2019
DOI: 10.1002/adma.201807516
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Stretchable Organometal‐Halide‐Perovskite Quantum‐Dot Light‐Emitting Diodes

Abstract: Stretchable light‐emitting diodes (LEDs) and electroluminescent capacitors have been reported to potentially bring new opportunities to wearable electronics; however, these devices lack in efficiency and/or stretchability. Here, a stretchable organometal‐halide‐perovskite quantum‐dot LED with both high efficiency and mechanical compliancy is demonstrated. The hybrid device employs an ultrathin (<3 µm) LED structure conformed on a surface‐wrinkled elastomer substrate. Its luminescent efficiency is up to 9.2 … Show more

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Cited by 94 publications
(103 citation statements)
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“…[1][2][3][4][5] Showing high photoluminescence (PL) quantum yields (QYs), 6,7 an optimal range of band gap energy values and high defect tolerance, [8][9][10][11] the perovskite nanomaterials hold great promise for solar cell, 12 photodetector, 13 laser, 14,15 light-emitting diode (LED) and display applications. [16][17][18][19][20][21][22][23][24][25][26][27][28][29][30] Being free from the organic component, the all inorganic CsPbX 3 (X À stands for halide ions) perovskites are compositionally stable up to their melting points which are in excess of 460 C, 31 and thus have attracted enormous interest.…”
Section: Introductionmentioning
confidence: 99%
“…[1][2][3][4][5] Showing high photoluminescence (PL) quantum yields (QYs), 6,7 an optimal range of band gap energy values and high defect tolerance, [8][9][10][11] the perovskite nanomaterials hold great promise for solar cell, 12 photodetector, 13 laser, 14,15 light-emitting diode (LED) and display applications. [16][17][18][19][20][21][22][23][24][25][26][27][28][29][30] Being free from the organic component, the all inorganic CsPbX 3 (X À stands for halide ions) perovskites are compositionally stable up to their melting points which are in excess of 460 C, 31 and thus have attracted enormous interest.…”
Section: Introductionmentioning
confidence: 99%
“…Nevertheless, a liquid EInGa cathode is incapable to be adopted in practical applications. To address this issue, a mechanically, thermally, and chemically stable composite electrode with AgNWs inlaid in the surface of PI substrate was introduced by Pei et al With the precursor concentration and spin speed subjected to control, the thickness of the spin‐coated electrode films can be manipulated into 1–2 µm with ultrasmooth (RMS of 0.796 nm) and highly conductive (a sheet resistance of ≈10 Ω sq −1 ). Besides, this composite feature high transmittances of over 80% at 550 nm.…”
Section: Progresses Of Highly Efficient Flexible Displaysmentioning
confidence: 99%
“…Another structural design is to form a wavy buckling/wrinkle structure in the active pixels of thin‐film‐based LEDs (TFLED). [ 11–20 ] Using this method, the pixel itself appears to be stretched, similar to intrinsically stretchable LEDs, so that the display resolution can be increased without the loss of area occupied by interconnects. For wrinkled structure, TFLEDs are fabricated on an ultrathin plastic film (e.g., polyethylene terephthalate (PET), polyethylene naphthalate (PEN), polyimide (PI)) with a thickness of under tens of micrometers, and the entire device including the plastic film is transferred to the prestretched elastomer by laminating the peeled‐off freestanding device.…”
Section: Figurementioning
confidence: 99%