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Effect of mixed spacer cation on the performance of quasi-2D blue perovskite light-emitting diodes

机译:混合间隔阳离子对准2D蓝色钙钛矿发光二极管性能的影响

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Inorganic-organic hybrid perovskites have received extensive attention in the field of optoelectronic devices, due to its lower cost, high carrier mobility, high defect tolerance, narrow emission bandwidth and tunable emission spectra. In recent years, we have observed a rapid development of perovskite based light emitting diodes (LED), however, the performance of blue perovskite LED falls far behind the green and red LEDs. The blue perovskite LED suffers from the fast crystallization of chlorine based perovskite, and the instability of the mixture phase of chlorine and bromine under electrical stress. In this work, in order to improve the stability of blue LED, the macro-molecular material butylammonium chlorine (BACl) is introduced into three-dimensional cesium lead bromide (CsPbBr_3) to form quasi two-dimensional perovskite structure. By adjusting the molar ratio of BACl over CsPbBr_3, the number of inorganic layers (n) in the quasi-two-dimensional structure is finely tuned. A color stable perovskite light emitting diodes with wavelength ranging from 450-490nm (deep blue to sky blue) is achieved. Furthermore, phenethylammonium (PEA) cation, a water and oxygen stable aromatic material, is added into the quasi 2D perovskite precursor to form mixed spacer cation perovskite layer. The performance and stability of the blue LED with different molar proportion of BA~+ to PEA~+ is investigated. Finally, a color stable perovskite blue LED with luminance exceeding 1000 Cd/m~2 is achieved.
机译:无机 - 有机混合钙钛矿已经由于其较低的成本,较高的载流子迁移,高缺陷耐受性,窄的发射带宽和可调谐发射光谱受到广泛关注在光电器件的领域中。近年来,我们已经观察到的钙钛矿发光二极管的快速发展(LED),然而,蓝色钙钛矿LED的性能远远落后于绿色和红色LED。蓝色LED钙钛矿从基于氯钙钛矿的快速结晶,氯和溴的混合物相的电应力下的不稳定性受到影响。在这项工作中,为了提高蓝色LED的稳定性,所述大分子材料丁基铵氯(BACL)引入到三维铯溴化铅(CsPbBr_3),以形成准二维钙钛矿结构。通过调整BACL超过CsPbBr_3的摩尔比,在准二维结构的无机层(n)的数量是微调。一种彩色稳定钙钛矿发光波长范围为450-490nm的二极管(深蓝色至天蓝)得以实现。此外,phenethylammonium(PEA)阳离子,水和氧稳定的芳香材料,加入到上述准二维钙钛矿前体以形成混合的间隔物阳离子的钙钛矿层。蓝色LED的具有〜+到PEA〜+进行了研究BA的不同摩尔比例的性能和稳定性。最后,颜色稳定的钙钛矿与亮度超过1000烛光/米2〜实现蓝色LED。

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