首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Long-wavelength, multicolor, and white-light emitting carbon-based dots: Achievements made, challenges remaining, and applications
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Long-wavelength, multicolor, and white-light emitting carbon-based dots: Achievements made, challenges remaining, and applications

机译:长波长,多色和白光发射碳的圆点:成就,剩余挑战和应用

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摘要

The use of carbon-based dots (C-bDs), involving carbon dots, carbon quantum dots, and graphene quantum dots, as a new class of photoluminescent nanomaterials is rapidly expanding. Their many advantages including water solubility, high stability, low toxicity, ease of functionalization, and cost-efficient and simple synthetic routes have introduced them as potential alternatives to conventional semiconductor-based quantum dots. However, difficulty in preparing long-wavelength and multicoloremitting C-bDs has caused some major disadvantages for these nanomaterials and limited their application in fields such as bioimaging and multicolor patterning. Although different emission colors from CbDs can be observed by varying their excitation wavelength, this is not identified as real photoluminescence tuning, and in fact, preparing C-bDs with such special photoluminescence properties has proven to be a challenging task.
机译:使用碳基点(C-BDS),涉及碳点,碳量子点和石墨烯量子点,作为新一类光致发光的纳米材料正在迅速扩展。 它们的许多优点包括水溶解度,高稳定性,低毒性,易官能化,以及成本效益,简单的合成路线已经将它们作为常规基于半导体的量子点的潜在替代品引入。 然而,在制备长波长和多色性C-BD方面难以对这些纳米材料引起的一些主要缺点,并限制了它们在诸如BioMimaging和多色图案的领域中的应用。 尽管通过改变其激发波长可以观察到来自CBD的不同发射颜色,但这没有被识别为真正的光致发光调谐,实际上,用这种特殊的光致发光性能制备C-BDS已经被证明是一个具有挑战性的任务。

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