National Laboratory for ultrafast and ultraintense optical Science INFM-CNR, Dipartimento di Fisica Politecnico di Milano, piazza L. Da Vinci 32, 20133 Milano, Italy.
Nanoscale. 2010 Jun;2(6):931-5. doi: 10.1039/b9nr00434c. Epub 2010 Feb 5.
Colloidal semiconductor quantum rods have demonstrated many advantageous properties as light emitters such as high quantum yield, tunable emission wavelength, and polarized emission. This makes them an interesting optical gain material for laser applications. We report room-temperature gain lifetimes in core/shell CdSe/CdS quantum rods exceeding 300 ps, and show that the long gain lifetimes result from the significant reduction of Auger recombination in our quantum rods, even though the electrons are delocalized over the rod volume. We also fabricate devices by deposition of small droplets of quantum rod solution onto flat substrates. The evaporation dynamics of the droplets are governed by the coffee stain effect which leads to the formation of well defined micron-size stripes. These stripes consist of densely packed, laterally aligned quantum rods and provide optical feedback originating from the abrupt changes of refractive index at the stripe borders. We exploit the optical gain and the coffee stain mediated self-assembly and show that we can fabricate novel microlasers solely by deposition of droplets of quantum rod solutions on flat substrates.
胶体半导体量子棒作为发光体具有许多优势,如高量子产率、可调发射波长和偏振发射。这使得它们成为激光应用中一种有趣的光学增益材料。我们报告了核/壳 CdSe/CdS 量子棒在室温下的增益寿命超过 300ps,并表明长增益寿命是由于我们的量子棒中俄歇复合的显著减少所致,尽管电子在棒体中是离域的。我们还通过将量子棒溶液的小液滴滴在平坦的衬底上来制造器件。液滴的蒸发动力学受咖啡环效应的控制,该效应导致形成定义良好的微米级条纹。这些条纹由密集排列、侧向对齐的量子棒组成,并提供源于条纹边界处折射率突然变化的光学反馈。我们利用光学增益和咖啡环介导的自组装,表明我们可以仅通过在平坦衬底上沉积量子棒溶液的液滴来制造新型微激光器。