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Tuning photoluminescence of ZnS nanopartides by silver

机译:银调谐ZnS纳米粒子的光致发光

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We report the results of investigation of the interaction of silver with presynthesized ZnS nanoparticles (NPs) that was stabilized by cetyl trimethyl ammonium bromide (CTAB). The photoluminescence properties of ZnS NPs were followed in the presence of Ag~+ ions, Ag NPs and by the synthesis of Ag@ZnS core-shell nanoparticles. We observed that CTAB stabilized ZnS NPs emitted broadly in the region from 350-450 nm, when excited by 309 nm light. In the presence of Ag~+ ions the emission peak intensity up to 400 nm was reduced, while two new and stronger peaks at 430 nm and 550 nm appeared. Similar results were obtained when Ag NPs solution was added to ZnS solution. However, when Ag@ZnS NPs were synthesized, the emission in the 350-450 nm region was much weaker in comparison to that at 540 nm, which itself appeared at a wavelength shorter than that of Ag~+ ion added ZnS NPs. The observations have been explained by the presence of interstitial sulfur and Zn~(2+), especially near the surface of the nanocrystals and their interaction with various forms of silver. In addition, our observations suggest that Ag~+ ions diffuse into the lattice of the preformed ZnS NPs just like the formation of Ag~+ doped ZnS NPs and thus changes the emission characteristics. We also have pursued similar experiments with addition of Mn~(2+) ions to ZnS and observed similar results of emission characteristics of Mn~(2+) doped ZnS NPs. We expect that results would stimulate further research interests in the development of fluoremetric metal ion sensors based on interaction with quantum dots.
机译:我们报告了银与已被鲸蜡基三甲基溴化铵(CTAB)稳定的预先合成的ZnS纳米颗粒(NP)相互作用的研究结果。在存在Ag〜+离子,Ag NPs的情况下,通过合成Ag @ ZnS核壳纳米粒子,研究了ZnS NPs的光致发光特性。我们观察到,当被309 nm的光激发时,CTAB稳定的ZnS NP在350-450 nm的区域内广泛发射。在存在Ag +离子的情况下,降低了直至400nm的发射峰强度,而在430nm和550nm出现了两个新的且更强的峰。将Ag NPs溶液添加到ZnS溶液中可获得相似的结果。然而,当合成Ag @ ZnS NPs时,在350-450nm区域的发射与在540nm处的发射相比要弱得多,540nm处的发射本身的波长短于添加了Ag +离子的ZnS NPs的波长。间隙硫和Zn〜(2+)的存在解释了这些观察结果,尤其是在纳米晶体的表面附近以及它们与各种形式的银的相互作用。此外,我们的观察结果表明,Ag〜+离子扩散到预制的ZnS NPs的晶格中,就像形成Ag〜+掺杂的ZnS NPs一样,从而改变了发射特性。我们还进行了类似的实验,在ZnS中添加了Mn〜(2+)离子,并观察到了Mn〜(2+)掺杂的ZnS NPs发射特性的相似结果。我们希望该结果将激发基于与量子点相互作用的荧光金属离子传感器开发的进一步研究兴趣。

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