Kigel Ariel, Brumer Maya, Maikov Georgy I, Sashchiuk Aldona, Lifshitz Efrat
The Russell Berrie Nanotechnology Institute Technion-Israel Institute of Technology, Haifa, Israel.
Small. 2009 Jul;5(14):1675-81. doi: 10.1002/smll.200801378.
The thermal activation processes in PbSe colloidal quantum dots and their influence on the ground-state exciton emission are discussed. Activation of a dark exciton occurs at 1.4-7 K, assisted by an acoustic phonon coupling. Activation of a bright exciton occurs at 100-200 K, which appears as a sudden change in the photoluminescence band intensity, energy, and full width at half maximum. This activation overcomes the dark-bright-state splitting, when the activation temperature increases with the decrease of the dots' size. The dark exciton lifetime is found to be approximately 6-12 micros at 1.4 K, while the bright exciton lifetime at 300 K evaluated as 450 ns varies slightly with the change in the size of the dots. In addition, the emission quantum yield of these dots, measured at a variety of temperatures when dissolved in various solvents, reveals information about the influence of the environment on the recombination processes.
讨论了PbSe胶体量子点中的热激活过程及其对基态激子发射的影响。暗激子的激活发生在1.4 - 7 K,由声子耦合辅助。亮激子的激活发生在100 - 200 K,表现为光致发光带强度、能量和半高宽的突然变化。当激活温度随量子点尺寸减小而升高时,这种激活克服了暗 - 亮态分裂。发现暗激子寿命在1.4 K时约为6 - 12微秒,而在300 K时评估为450 ns的亮激子寿命随量子点尺寸变化略有不同。此外,这些量子点在溶解于各种溶剂中时在不同温度下测量的发射量子产率揭示了环境对复合过程影响的信息。