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Ultralong room temperature phosphorescence from amorphous organic materials toward confidential information encryption and decryption

机译:从非晶有机材料到机密信息加密和解密的超长室温磷光

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Ultralong room temperature phosphorescence (URTP) emitted from pure amorphous organic molecules is very rare. Although a few crystalline organic molecules could realize URTP with long lifetimes (>100 ms), practical applications of these crystalline organic phosphors are still challenging because the formation and maintenance of high-quality crystals are very difficult and complicated. Herein, we present a rational design for minimizing the vibrational dissipation of pure amorphous organic molecules to achieve URTP. By using this strategy, a series of URTP films with long lifetimes and high phosphorescent quantum yields (up to 0.75 s and 11.23%, respectively) were obtained from amorphous organic phosphors without visible fluorescence and phosphorescence under ambient conditions. On the basis of the unique features of URTP films, a new green screen printing technology without using any ink was developed toward confidential information encryption and decryption. This work presents a breakthrough strategy in applying amorphous organic materials for URTP.
机译:从纯无定形有机分子发出的超长室温磷光(URTP)非常罕见。尽管少数晶体有机分子可以实现长寿命(> 100 ms)的URTP,但是这些晶体有机磷光体的实际应用仍然具有挑战性,因为高质量晶体的形成和维护非常困难且复杂。在这里,我们提出了一个合理的设计,以最小化纯无定形有机分子的振动耗散以实现URTP。通过使用这种策略,从无定形有机磷光体获得了一系列具有长寿命和高磷光量子产率(分别高达0.75 s和11.23%)的URTP膜,在环境条件下没有可见的荧光和磷光。根据URTP胶片的独特功能,开发了一种不使用任何墨水的新型绿丝网印刷技术,用于机密信息的加密和解密。这项工作提出了将无定形有机材料应用于URTP的突破性策略。

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