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Electroluminescence devices with CdS and CdS:Mn nanoparticles and polymer blends

机译:具有CdS和CdS:Mn纳米粒子和聚合物共混物的电致发光器件

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We have investigated the photophysical properties of surface capped CdS and CdS:Mn nanoparticles in the form of spin coated thin films of the pure nanoparticles and nanoparticle - polymer blends. The organic capping reagent was p-thiocresol. Electroluminescence (EL) devices were fabricated and characterized by their current/voltage characteristics and EL emission performance. This is to our knowledge the first report on Mn doped CdS nanoparticles applied in EL devices with a single layer device structure (ITO/CdS:Mn/Al). Photoluminescence (PL) and PL excitation measurements were performed on CdS:Mn nanoparticles in pyridine dispersion and on thin films. The PL excitation spectrum shows a narrow peak at 390nm. Excitation at this wavelength yields a broad PL spectrum spanning from about 450 to 700nm, which is dominated by a strong emission band at 585nm. This emission is attributed to transitions involving Mn levels in previous works. The EL emission peak is shifted to the red compared to the PL emission spectra. The characteristics and performance of these new types of EL devices will be presented and discussed.
机译:我们已经研究了以纯纳米粒子和纳米粒子-聚合物共混物的旋涂薄膜形式存在的,表面覆盖的CdS和CdS:Mn纳米粒子的光物理性质。有机封端剂是对硫代甲酚。制作了电致发光(EL)器件,并通过其电流/电压特性和EL发射性能对其进行了表征。据我们所知,这是关于具有单层器件结构(ITO / CdS:Mn / Al)的EL器件中Mn掺杂CdS纳米颗粒的首次报道。对吡啶分散液中和薄膜上的CdS:Mn纳米粒子进行了光致发光(PL)和PL激发测量。 PL激发光谱在390nm处显示一个窄峰。在此波长下激发会产生宽泛的PL光谱,范围从约450到700nm,主要是在585nm处有很强的发射带。该排放归因于先前工作中涉及锰水平的跃迁。与PL发射光谱相比,EL发射峰变为红色。将介绍和讨论这些新型EL器件的特性和性能。

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