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Hybrid 2D perovskite and red emitting carbon dot composite for improved stability and efficiency of LEDs

机译:混合 2D 钙钛矿和红色发光碳点复合材料,可提高 LED 的稳定性和效率

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Organic-inorganic hybrid lead trihalide perovskites have shown promise consistently in optoelectronic devices such as light-emitting diodes (LEDs), solar cells, photodetectors, sensors, and other optoelectronic devices. Perovskite-based LEDs (PSK-LEDs) have shown enormous potential, mostly due to their lower cost, easy synthesis via solution processibility, and highly tunable light-emitting behavior with higher performance. Despite the recent developments in green and blue PSK-LEDs over the years, there has been less development in the research area of red-emitting PSK-LEDs. Although some developments have led to spectrally, stable red-emitting PSK-LEDs, the stability of those devices still needs to be improved upon further for any practical application. In this work, to the best of our knowledge, for the first time, we used red-emitting 2D PSK as an active light-emitting layer which was further stabilized by red-emitting carbon dots (CDs). The CD-PSK composite films were used as an active layer in red emitting LEDs, and they showed high operational stability, and improved performance compared to the control device with only PSK film as the active layer. The composite device showed improved maximum luminescence (3011 cd m~(-2)), charge density (330 mA cm~(-2)), operational stability (8 hours), better EQE (10.2%), and low turn-on voltage of 2.6 V compared to the control device with maximum luminescence (1512 cd m~(-2)), charge density (134 mA cm~(-2)), operational stability (<2 hours), EQE (2.6%) and turn on voltage of 3.2 V. The low-cost hybrid approach using PSK building blocks together with CDs opens a new approach leading to a composite material, which has immense possibilities for tuning the structure further to maximize the performance.
机译:有机-无机杂化铅trihalide钙钛矿一贯承诺所示光电设备如发光二极管、太阳能电池、光电探测器传感器和其他光电设备。Perovskite-based led (PSK-LEDs)显示潜力巨大,主要是由于他们的低通过解决方案成本、简单的合成可加工性,和高度可调的发光行为更高的性能。在绿色和蓝色PSK-LEDs发展年,已经有更少的发展研究领域的red-emitting PSK-LEDs。一些发展导致幽灵似地,稳定red-emitting PSK-LEDs,稳定的设备仍然需要进一步改进任何实际应用。我们所知,第一次,我们使用red-emitting 2 d相移键控积极发光层的进一步稳定red-emitting碳点(CDs)。复合膜作为活性层红色发光二极管,他们表现出高操作稳定,并提高了性能控制装置相比,只有相移键控的电影作为活性层。改进的最大发光(3011 cd ~ (2)),电荷密度马(330厘米~(2)),操作稳定性(8小时),更好的EQE(10.2%)和低刺激电压2.6 V比控制以最大的发光装置(1512 cdm ~(2)),电荷密度马(134厘米~ (2)),操作稳定性(< 2小时),EQE(2.6%)和开启电压为3.2 V。方法一起使用相移键控构建块cd导致复合材料开辟了新的方法材料,巨大的可能性调优结构进一步最大化表演

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