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Stable Light-Emitting Diodes Using Phase-Pure Ruddlesden-Popper Layered Perovskites

机译:使用相纯Ruddlesden-Pop层状钙钛矿制成的稳定发光二极管

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摘要

State-of-the-art light-emitting diodes (LEDs) are made from high-purity alloys of III-V semiconductors, but high fabrication cost has limited their widespread use for large area solid-state lighting. Here, efficient and stable LEDs processed from solution with tunable color enabled by using phase-pure 2D Ruddlesden-Popper (RP) halide perovskites with a formula (CH3(CH2)(3)NH3)(2)(CH3NH3)(n-1)PbnI3n+1 are reported. By using vertically oriented thin films that facilitate efficient charge injection and transport, efficient electroluminescence with a radiance of 35 W Sr-1 cm(-2) at 744 nm with an ultralow turn-on voltage of 1 V is obtained. Finally, operational stability tests suggest that phase purity is strongly correlated to stability. Phase-pure 2D perovskites exhibit 14 h of stable operation at peak operating conditions with no droop at current densities of several Amperes cm(-2) in comparison to mixtures of 2D/3D or 3D perovskites, which degrade within minutes.
机译:最先进的发光二极管(LED)由III-V半导体的高纯度合金制成,但是高制造成本限制了它们在大面积固态照明中的广泛使用。在这里,通过使用具有式(CH3(CH2)(3)NH3)(2)(CH3NH3)(n-1)的纯2D Ruddlesden-Popper(RP)卤化物钙钛矿可以从具有可调颜色的溶液中加工出高效稳定的LED报告了)PbnI3n + 1。通过使用有助于有效电荷注入和传输的垂直取向薄膜,可以获得有效的电致发光,其在744 nm处的辐射强度为35 W Sr-1 cm(-2),具有1 V的超低开启电压。最后,操作稳定性测试表明,相纯度与稳定性密切相关。与2D / 3D或3D钙钛矿的混合物相比,在2A / 3D或3D钙钛矿的混合物中,纯相2D钙钛矿在峰值工作条件下可稳定运行超过14小时,在几安培cm(-2)的电流密度下不会下垂。

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