State Key Laboratory of Superhard Materials, Jilin University, Changchun, 130012, P. R. China.
Nanoscale. 2015 May 21;7(19):8835-42. doi: 10.1039/c4nr07589g.
Two-dimensional (2D) colloidal anisotropic CdSe nanoplatelets (NPLs) have attracted a great deal of attraction within recent years. Their strong thickness-dependent absorption and emission spectra exhibit significant differences from those of other shaped CdSe nanocrystals (NCs) due to a unique atomically flat morphology. Based on their dielectric confinement effect and the large confinement energy, the 2D CdSe NPLs exhibit the best characteristics of optical and electronic properties as compared to the other CdSe nanocrystallite ensembles. Here, we systematically investigate the in situ high-pressure photoluminescence (PL), absorption, and time-resolved PL spectroscopy of CdSe NPLs with different thicknesses. The pressure-dependent optical behaviors of these NPLs exhibit several remarkable differences compared with those of other shaped CdSe NCs such as a higher phase transition pressure, irreversible PL and absorption spectra after the release of pressure, a narrower tunable range of absorption and PL peak energies, and minor changes in the ranges of PL decay time with increasing pressure. These phenomena and results are attributed to their unique geometric shape and distinctive soft ligand bonding on the surface.
二维(2D)胶体各向异性 CdSe 纳米板(NPL)近年来引起了极大的关注。由于独特的原子平坦形态,它们的强厚度依赖吸收和发射光谱与其他形状的 CdSe 纳米晶体(NC)表现出显著的差异。基于其介电限制效应和大的限制能量,与其他 CdSe 纳米晶集合体相比,2D CdSe NPL 表现出最佳的光学和电子特性。在这里,我们系统地研究了不同厚度的 CdSe NPL 的原位高压光致发光(PL)、吸收和时间分辨 PL 光谱。与其他形状的 CdSe NC 相比,这些 NPL 的压力依赖性光学行为表现出几个显著的差异,例如更高的相变压力、压力释放后不可逆的 PL 和吸收光谱、吸收和 PL 峰能量可调范围更窄以及 PL 衰减时间随压力增加的变化较小。这些现象和结果归因于它们独特的几何形状和表面上独特的软配体键合。