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Cadmium sulfide photoluminescence in poly(methyl methacrylate)-matrix composites

机译:聚(甲基丙烯酸甲酯)-基质复合材料中硫化镉的光致发光

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摘要

Poly(methyl methacrylate)-matrix composites containing cadmium, lead, and zinc sulfides and also mixed (cadmium lead and cadmium zinc) sulfides were prepared by reacting metal salts with thioacetamide. The transmission of the composites in the range lambda > 500 nm is 92% at absorbing layer thicknesses of a parts per thousand currency sign5 mm. The photoluminescence (PL) of the composites in the wavelength range 500-820 nm is due to the cadmium sulfide, and that in the wavelength range 300-550 nm arises from the zinc sulfide. It results from radiative recombination at levels of extrinsic structural defects in CdS and ZnS, respectively. The PL excitation spectra contain excitonic absorption bands of cadmium sulfide and zinc sulfide quantum dots. The PL of the cadmium sulfide in the composites is influenced by the presence of lead(II) and zinc(II) ions and the complexation of cations on the surface of the particles.
机译:通过使金属盐与硫代乙酰胺反应,制备了含有镉,铅和锌的硫化物以及混合的(镉铅和镉的锌)硫化物的聚甲基丙烯酸甲酯基复合材料。当吸收层的厚度为千分之五时,复合材料在λ> 500 nm范围内的透射率为92%。在500-820 nm波长范围内的复合材料的光致发光(PL)是由于硫化镉引起的,而在300-550 nm波长范围内的复合材料的光致发光是由硫化锌引起的。它是由于分别在CdS和ZnS中的外部结构缺陷水平下的辐射复合而产生的。 PL激发光谱包含硫化镉和硫化锌量子点的激子吸收带。复合材料中硫化镉的PL受铅(II)和锌(II)离子的存在以及颗粒表面阳离子的络合的影响。

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