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Achieving room temperature phosphorescence in aqueous phase through rigidifying the triplet state and information encryption

机译:通过符合三重态状态和信息加密实现水相的室温磷光

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摘要

Room temperature phosphorescence materials show promising prospect in various fields, howbeit, it is difficult to overcome their unstable triplet state originated from dissolved oxygen, resulting in the challengeable synthesis of water-resistance room temperature phosphorescence materials. Here, we raised a facile strategy to originally prepare one kind of carbon dots (CDs) with blue fluorescence, and their phosphorescence with a high quantum yield of 23% is further activated in aqueous environment by forming the hydrogen bonds mediated complex between carbon dots and cyanuric acid (CA-CDs). Importantly, the bridge-like hydrogen bonds not only ensure the rigidify of the triplet state of CDs but also isolate oxygen, thus facilitating a small energy gap of 0.44 eV between the singlet and triplet states of CA-CDs, which provided the evidence for understanding the RTP appearing by another innovative way. Relying on their dual-emission behavior, the current RTP CA-CDs were successfully applied for the fingerprint recognition and advanced information encryption.
机译:室温磷光材料在各种田地中显示有前景的前景,难以克服源自溶解氧的不稳定三重态,导致耐耐水室温磷光材料的可敏致力合成。在这里,我们提出了一种容易的策略来最初用蓝色荧光制备一种碳点(CDS),并且通过在碳点和碳点之间形成介导的络合物,它们在水性环境中进一步活化了高量子收率的磷光。氰尿酸(CA-CDS)。重要的是,桥状氢键不仅可以确保CD的三重态状态的刚性,而且分离氧气,从而促进了CA-CD的单态和三重态之间的0.44eV的小能量隙,这提供了理解的证据RTP被另一种创新方式出现。依靠其双重发射行为,目前的RTP CA-CD已成功应用于指纹识别和高级信息加密。

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