Key Laboratory for Thin Film and Microfabrication of Ministry of Education, Department of Micro/Nano Electronics, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong University, Shanghai 200240, People's Republic of China.
Nanotechnology. 2016 Sep 30;27(39):395706. doi: 10.1088/0957-4484/27/39/395706. Epub 2016 Aug 30.
Recently, carbon dots (CDs) have been playing an increasingly important role in industrial production and biomedical field because of their excellent properties. As such, finding an efficient method to quickly synthesize a large scale of relatively high purity CDs is of great interest. Herein, a facile and novel microwave method has been applied to prepare nitrogen doped CDs (N-doped CDs) within 8 min using L-glutamic acid as the sole reaction precursor in the solid phase condition. The as-prepared N-doped CDs with an average size of 1.64 nm are well dispersed in aqueous solution. The photoluminescence of N-doped CDs is pH-sensitive and excitation-dependent. The N-doped CDs show a strong blue fluorescence with relatively high fluorescent quantum yield of 41.2%, which remains stable even under high ionic strength. Since the surface is rich in oxygen-containing functional groups, N-doped CDs can be applied to selectively detect Fe(3+) with the limit of detection of 10(-5) M. In addition, they are also used for cellular bioimaging because of their high fluorescent intensity and nearly zero cytotoxicity. The solid-phase microwave method seems to be an effective strategy to rapidly obtain high quality N-doped CDs and expands their applications in ion detection and cellular bioimaging.
最近,由于碳点(CDs)具有优异的性能,在工业生产和生物医学领域发挥着越来越重要的作用。因此,寻找一种高效的方法来快速合成大规模、相对高纯度的 CDs 引起了极大的兴趣。在此,采用简便的微波法,以 L-谷氨酸为唯一反应前驱体,在固相条件下 8 分钟内快速合成了氮掺杂 CDs(N-doped CDs)。所制备的 N-doped CDs 的平均尺寸为 1.64nm,在水溶液中分散良好。N-doped CDs 的光致发光具有 pH 敏感性和激发依赖性。N-doped CDs 具有较强的蓝色荧光,荧光量子产率相对较高,为 41.2%,即使在高离子强度下也保持稳定。由于表面富含含氧官能团,N-doped CDs 可用于选择性检测 Fe(3+),检测限低至 10(-5) M。此外,由于其高荧光强度和几乎为零的细胞毒性,还可用于细胞生物成像。固相微波法似乎是一种快速获得高质量 N-doped CDs 的有效策略,并扩展了它们在离子检测和细胞生物成像中的应用。
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