Gao Yun, Cai Qiuting, He Yifan, Zhang Dingshuo, Cao Qingli, Zhu Meiyi, Ma Zichao, Zhao Baodan, He Haiping, Di Dawei, Ye Zhizhen, Dai Xingliang
School of Materials Science and Engineering, State Key Laboratory of Silicon and Advanced Semiconductor Materials, Zhejiang University, Hangzhou 310027, China.
Wenzhou Key Laboratory of Novel Optoelectronic and Nano Materials and Engineering Research Center of Zhejiang Province, Institute of Wenzhou, Zhejiang University, Wenzhou 325006, China.
Sci Adv. 2024 Jul 19;10(29):eado5645. doi: 10.1126/sciadv.ado5645. Epub 2024 Jul 17.
Perovskite light-emitting diodes (PeLEDs) provide excellent opportunities for low-cost, color-saturated, and large-area displays. However, the performance of blue PeLEDs lags far behind that of their green and red counterparts. Here, we show that the external quantum efficiencies (EQEs) of blue PeLEDs scale linearly with the photoluminescence quantum yields (PL QYs) of CsPb(BrCl) nanocrystals emitting at 460 to 480 nm. The recombination efficiency of carriers is highly sensitive to the chlorine content and the related deep-level defects in nanocrystals, causing notable EQE drops even with minor increases in chlorine defects. Minor adjustments of chlorine content through rubidium compensation on the A-site effectively suppress the formation of nonradiative defects, improving PL QYs while retaining desirable bandgaps for blue-emitting nanocrystals. Our PeLEDs with record-high efficiencies span the blue spectrum, achieving peak EQEs of 12.0% (460 nm), 16.7% (465 nm), 21.3% (470 nm), 24.3% (475 nm), and 26.4% (480 nm). This work exemplifies chlorine-defect control as a key design principle for high-efficiency blue PeLEDs.
钙钛矿发光二极管(PeLEDs)为低成本、色彩饱和且大面积的显示屏提供了绝佳机遇。然而,蓝色PeLEDs的性能远远落后于绿色和红色同类产品。在此,我们表明,蓝色PeLEDs的外量子效率(EQEs)与发射波长在460至480纳米的CsPb(BrCl)纳米晶体的光致发光量子产率(PL QYs)呈线性关系。载流子的复合效率对纳米晶体中的氯含量及相关深能级缺陷高度敏感,即使氯缺陷稍有增加也会导致显著的EQE下降。通过在A位进行铷补偿对氯含量进行微调,可有效抑制非辐射缺陷的形成,提高PL QYs,同时为蓝色发光纳米晶体保留理想的带隙。我们效率创纪录的PeLEDs覆盖蓝光光谱,在460纳米处实现了12.0%的峰值EQE,在465纳米处为16.7%,在470纳米处为21.3%,在475纳米处为24.3%,在480纳米处为26.4%。这项工作例证了控制氯缺陷是高效蓝色PeLEDs的关键设计原则。