Bazazi Sina, Hashemi Esmaeil, Mohammadjavadi Mahdi, Saeb Mohammad Reza, Liu Yuqian, Huang Yang, Xiao Huining, Seidi Farzad
Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources and International Innovation Center for Forest Chemicals and Materials, Nanjing Forestry University, Nanjing 210037, China.
Department of Chemistry, Faculty of Science, University of Guilan, PO Box 41335-1914, Rasht, Iran.
Adv Colloid Interface Sci. 2024 Jun;328:103178. doi: 10.1016/j.cis.2024.103178. Epub 2024 May 8.
Developing new hybrid materials is critical for addressing the current needs of the world in various fields, such as energy, sensing, health, hygiene, and others. C-dots are a member of the carbon nanomaterial family with numerous applications. Aggregation is one of the barriers to the performance of C-dots, which causes luminescence quenching, surface area decreases, etc. To improve the performance of C-dots, numerous matrices including metal-organic frameworks (MOFs), covalent-organic frameworks (COFs), and polymers have been composited with C-dots. The porous crystalline structures, which are constituents of metal nodes and organic linkers (MOFs) or covalently attached organic units (COFs) provide privileged features such as high specific surface area, tunable structures, and pore diameters, modifiable surface, high thermal, mechanical, and chemical stabilities. Also, the MOFs and COFs protect the C-dots from the environment. Therefore, MOF/C-dots and COF/C-dots composites combine their features while retaining topological properties and improving performances. In this review, we first compare MOFs with COFs as matrices for C-dots. Then, the recent progress in developing hybrid MOFs/C-dots and COFs/C-dots composites has been discussed and their applications in various fields have been explained briefly.
开发新型杂化材料对于满足当今世界在能源、传感、健康、卫生等各个领域的需求至关重要。碳点是碳纳米材料家族的一员,具有众多应用。团聚是影响碳点性能的障碍之一,会导致发光猝灭、表面积减小等问题。为了提高碳点的性能,包括金属有机框架(MOF)、共价有机框架(COF)和聚合物在内的众多基质已与碳点复合。由金属节点和有机连接体(MOF)或共价连接的有机单元(COF)组成的多孔晶体结构具有诸如高比表面积、可调节结构和孔径、可修饰表面、高热稳定性、机械稳定性和化学稳定性等优势特性。此外,MOF和COF可保护碳点免受环境影响。因此,MOF/碳点和COF/碳点复合材料结合了它们的特性,同时保留了拓扑性质并提高了性能。在这篇综述中,我们首先将MOF与COF作为碳点的基质进行比较。然后,讨论了开发杂化MOF/碳点和COF/碳点复合材料的最新进展,并简要解释了它们在各个领域的应用。