石墨烯量子点制备的纳米复合材料:塑造生物医学进步的未来版图。

0 MATERIALS SCIENCE, MULTIDISCIPLINARY
Mohammad Suhaan Dar, Niroj Kumar Sahu
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引用次数: 0

摘要

石墨烯量子点(GQDs)是一类新开发的材料,被称为零维纳米材料,具有源自碳点(CDs)和石墨烯的特性。GQDs 具有多种理想特性,包括吸收入射能量的潜力、高水溶性、可调光致发光、良好的稳定性、高药物负载能力和显著的生物相容性,这些特性使其成为生物医学领域各种应用的有力工具。此外,GQDs 还可以与其他材料结合,开发出具有优异品质和丰富功能的纳米复合材料。受 GQDs 引人入胜的科学发现和对生物医学领域巨大贡献的启发,我们对基于 GQDs 的纳米复合材料在生物医学应用领域的最新进展进行了综述。综述首先概述了 GQDs 纳米复合材料的最新合成和分类,并介绍了它们在生物医学先进复合材料中的应用。此外,还强调了对基于 GQDs 的纳米复合材料在药物输送、生物传感、光热、光动力和组合疗法等生物医学应用的系统研究。最后,强调了各种可能性、挑战和途径,以鼓励开展更多研究,从而开发出新的疗法,改善全球医疗保健状况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Graphene quantum dot-crafted nanocomposites: shaping the future landscape of biomedical advances.

Graphene quantum dot-crafted nanocomposites: shaping the future landscape of biomedical advances.

Graphene quantum dots (GQDs) are a newly developed class of material, known as zero-dimensional nanomaterials, with characteristics derived from both carbon dots (CDs) and graphene. GQDs exhibit several ideal properties, including the potential to absorb incident energy, high water solubility, tunable photoluminescence, good stability, high drug-loading capacity, and notable biocompatibility, which make them powerful tools for various applications in the field of biomedicine. Additionally, GQDs can be incorporated with additional materials to develop nanocomposites with exceptional qualities and enriched functionalities. Inspired by the intriguing scientific discoveries and substantial contributions of GQDs to the field of biomedicine, we present a broad overview of recent advancements in GQDs-based nanocomposites for biomedical applications. The review first outlines the latest synthesis and classification of GQDs nanocomposite and enables their use in advanced composite materials for biomedicine. Furthermore, the systematic study of the biomedical applications for GQDs-based nanocomposites of drug delivery, biosensing, photothermal, photodynamic and combination therapies are emphasized. Finally, possibilities, challenges, and paths are highlighted to encourage additional research, which will lead to new therapeutics and global healthcare improvements.

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