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Large-scale synthesis of N-doped carbon quantum dots and their phosphorescence properties in a polyurethane matrix

机译:大规模合成碳量子n型点和他们的磷光性质聚氨酯矩阵

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An easy, large-scale synthesis of N-doped carbon quantum dots (CQDs) was developed by using isophorone diisocyanate (IPDI) as a single carbon source under microwave irradiation. The yield of raw N-doped CQDs was about 83%, which is suitable for industrial-scale production. A detailed formation mechanism for N-doped CQDs involving self-polymerization and condensation of IPDI was demonstrated. Moreover, the obtained N-doped CQDs can be homogeneously dispersed in various organic monomers and do not need toxic organic solvents as dispersing agents. This advantage expands the range of applications of CQDs in composites. The N-doped CQDs dispersed in polyurethane (PU) matrixes emit not only fluorescence but also phosphorescence and delayed fluorescence at room temperature upon excitation with ultraviolet (UV) light. Furthermore, the phosphorescence of CQD/PU composites is sensitive to oxygen and therefore, the obtained-CQDs could be exploited in the development of novel oxygen sensors.
机译:一个简单的、大规模的合成n型碳量子点(cqd)是由使用异佛尔酮二异氰酸酯(IPDI)为一个单一的碳在微波辐照来源。生的n型cqd约83%,这是合适的工业规模的生产。形成机制为n型cqd涉及self-polymerization和IPDI凝结演示。可以均匀分散在各种有机吗单体和不需要有毒有机溶剂作为分散剂。cqd在复合材料中的应用。n型cqd分散在聚氨酯(PU)矩阵排放不仅荧光也磷光和延迟荧光的房间温度在激发紫外线(UV)光。复合材料对氧敏感,因此,obtained-CQDs可以被利用的氧气传感器的新发展。

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