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Controlling surface reactions of CdS nanocrystals: photoluminescence activation, photoetching and photostability under light irradiation

机译:控制CdS纳米晶体的表面反应:光照射下的光致发光活化,光蚀刻和光稳定性

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摘要

Photoluminescence enhancement, photoetching and photostability of CdS nanocrystals were investigated under light irradiation. Strongly photoluminescent nanocrystals were obtained when the nanocrystal was weakly photoexcited in an aqueous solution at pH = 11 in the presence of oxygen. With the support of XPS measurements, the following photoactivation mechanism is proposed: Cd2+ ions are released from the CdS surface owing to slow photocorrosion in the presence of oxygen, and Cd-OH bond formation occurs on the CdS surface under the alkaline conditions, removing the surface trap states. The wavelength of the irradiating light and the pH of the solution were determined as key parameters for nanocrystal surface modification. For the stability measurements the nanocrystals were extracted with an ammonium salt in a non-polar solvent. The photoluminescence quantum yield for the nanocrystals in the non-polar phase reached approximately 30%. The extracted nanocrystals were remarkably stable even under UV light irradiation, and the photoluminescence intensity was maintained for several months.
机译:在光照射下研究了CdS纳米晶体的光致发光增强,光蚀刻和光稳定性。当在氧气存在下,在pH = 11的水溶液中对纳米晶体进行弱光激发时,可获得强光致发光的纳米晶体。在XPS测量的支持下,提出了以下光活化机理:由于在氧气存在下缓慢的光腐蚀,Cd2 +离子从CdS表面释放出来,并且在碱性条件下CdS表面上形成Cd-OH键,从而去除了表面陷阱状态。确定辐照光的波长和溶液的pH作为纳米晶表面改性的关键参数。为了进行稳定性测量,在非极性溶剂中用铵盐萃取纳米晶体。非极性相中的纳米晶体的光致发光量子产率达到约30%。所提取的纳米晶体甚至在紫外光照射下也非常稳定,并且光致发光强度保持几个月。

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