Kumar Vijay Bhooshan, Porat Ze'ev, Gedanken Aharon
Bar-Ilan Institute for Nanotechnology and Advanced Materials, Department of Chemistry, Bar-Ilan University, Ramat-Gan 5290002, Israel.
Faculty of Life Sciences, Tel Aviv University, Tel Aviv 6997801, Israel.
Nanomaterials (Basel). 2022 Mar 8;12(6):898. doi: 10.3390/nano12060898.
Carbon dots (CDs) are a novel type of carbon-based nanomaterial that has gained considerable attention for their unique optical properties, including tunable fluorescence, stability against photobleaching and photoblinking, and strong fluorescence, which is attributed to a large number of organic functional groups (amino groups, hydroxyl, ketonic, ester, and carboxyl groups, etc.). In addition, they also demonstrate high stability and electron mobility. This article reviews the topic of doped CDs with organic and inorganic atoms and molecules. Such doping leads to their functionalization to obtain desired physical and chemical properties for biomedical applications. We have mainly highlighted modification techniques, including doping, polymer capping, surface functionalization, nanocomposite and core-shell structures, which are aimed at their applications to the biomedical field, such as bioimaging, bio-sensor applications, neuron tissue engineering, drug delivery and cancer therapy. Finally, we discuss the key challenges to be addressed, the future directions of research, and the possibilities of a complete hybrid format of CD-based materials.
碳点(CDs)是一种新型的碳基纳米材料,因其独特的光学性质而备受关注,这些性质包括可调谐荧光、抗光漂白和光闪烁稳定性以及强荧光,这归因于大量的有机官能团(氨基、羟基、酮基、酯基和羧基等)。此外,它们还具有高稳定性和电子迁移率。本文综述了用有机和无机原子及分子掺杂碳点的主题。这种掺杂导致它们功能化,以获得生物医学应用所需的物理和化学性质。我们主要强调了修饰技术,包括掺杂、聚合物封端、表面功能化、纳米复合材料和核壳结构,这些技术旨在将其应用于生物医学领域,如生物成像、生物传感器应用、神经组织工程、药物递送和癌症治疗。最后,我们讨论了需要解决的关键挑战、未来的研究方向以及基于碳点材料完全混合形式的可能性。