Center for Nanoparticle Research, Institute for Basic Science (IBS), Seoul, 08826, Republic of Korea.
School of Chemical and Biological Engineering, Institute of Chemical Processes, Seoul National University, Seoul, 08826, Republic of Korea.
Adv Mater. 2018 Jan;30(1). doi: 10.1002/adma.201703279. Epub 2017 Oct 25.
Displaying information on transparent screens offers new opportunities in next-generation electronics, such as augmented reality devices, smart surgical glasses, and smart windows. Outstanding luminance and transparency are essential for such "see-through" displays to show vivid images over clear background view. Here transparent quantum dot light-emitting diodes (Tr-QLEDs) are reported with high brightness (bottom: ≈43 000 cd m , top: ≈30 000 cd m , total: ≈73 000 cd m at 9 V), excellent transmittance (90% at 550 nm, 84% over visible range), and an ultrathin form factor (≈2.7 µm thickness). These superb characteristics are accomplished by novel electron transport layers (ETLs) and engineered quantum dots (QDs). The ETLs, ZnO nanoparticle assemblies with ultrathin alumina overlayers, dramatically enhance durability of active layers, and balance electron/hole injection into QDs, which prevents nonradiative recombination processes. In addition, the QD structure is further optimized to fully exploit the device architecture. The ultrathin nature of Tr-QLEDs allows their conformal integration on various shaped objects. Finally, the high resolution patterning of red, green, and blue Tr-QLEDs (513 pixels in. ) shows the potential of the full-color transparent display.
透明屏幕上的信息显示为下一代电子产品提供了新的机会,例如增强现实设备、智能手术眼镜和智能窗户。对于这种“透视”显示器来说,出色的亮度和透明度对于在清晰的背景视图上显示生动的图像至关重要。在这里,我们报告了具有高亮度(底部:约 43000 cd m ,顶部:约 30000 cd m ,总:约 9 V 时为 73000 cd m )、优异的透光率(550nm 时为 90%,可见光范围内为 84%)和超薄外形因数(约 2.7 µm 厚)的透明量子点发光二极管(Tr-QLED)。这些卓越的特性是通过新型电子传输层(ETL)和工程量子点(QD)实现的。ETL 是具有超薄氧化铝覆盖层的 ZnO 纳米颗粒组件,可显著提高有源层的耐用性,并平衡电子/空穴注入 QD,从而防止非辐射复合过程。此外,QD 结构进一步优化,以充分利用器件架构。Tr-QLED 的超薄特性允许其在各种形状的物体上进行共形集成。最后,红色、绿色和蓝色 Tr-QLED 的高分辨率图案(513 像素英寸)显示了全彩色透明显示器的潜力。