Institute of New Energy Technology, Ningbo Institute of Industrial Technology, Chinese Academy of Sciences, Ningbo, 315201, People's Republic of China.
State Key Laboratory of Heavy Oil Processing, College of Science, China University of Petroleum, Beijing, 102249, People's Republic of China.
Mikrochim Acta. 2018 Jan 4;185(1):83. doi: 10.1007/s00604-017-2544-1.
The authors describe strongly red-emitting carbon dots (CDs) which were obtained via microwave synthesis using phenylenediamine as the carbon source. The structural and optical properties of the resultant CDs are studied in some detail. The CDs possess (a) longwave emission (peaking at 620 nm under 470 nm excitation), (b) a quantum yield of ~15%, (c) a size of typically 3.8 nm; and (d) good photostability. The CDs have a pH-dependet response that covers the pH 5 to 10 range, and their fluorescence is quenched by ferric ions. The CDs can detect ferric ions in aqueous samples in the 0 to 30 μM concentration range with a lower detection limit of 15 nM. The CDs were also used to image pH values and ferric ions in E. coli bacteria. Graphical abstract The red-emitting carbon dots with high stability are synthesized which show dual response to pH-values and ferric ions in aqueous solution and biological media simultaneously.
作者描述了一种通过微波合成法使用苯二胺作为碳源得到的强红光发射碳点(CDs)。详细研究了所得 CDs 的结构和光学性质。这些 CDs 具有:(a)长波长发射(在 470nm 激发下峰值为 620nm);(b)~15%的量子产率;(c)典型尺寸为 3.8nm;以及(d)良好的光稳定性。CDs 具有 pH 依赖性响应,覆盖 pH 5 至 10 范围,其荧光被三价铁离子猝灭。CDs 可在 0 至 30μM 浓度范围内检测水溶液中的三价铁离子,检测限低至 15nM。这些 CD 还用于在大肠杆菌中成像 pH 值和三价铁离子。
图摘要 高稳定性的红光发射碳点被合成,该碳点在水溶液和生物介质中同时对 pH 值和三价铁离子表现出双重响应。