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用于防伪和信息加密的可见光激发碳点荧光粉 - 氧化铝杂化物的合成

Synthesis of Visible Light Excitable Carbon Dot Phosphor-Al O Hybrids for Anti-Counterfeiting and Information Encryption.

作者信息

Lu Dong, Lu Ke, Wen Hong-Tao, Wei Zhan, Bianco Alberto, Wang Gui-Gen, Zhang Hua-Yu

机构信息

Shenzhen Key Laboratory for Advanced Materials, School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen, 518055, P. R. China.

CNRS, Immunology, Immunopathology and Therapeutic Chemistry, UPR 3572, University of Strasbourg, ISIS, Strasbourg, 67000, France.

出版信息

Small. 2023 Aug;19(31):e2207046. doi: 10.1002/smll.202207046. Epub 2023 Mar 24.

Abstract

The preparation of room temperature phosphorescent carbon dots still faces great challenges, especially in the case of carbon dots endowed of visible-light excitable room temperature phosphorescence (RTP). To date, a limited number of substrates have been exploited to synthesize room temperature phosphorescent carbon dots, and most of them can emit RTP only in solid state. Here, the synthesis of a composite obtained from the calcination of green carbon dots (g-CDs) blended with aluminum hydroxide (Al(OH) ) is reported. The resultant hybrid material g-CDs@Al O exhibits blue fluorescence and green RTP emissions in an on/off switch process at 365 nm. Notably, this composite manifests strong resistance to extreme acid and basic conditions up to 30 days of treatment. The dense structure of Al O formed by calcination contributes to the phosphorescent emission of g-CDs. Surprisingly, g-CDs@Al O can also emit yellow RTP under irradiation with white light. The multicolor emissions can be employed for anti-counterfeiting and information encryption. This work provides a straightforward approach to produce room temperature phosphorescent carbon dots for a wide range of applications.

摘要

室温磷光碳点的制备仍然面临巨大挑战,特别是对于具有可见光激发室温磷光(RTP)的碳点而言。迄今为止,用于合成室温磷光碳点的底物数量有限,并且它们中的大多数仅在固态下才能发射RTP。在此,报道了通过煅烧与氢氧化铝(Al(OH)₃)混合的绿色碳点(g-CDs)获得的复合材料的合成。所得的杂化材料g-CDs@Al₂O₃在365 nm处的开/关切换过程中表现出蓝色荧光和绿色RTP发射。值得注意的是,这种复合材料在长达30天的处理过程中对极端酸性和碱性条件表现出很强的耐受性。煅烧形成的Al₂O₃致密结构有助于g-CDs的磷光发射。令人惊讶的是,g-CDs@Al₂O₃在白光照射下也能发射黄色RTP。这种多色发射可用于防伪和信息加密。这项工作提供了一种直接的方法来生产用于广泛应用的室温磷光碳点。

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