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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Generation of luminescent silver nanodots in the presence of amino silane and sodium polyacrylate
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Generation of luminescent silver nanodots in the presence of amino silane and sodium polyacrylate

机译:在氨基硅烷存在下产生发光银纳米蛋白和聚丙烯酸钠

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Amino silane has been introduced to suppress the further growth of luminescent silver clusters (silver nanodots) to non-luminescent silver nanoparticles in the stabilization of the just-reduced silver clusters with sodium polyacrylate (PAA). The roles of the silver, silane, and sodium polyacrylate in the generation of such chromophores are still vague. We found that silver ions and the PAA chain formed chromophoric complexes in the aqueous solution. However, silver nanodots were generated only after chemical reduction. The silane with two or three amino groups promoted the generation of silver nanodots, but an increase in hydrophobicity of the silane, i.e., flanked by a single amino group, stimulated the formation of near-IR silver nanodot emitters. Nevertheless, the absorption spectrum of the reaction mixture did not superimpose in shape with the excitation spectrum of the silver nanodot, suggesting that there were multiple-species that caused strong absorptions in the visible and near-IR region. The pH of the solution strongly influenced the generation and stability of silver nanodots. Silver nanodots were generated efficiently when the reaction pH was between 6 and 8, whereas the already-formed silver nanodots were stable at the pH values between 6 and 10, suggesting that disruption of the silver nanodot protection by competitive species in the solution was slowed down due to the chelate effect of multiple bonding from the polymer chain. Our results suggest that the microenvironment of silver nanodots influences strongly the properties of silver nanodots.
机译:已经引入氨基硅烷以抑制发光银簇(银纳米液)的进一步生长,以稳定在二丙烯酸钠(PAA)中稳定的刚性银簇中的非发光银纳米粒子。银,硅烷和聚丙烯酸钠在这种发色团产生中的作用仍然模糊。我们发现银离子和Paa链在水溶液中形成了发色络合物。然而,仅在化学降低后产生银纳米蛋白。具有两三个氨基的硅烷促进了银纳米蛋白的产生,但硅烷疏水性的增加,即由单个氨基侧翼,刺激了近红外银纳米型发射器的形成。然而,反应混合物的吸收光谱与银纳米多特的激发光谱没有叠加,表明存在多种物质,使得在可见和接近IR区域中引起强烈吸收。溶液的pH强烈影响银纳米型的产生和稳定性。当反应pH为6至8之间时,有效地产生银纳米蛋白,而已经形成的银纳米蛋白在6到10之间的pH值下稳定,表明通过溶液中竞争物种中的银纳米型保护的破坏减慢了由于来自聚合物链的多键合的螯合效应。我们的研究结果表明,银纳米蛋白的微环境影响银纳米纸的性质。

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