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The effect of varied pH environment on the optical efficiency of ZnS nanowires and CdSe/ZnS quantum dots as biomarkers

机译:不同pH环境对ZnS纳米线和CdSe / ZnS量子点作为生物标记物的光学效率的影响

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Most biochemical reactions essential for life take place in a variety of buffers in a narrow range of pH values. This paper highlights the importance of media/buffers with different pH values when used for developing nanostructure based biomarkers. Very recently ZnS nanowires and ZnS coated CdSe quantum dots are being employed as selective biomarkers. The optical properties of ZnS-NW and CdSe/ZnS QDs strongly depend on the pH of the media. The work is then extended to the photoluminescence spectroscopy of water soluble CdSe/ZnS core/shell quantum dots in a varied pH of the phosphate buffer saline (PBS) media. Photoluminescence spectroscopy (PL) of mercaptoacetic acid (MAA) and a cardiac antibody (digoxin) conjugated ZnS-NW showed strong dependence of PL intensity on the pH of the media. It demonstrated that the pH and the pKa value of used thiol molecule were critically linked with each other. Similarly, the photoluminescence spectroscopy of the water-soluble CdSe/ZnS dots at varied pH (4 to 14) showed a strong dependence on the pH. The QD emission was found stable when the pH of the solution was close to 7. However, a strong decrease in luminescence intensity was observed in strong acidic and basic conditions, which was attributed to the presence of Lewis acid: protons (H+) and sodium ions (Na+) and Lewis bases: thiolate (S-) and oxygen ions (O-). At high ionic strength there is agglomeration of quantum dots was due to the formation of sodium salt bridge (COONaOOC) complex along with spectral red shift. The current study suggested the best use of water soluble QDs was at pH 7 to 10 for PBS buffer in different biological environments.
机译:生命必不可少的大多数生化反应发生在pH值范围狭窄的各种缓冲液中。本文着重介绍了用于开发基于纳米结构的生物标记物时,具有不同pH值的培养基/缓冲液的重要性。最近,ZnS纳米线和ZnS包覆的CdSe量子点被用作选择性生物标记。 ZnS-NW和CdSe / ZnS QD的光学性质在很大程度上取决于介质的pH值。然后将工作扩展到在磷酸盐缓冲盐水(PBS)介质的变化pH中水溶性CdSe / ZnS核/壳量子点的光致发光光谱。巯基乙酸(MAA)和心脏抗体(digoxin)共轭的ZnS-NW的光致发光光谱(PL)显示PL强度对培养基pH的强烈依赖性。结果表明,所用硫醇分子的pH值和pKa值是至关重要的。同样,在不同的pH值(4至14)下,水溶性CdSe / ZnS点的光致发光光谱显示出对pH的强烈依赖性。当溶液的pH值接近7时,发现QD发射稳定。但是,在强酸性和碱性条件下,观察到发光强度大大降低,这归因于存在路易斯酸:质子(H + )和钠离子(Na + )和Lewis碱:硫醇盐(S -)和氧离子(O -) 。在高离子强度下,量子点的聚集是由于钠盐桥(COONaOOC)配合物的形成以及光谱红移所致。当前的研究表明,水溶性QD的最佳用途是在不同生物环境中将PBS缓冲液的pH设置为7至10。

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