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首页> 外文期刊>Angewandte Chemie >Luminescent Carbon Nanodots: Emergent Nanolights
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Luminescent Carbon Nanodots: Emergent Nanolights

机译:发光碳纳米点:新兴的纳米光

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摘要

Similar to its popular older cousins the fullerene, the carbon nano-tube, and graphene, the latest form of nanocarbon, the carbon nanodot, is inspiring intensive research efforts in its own right. These surface-passivated carbonaceous quantum dots, so-called C-dots, combine several favorable attributes of traditional semiconductor-based quantum dots (namely, size- and wavelength-dependent luminescence emission, resistance to photobleaching, ease of bioconju-gation) without incurring the burden of intrinsic toxicity or elemental scarcity and without the need for stringent, intricate, tedious, costly, or inefficient preparation steps. C-dots can be produced inexpensively and on a large scale (frequently using a one-step pathway and potentially from biomass waste-derived sources) by many approaches, ranging from simple candle burning to in situ dehydration reactions to laser ablation methods. In this Review, we summarize recent advances in the synthesis and characterization of C-dots. We also speculate on their future and discuss potential developments for their use in energy conversion/storage, bioimaging, drug delivery, sensors, diagnostics, and composites.
机译:类似于其流行的表亲,富勒烯,碳纳米管和石墨烯,最新形式的纳米碳,即碳纳米点,本身就激发了深入的研究工作。这些表面钝化的碳质量子点,即所谓的C点,结合了传统的基于半导体的量子点的几个有利属性(即,与尺寸和波长有关的发光,抗光漂白,易于生物共轭)内在毒性或元素稀缺性的负担,无需严格,复杂,繁琐,昂贵或效率低下的制备步骤。碳点可以通过许多方法廉价地大规模生产(经常使用一步式途径,并有可能来自生物质废物的来源),其方法从简单的蜡烛燃烧到原位脱水反应再到激光烧蚀方法。在这篇综述中,我们总结了碳点合成和表征方面的最新进展。我们还推测了它们的未来,并讨论了它们在能量转换/存储,生物成像,药物输送,传感器,诊断和复合材料方面的潜在发展。

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