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首页> 外文期刊>Angewandte Chemie >Facile, Quick, and Gram-Scale Synthesis of Ultralong-Lifetime Room-Temperature-Phosphorescent Carbon Dots by Microwave Irradiation
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Facile, Quick, and Gram-Scale Synthesis of Ultralong-Lifetime Room-Temperature-Phosphorescent Carbon Dots by Microwave Irradiation

机译:通过微波辐射进行轻度,快速,革兰克级合成超长寿命室温 - 磷光碳点

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摘要

Long-lifetime room-temperature phosphorescence (RTP) materials are important for many applications, but they are highly challenging materials owing to the spin-forbidden nature of triplet exciton transitions. Herein, a facile, quick and gram-scale method for the preparation of ultralong RTP (URTP) carbon dots (CDs) was developed via microwave-assisted heating of ethanolamine and phosphoric acid aqueous solution. The CDs exhibit the longest RTP lifetime, 1.46s (more than 10s to naked eye) for CDs-based materials to date. The doping of N and P elements is critical for the URTP which is considered to be favored by a n -pi* transition facilitating intersystem crossing (ISC) for effectively populating triplet excitons. In addition, possibilities of formation of hydrogen bonds in the interior of the CDs may also play a significant role in producing RTP. Potential applications of the URTP CDs in the fields of anti-counterfeiting and information protection are proposed and demonstrated.
机译:长寿命室温磷光(RTP)材料对于许多应用很重要,但由于Triplet Exciton转换的旋转禁止性质,它们是高度挑战的材料。 在此,通过微波辅助加热乙醇胺和磷酸水溶液,开发了用于制备超朗RTP(URTP)碳点(CDS)的容易,快速革兰氏型方法。 CDS迄今为止,CDS表现出最长的RTP寿命,1.46s(超过10岁以上)的CDS的材料。 N和P元素的掺杂对于URTP至关重要,该URTP被认为是由N - &GT的促进促进跨越式交叉(ISC)来有效地填充三重态激子的urtp。 此外,在CD的内部形成氢键的可能性也可能在产生RTP中起着重要作用。 提出并证明了URTP CD在防伪和信息保护领域的潜在应用。

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