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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Surface Treatment to Enhance the Quantum Efficiency of Semiconductor Nanocrystals
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Surface Treatment to Enhance the Quantum Efficiency of Semiconductor Nanocrystals

机译:表面处理可增强半导体纳米晶体的量子效率

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The photoluminescence quantum efficiency of semiconductor nanocrystals at room temperature was markedly enhanced about 50 times by surface treatment of the nanocrystals after synthesis,and the original photoluminescence peak position and narrow line width were maintained.Simply,the nanocrystal surface was treated with a small amount of sodium borohydride(NaBFLO in toluene at room temperature.The surface-treated nanocrystals showed very high quantum efficiency,up to 75%,even in the blue region of 490 nm.The TGA and XPS data revealed that some of the surfactants on the nanocrystal surface were removed by the reaction with NaBH_4 and that the exposed cadmium on the surface was converted to cadmium oxide.The cadmium oxide functioned as a robust passivation layer on the CdS surface and contributed more electron density toward the inside of the CdS core to enhance exciton recombination.The surface treatment was powerfully effective in improving the quantum efficiency of II-VI compound semiconductors such as CdS,CdSe,and CdTe,and generally their mixture-type nanosized materials synthesized under a variety of conditions.
机译:通过合成后对纳米晶体的表面处理,室温下半导体纳米晶体的光致发光量子效率显着提高了约50倍,并且保持了原始的光致发光峰位置和窄的线宽。硼氢化钠(NaBFLO在室温下于甲苯中)。表面处理的纳米晶体即使在490 nm的蓝色区域中也显示出很高的量子效率,最高可达75%.TGA和XPS数据表明,纳米晶体表面上有一些表面活性剂通过与NaBH_4的反应除去,表面暴露的镉转化为氧化镉。表面处理在提高II-VI化合物半导体的量子效率方面非常有效诸如CdS,CdSe和CdTe之类的导电体,以及通常在各种条件下合成的混合型纳米材料。

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