All inorganic CsPbBr₃ perovskite quantum dots (QDs) are potential emitters for electroluminescent displays. We have developed a facile hot-injection method to partially replace the toxic Pb²⁺ with highly stable Sn⁴⁺ . Meanwhile, the absolute photoluminescence quantum yield of CsPb1-x Snx Br₃ increased from 45 % to 83 % with SnIV substitution. The transient absorption (TA) exciton dynamics in undoped CsPbBr₃ and CsPb0.67 Sn0.33 Br₃ QDs at various excitation fluences were determined by femtosecond transient absorption, time-resolved photoluminescence, and single-dot spectroscopy, providing clear evidence for the suppression of trion generation by Sn doping. These highly luminescent CsPb0.67 Sn0.33 Br₃ QDs emit at 517 nm. A device based on these QDs exhibited a luminance of 12 500 cd m⁻² , a current efficiency of 11.63 cd A⁻¹ , an external quantum efficiency of 4.13 %, a power efficiency of 6.76 lm w⁻¹ , and a low turn-on voltage of 3.6 V, which are the best values among reported tin-based perovskite quantum-dot LEDs.
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Wang et al. (2017) studied this question.
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