论文标题
来自CS $ _4 $ pbbr $ _6 $ Crystal的CSPBBR3纳米结构产生的抗螺旋发光
Anti-Stokes Photoluminescence from CsPbBr3 Nanostructures Embedded in a Cs$_4$PbBr$_6$ Crystal
论文作者
论文摘要
铅卤化物钙钛矿具有高光致发光(PL)效率和较强的电子 - 光子相互作用,因此预计使用膨胀PL的光冷却。我们研究了绿色亮度CS $ _4 $ pbbr $ _6 $的反stokes pl,其起源可归因于嵌入CS $ _4 $ _4 $ pbbr $ _6 $ crystal的CSPBBR3纳米结构。由于透明度很高,折射率低和CS $ _4 $ pbbr $ _6 $的高稳定性,绿色PL显示出高的外部量子效率而无需拍照。时间分辨的PL光谱揭示了重组过程中的激子行为。 PL光谱的形状几乎与激发光子能无关,这意味着光谱宽度取决于均匀扩展。我们证明了声子辅助过程在室温下占主导地位的光吸收和抗烟药PL的Urbach尾巴。观察到抗螺旋体PL下降到70K。我们确定了Urbach能量的温度依赖性,并估计电子偶联的强度。我们的光谱数据表明,CSPBBR3纳米结构具有光冷却的潜在有用功能。
Lead halide perovskites possess high photoluminescence (PL) efficiency and strong electron-phonon interactions, and therefore the optical cooling using up-conversion PL has been expected. We investigate anti-Stokes PL from green-luminescent Cs$_4$PbBr$_6$, whose origin is attributable to CsPbBr3 nanostructures embedded in a Cs$_4$PbBr$_6$ crystal. Because of the high transparency, low refractive index, and high stability of Cs$_4$PbBr$_6$, the green PL displays high external quantum efficiency without photo-degradation. Time-resolved PL spectroscopy reveals the excitonic behaviors in recombination process. The shape of the PL spectrum is almost independent of excitation photon energy, which means that the spectral width is determined by homogeneous broadening. We demonstrate that the phonon-assisted process dominates the Urbach tail of optical absorption and anti-Stokes PL at room temperature. Anti-Stokes PL is observed down to 70 K. We determine the temperature dependence of the Urbach energy and estimate the strength of the electron-phonon coupling. Our spectroscopic data show that CsPbBr3 nanostructures have potentially useful features for optical cooling.