Colloidal semiconductor quantum wells have emerged as a promising material platform for use in solution-processable lasers. However, applications relying on their optical gain suffer from nonradiative Auger decay due to multi-excitonic nature of light amplification in II-VI semiconductor nanocrystals. Here, we show sub-single exciton level of optical gain threshold in specially engineered CdSe/CdS@CdZnS core/crown@gradient-alloyed shell quantum wells. This sub-single exciton ensemble-averaged gain threshold of (N(g))ââ0.84 (per particle) resulting from impeded Auger recombination, along with a large absorption cross-section of quantum wells, enables us to observe the amplified spontaneous emission starting at an ultralow pump fluence of ~â800ânJ cm(-2), at least three-folds better than previously reported values among all colloidal nanocrystals. Finally, using these gradient shelled quantum wells, we demonstrate a vertical cavity surface-emitting laser operating at a low lasing threshold of 7.5âμJ cm(-2). These results represent a significant step towards the realization of solution-processable electrically-driven colloidal lasers.
Sub-single exciton optical gain threshold in colloidal semiconductor quantum wells with gradient alloy shelling.
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作者:Taghipour Nima, Delikanli Savas, Shendre Sushant, Sak Mustafa, Li Mingjie, Isik Furkan, Tanriover Ibrahim, Guzelturk Burak, Sum Tze Chien, Demir Hilmi Volkan
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2020 | 起止号: | 2020 Jul 3; 11(1):3305 |
| doi: | 10.1038/s41467-020-17032-8 | ||
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