Jaramillo-Quintero Oscar A, Sanchez Rafael S, Rincon Marina, Mora-Sero Ivan
†Photovoltaic and Optoelectronic Devices Group, Departament de Física, Universitat Jaume I, 12071 Castelló, Spain.
‡Instituto de Energías Renovables, Universidad Nacional Autónoma de México, Apartado Postal 34, Temixco, Morelos 62580, México.
J Phys Chem Lett. 2015 May 21;6(10):1883-90. doi: 10.1021/acs.jpclett.5b00732. Epub 2015 May 6.
Hybrid halide perovskites that are currently intensively studied for photovoltaic applications, also present outstanding properties for light emission. Here, we report on the preparation of bright solid state light emitting diodes (LEDs) based on a solution-processed hybrid lead halide perovskite (Pe). In particular, we have utilized the perovskite generally described with the formula CH3NH3PbI(3-x)Cl(x) and exploited a configuration without electron or hole blocking layer in addition to the injecting layers. Compact TiO2 and Spiro-OMeTAD were used as electron and hole injecting layers, respectively. We have demonstrated a bright combined visible-infrared radiance of 7.1 W·sr(-1)·m(-2) at a current density of 232 mA·cm(-2), and a maximum external quantum efficiency (EQE) of 0.48%. The devices prepared surpass the EQE values achieved in previous reports, considering devices with just an injecting layer without any additional blocking layer. Significantly, the maximum EQE value of our devices is obtained at applied voltages as low as 2 V, with a turn-on voltage as low as the Pe band gap (V(turn-on) = 1.45 ± 0.06 V). This outstanding performance, despite the simplicity of the approach, highlights the enormous potentiality of Pe-LEDs. In addition, we present a stability study of unsealed Pe-LEDs, which demonstrates a dramatic influence of the measurement atmosphere on the performance of the devices. The decrease of the electroluminescence (EL) under continuous operation can be attributed to an increase of the non-radiative recombination pathways, rather than a degradation of the perovskite material itself.
目前被广泛研究用于光伏应用的混合卤化物钙钛矿,在发光方面也展现出卓越的性能。在此,我们报道了基于溶液法制备的混合铅卤化物钙钛矿(Pe)的明亮固态发光二极管(LED)。具体而言,我们使用了通常化学式为CH3NH3PbI(3 - x)Cl(x)的钙钛矿,并采用了除注入层外没有电子或空穴阻挡层的结构。致密的TiO2和Spiro - OMeTAD分别用作电子和空穴注入层。我们已经证明,在电流密度为232 mA·cm(-2)时,明亮的可见 - 红外组合辐射亮度为7.1 W·sr(-1)·m(-2),最大外量子效率(EQE)为0.48%。考虑到仅具有注入层而没有任何额外阻挡层的器件,所制备的器件超过了先前报道中实现的EQE值。值得注意的是,我们器件的最大EQE值在低至2 V的施加电压下获得,开启电压低至Pe带隙(V(turn-on) = 1.45 ± 0.06 V)。尽管方法简单,但这种出色的性能突出了Pe - LED的巨大潜力。此外,我们展示了未封装的Pe - LED的稳定性研究,该研究表明测量气氛对器件性能有显著影响。连续运行下电致发光(EL)的降低可归因于非辐射复合途径的增加,而不是钙钛矿材料本身的降解。