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ZnO–Ti3C2 MXene Electron Transport Layer for High External Quantum Efficiency Perovskite Nanocrystal Light‐Emitting Diodes

机译:用于高外部量子效率钙钛矿纳米晶发光二极管的ZnO-Ti3C2 MXENE电子传输层

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2D transition metal carbides, nitrides, and carbonitrides called MXenes show outstanding performance in many applications due to their superior physical and chemical properties. Herein, a ZnO–MXene mixture with different contents of Ti3C2 is applied as electron transport layers (ETLs) and the influence of the Ti3C2 MXene in all‐inorganic metal halide perovskite nanocrystal light‐emitting diodes (perovskite NC LEDs) is explored. The addition of Ti3C2 makes more balanced charge carrier transport in LEDs by changing the energy level structure and electron mobility of ETL. Moreover, lower surface roughness is obtained for the ETL, thus guaranteeing uniform distribution of the perovskite NCs layer and further reducing leakage current. As a result, a 17.4% external quantum efficiency (EQE) with low efficiency roll‐off is achieved with 10% Ti3C2, which is a 22.5% improvement compared to LEDs without Ti3C2.
机译:2D过渡金属碳化物,氮化物和称为MXENES的碳氮化物在许多应用中表现出出色的性能,这是由于其优越的物理和化学性质。在此,探索具有不同含量的Ti3C2含量的ZnO-偏二烯混合物作为电子传输层(ETL),探索Ti3C2 mxEne在全无机金属卤化物钙钛矿纳米晶体发光二极管(PeroVskite NC LED)中的影响。通过改变Etl的能量水平结构和电子迁移率,加入Ti3C2在LED中制造更平衡的电荷载波传输。此外,为ETL获得较低的表面粗糙度,从而保证钙钛矿NCS层的均匀分布并进一步减少漏电流。结果,用10%Ti3C2实现具有低效率滚动的17.4%的外部量子效率(EQE),与没有Ti3C2的LED相比,效率为10%的Ti3C2,改善了22.5%。

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