Department of Physics, The University of Texas at Arlington, Arlington, TX 76019-0059, USA.
Nanotechnology. 2016 Aug 5;27(31):315602. doi: 10.1088/0957-4484/27/31/315602. Epub 2016 Jun 27.
Silver and cobalt co-doped ZnS (ZnS:Ag,Co) water-soluble afterglow nanoparticles were synthesized using a wet chemistry method followed by aging at room temperature. The nanoparticles had a cubic zinc blende structure with average sizes of approximately 4 nm and emitted a blue fluorescence emission centered at 441 nm due to radiative transitions from surface defects to Ag(+) luminescent centers. Intense afterglow emission peaking at 475 nm from the obtained nanoparticles was observed and was red-shifted compared to the fluorescence emission peak. X-ray photoelectron spectroscopy revealed a large increase of O/S ratio, indicating a surface oxidation process during aging. The S vacancies produced accordingly may contribute to form more electron traps and enhance afterglow. The ZnS:Ag,Co afterglow nanoparticles have a very low dark-toxicity and are applied as a light source for photodynamic therapy activation by conjugating with protoporphyrin together. Our preliminary study has shown that the ZnS:Ag,Co afterglow nanoparticles can significantly reduce the x-ray dosage used in activation and thus may be a very promising candidate for future x-ray excited photodynamic therapy in deep cancer treatment.
采用湿化学法合成了银和钴共掺杂的 ZnS(ZnS:Ag,Co)水溶性长余辉纳米粒子,然后在室温下陈化。纳米粒子具有立方闪锌矿结构,平均尺寸约为 4nm,由于表面缺陷到 Ag(+)发光中心的辐射跃迁,发出中心位于 441nm 的蓝色荧光发射。观察到从所得纳米粒子中发出的强度高达 475nm 的强余辉发射,并与荧光发射峰相比发生红移。X 射线光电子能谱表明 O/S 比大幅增加,表明在陈化过程中存在表面氧化过程。相应产生的 S 空位可能有助于形成更多的电子陷阱并增强余辉。ZnS:Ag,Co 长余辉纳米粒子具有非常低的暗毒性,并与原卟啉一起用作光动力治疗激活的光源。我们的初步研究表明,ZnS:Ag,Co 长余辉纳米粒子可以显著降低激活过程中使用的 X 射线剂量,因此可能是未来深部癌症 X 射线激发光动力治疗的非常有前途的候选物。