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Graphitic carbon nitride-based nanocomposites and their biological applications: a review

机译:石墨碳氮纳米复合材料其生物应用程序:一个回顾

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摘要

Quantum dots (QDs) have extensive application prospects in the fields of optics, magnetism, catalysis, and biomedicine. New carbon-doped QDs are currently being used in these research fields. Graphitic carbon nitride QDs (g-CNs) composed of only carbon and nitrogen have attracted attention because of their unique optical and catalytic properties. g-CNs have numerous electronic properties and can be used as photocatalytic modifiers in a wide range of applications in electrochemistry. Additionally, g-CNs also have biological potential and due to their chemical composition have extremely low toxicity; their blue light emission can be applied to biological imaging, and their appropriate energy level (2.7 eV) allows electrons to be deposited on their surface, which allows g-CNs to be used as photosensitizers in optical therapy. Finally, g-CNs can be combined with other nanomaterials to form composite materials, which can result in new advantages not seen in either of the materials alone. In this manuscript, we thoroughly report the most recent findings regarding the synthesis of g-CNs and their respective properties. We report the advantages of g-CNs conferred by their unique properties and their advantages for application in current biology and medicines.
机译:量子点(量子点)有广泛的应用前景领域的光学、磁性催化和生物医学。在这些研究目前正在使用字段。只有碳和氮组成因为他们独特的吸引了大家的注意光学和催化特性。众多的电子属性和可以用作光催化在广泛的修饰符在电化学中的应用。g-CNs潜力也有生物,由于他们的化学成分极低毒性;应用于生物成像,和他们的合适的能级(2.7 eV)允许电子沉积在其表面,允许g-CNs作为敏化光治疗。与其它纳米材料形成复合材料材料,这可能会导致新的优势在单独的材料。手稿,我们彻底最近的报告关于g-CNs的合成和发现各自的属性。g-CNs赋予的独特优势应用程序属性及其优势在当代生物学和药物。

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