Lei Xiaoxue, Fu Yiying, Wu Yuan, Chen Lu, Liang Jiangong
College of Science, Huazhong Agricultural University, Wuhan 430070, People's Republic of China.
R Soc Open Sci. 2020 Jul 22;7(7):200482. doi: 10.1098/rsos.200482. eCollection 2020 Jul.
In this study, a novel ratiometric fluorescent nanoprobe for pH monitoring has been developed by synthesizing red fluorescent AgS quantum dots (AgS QDs) and green fluorescent carbon dots (CDs) nanohybrids (AgS CDs) in one pot using CDs as templates. The nanoprobe exhibits dual-emission peaks at 500 and 670 nm under a single-excitation wavelength of 450 nm. The red fluorescence can be selectively quenched by increasing pH, while the green fluorescence is an internal reference. Therefore, the change of the relative fluorescence intensity (I/I) in the ratiometric AgS CDs probes can be used for pH sensing. The results revealed that I/I of AgS CDs probes was linearly related to pH variation between pH 5.4 and 6.8. Meanwhile, the AgS CDs probes possessed a good reversibility along with pH changing between 5.0 and 7.0 without any interruption from common metal ions, proteins and other interferences.
在本研究中,通过以碳点(CDs)为模板一锅法合成红色荧光硫化银量子点(AgS QDs)和绿色荧光碳点(CDs)纳米杂化物(AgS CDs),开发了一种用于pH监测的新型比率荧光纳米探针。该纳米探针在450 nm的单激发波长下在500和670 nm处呈现双发射峰。随着pH值升高,红色荧光可被选择性猝灭,而绿色荧光作为内参。因此,比率型AgS CDs探针中相对荧光强度(I/I)的变化可用于pH传感。结果表明,AgS CDs探针的I/I与pH值在5.4至6.8之间的变化呈线性关系。同时,AgS CDs探针在pH值在5.0至7.0之间变化时具有良好的可逆性,不受常见金属离子、蛋白质和其他干扰的影响。