Kanungo Shweta, Gupta Neeta, Rawat Reena, Jain Bhawana, Solanki Aruna, Panday Ashutosh, Das P, Ganguly S
Department of Engineering Science and Humanities, Indore Institute of Science and Technology, Indore 452001, Madhya Pradesh, India.
Department of Chemistry, Govt. E. Raghavendra Rao P. G. Science College, Bilaspur 495001, Chhattisgarh, India.
J Funct Biomater. 2023 Mar 20;14(3):166. doi: 10.3390/jfb14030166.
Hydrogels have emerged as important soft materials with numerous applications in fields including biomedicine, biomimetic smart materials, and electrochemistry. Because of their outstanding photo-physical properties and prolonged colloidal stability, the serendipitous findings of carbon quantum dots (CQDs) have introduced a new topic of investigation for materials scientists. CQDs confined polymeric hydrogel nanocomposites have emerged as novel materials with integrated properties of the individual constituents, resulting in vital uses in the realm of soft nanomaterials. Immobilizing CQDs within hydrogels has been shown to be a smart tactic for preventing the aggregation-caused quenching effect and also for manipulating the characteristics of hydrogels and introducing new properties. The combination of these two very different types of materials results in not only structural diversity but also significant improvements in many property aspects, leading to novel multifunctional materials. This review covers the synthesis of doped CQDs, different fabrication techniques for nanostructured materials made of CQDs and polymers, as well as their applications in sustained drug delivery. Finally, a brief overview of the present market and future perspectives are discussed.
水凝胶已成为重要的软材料,在生物医学、仿生智能材料和电化学等领域有众多应用。由于其出色的光物理性质和延长的胶体稳定性,碳量子点(CQD)的意外发现为材料科学家引入了一个新的研究课题。受限在聚合物水凝胶中的碳量子点纳米复合材料已成为具有各组分综合性能的新型材料,在软纳米材料领域有重要用途。将碳量子点固定在水凝胶中已被证明是一种明智的策略,可防止聚集导致的猝灭效应,还可控制水凝胶的特性并引入新特性。这两种截然不同的材料的结合不仅导致结构多样性,而且在许多性能方面有显著改善,从而产生新型多功能材料。本综述涵盖了掺杂碳量子点的合成、由碳量子点和聚合物制成的纳米结构材料的不同制备技术,以及它们在持续药物递送中的应用。最后,对当前市场和未来前景进行了简要概述。