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Multifunctional role of carbon dot-based polymer nanocomposites in biomedical applications: a review

机译:碳点基聚合物纳米复合材料在生物医学应用中的多功能作用研究进展

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摘要

Abstract Carbon-based 0D materials have shown tremendous potential in the development of biomedical applications of the next generation. The astounding results are primarily motivated by their distinctive nanoarchitecture and unique properties. Integrating these properties of 0D carbon nanomaterials into various polymer systems has orchestrated exceptional potential for their use in the development of sustainable and cutting-edge biomedical applications such as biosensors, bioimaging, biomimetic implants and many more. Specifically, carbon dots (CDs) have gained much attention in the development of biomedical devices due to their optoelectronic properties and scope of band manipulation upon surface revamping. The role of CDs in reinforcing various polymeric systems has been reviewed along with discussing unifying concepts of their mechanistic aspects. The study also discussed CDs optical properties via the quantum confinement effect and band gap transition which is further useful in various biomedical application studies.Graphical Abstract
机译:摘要 碳基0D材料在下一代生物医学应用的发展中显示出巨大的潜力。令人震惊的结果主要是由其独特的纳米结构和独特的特性推动的。将0D碳纳米材料的这些特性整合到各种聚合物系统中,为它们在开发可持续和尖端的生物医学应用(如生物传感器、生物成像、仿生植入物等)方面具有巨大的潜力。具体而言,碳点(CD)因其光电特性和表面改造后的能带调控范围而在生物医学器件的发展中备受关注。本文回顾了CD在增强各种聚合物体系中的作用,并讨论了其机理方面的统一概念。该研究还通过量子约束效应和带隙跃迁讨论了CDs的光学特性,这在各种生物医学应用研究中具有进一步的用途。图形摘要

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