polarized luminescence (CPL) with broadband excitation wavelengths is important in practical applications but is still challenging. Herein, the example combining chiral carbon nanodots (cCND) and metal‐organic framework (MOF) film is reported for achieving broadband excited CPL with UV–vis light excitation. The stable Zr‐MOF containing perylene‐based ligand with broadband excitation is prepared by using the vapor‐assisted conversion method, and then is loaded with chiral precursors and microwave‐treated to obtain cCND loaded MOF (cCND@MOF) films. The resulted host‐guest film not only in situ encapsulates uniform sized cCND into MOF film with microwave treatment, but also avoids the aggregation‐caused quenching effect of cCND and enhances the chiral/energy transfer from perylene based MOF film for achieving intense luminescence and high CPL with broadband excitation wavelengths from UV to visible region, and increased the g lum to 10 −2 . This study provides an efficient and convenient microwave‐assisted method for constructing host‐guest materials by loading cCND into MOFs, and develops broadband excited CPL film materials.
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