National and Local Joint Engineering Research Center of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, P. R. China.
Nanoscale. 2018 Jul 19;10(28):13617-13625. doi: 10.1039/c8nr02500b.
We reported a facile and robust method for the synthesis of highly monodisperse EuSe nanocubes (EuSe NCs) with controllable edge lengths in the range of 8-70 nm. The EuSe NCs were formed through the aggregation of EuSe small particles (cores) and then their surface reconstruction under the influence of 1-dodecanethiol (DDT) that acted as a capping surfactant. DDT was not only found to be critical to the nucleation temperature of preparing EuSe NCs, but also played a decisive role in the formation of structurally well-defined nanocubes. The results indicated that the remarkable monodispersity and high shape consistency of EuSe NCs were highly controlled by the change in the DDT concentration. Furthermore, the size-dependent optical/magnetic properties based on the quantum size effect and the influence of edge lengths of EuSe NCs were also investigated and discussed. More importantly, the electrochemiluminescence (ECL) performance of EuSe NCs was first reported. This will make possible more biomedical applications in future.
我们报道了一种简便而稳健的方法,用于合成具有可控边长(8-70nm)的高单分散性 EuSe 纳米立方体(EuSe NCs)。EuSe NCs 通过 EuSe 小颗粒(核)的聚集,然后在作为封端表面活性剂的 1-十二硫醇(DDT)的影响下进行表面重构形成。DDT 不仅对制备 EuSe NCs 的成核温度至关重要,而且对结构上定义良好的纳米立方体的形成也起着决定性的作用。结果表明,EuSe NCs 的显著单分散性和高形状一致性可以通过 DDT 浓度的变化来高度控制。此外,还研究和讨论了基于量子尺寸效应和 EuSe NCs 边长影响的尺寸依赖性光学/磁性特性。更重要的是,首次报道了 EuSe NCs 的电化学发光(ECL)性能。这将使未来在更多的生物医学应用中成为可能。