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Layer-by-layer assembly of multicolored semiconductor quantum dots towards efficient blue, green, red and full color optical films

机译:彩色半导体量子点的逐层组装,形成高效的蓝色,绿色,红色和全彩色光学膜

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摘要

Multicolored semiconductor quantum dots have shown great promise for construction of miniaturized light-emitting diodes with compact size, low weight and cost, and high luminescent efficiency. The unique size-dependent luminescent property of quantum dots offers the feasibility of constructing single-color or full-color output light-emitting diodes with one type of material. In this paper, we have demonstrated the facile fabrication of blue-, green-, red- and full-color-emitting semiconductor quantum dot optical films via a layer-by-layer assembly technique. The optical films were constructed by alternative deposition of different colored quantum dots with a series of oppositely charged species, in particular, the new use of cationic starch on glass substrates. Semiconductor ZnSe quantum dots exhibiting blue emission were deposited for fabrication of blue- emitting optical films, while semiconductor CdTe quantum dots with green and red emission were utilized for construction of green- and red- emitting optical films. The assembly of integrated blue, green and red semiconductor quantum dots resulted in full-color-emitting optical films. The luminescent optical films showed very bright emitting colors under UV irradiation, and displayed dense, smooth and efficient luminous features, showing brighter luminescence in comparison with their corresponding quantum dot aqueous colloid solutions. The assembled optical films provide the prospect of miniaturized light-emitting-diode applications.
机译:彩色半导体量子点已显示出用于构建具有紧凑尺寸,低重量和成本以及高发光效率的小型化发光二极管的巨大希望。量子点独特的尺寸依赖性发光特性为用一种材料构造单色或全色输出发光二极管提供了可行性。在本文中,我们已经演示了通过逐层组装技术轻松制造蓝色,绿色,红色和全色发射半导体量子点光学膜的方法。通过交替沉积具有一系列带相反电荷的物种的不同颜色的量子点,特别是阳离子淀粉在玻璃基板上的新用途,来构造光学膜。沉积表现出蓝色发射的半导体ZnSe量子点,用于制造发射蓝色的光学膜,而将具有绿色和红色发射的半导体CdTe量子点用于构造发射绿色和红色的光学膜。集成的蓝色,绿色和红色半导体量子点的组装形成了全色发射光学膜。发光光学膜在紫外线照射下显示出非常明亮的发射色,并且显示出致密,光滑和有效的发光特征,与它们相应的量子点水性胶体溶液相比,显示出更明亮的发光。组装的光学膜提供了小型化的发光二极管应用前景。

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