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Valence, Size, and Shape Control of Gold Nanoparticles Synthesized by Electron-Assisted Reduction

机译:通过电子辅助还原合成的金纳米颗粒的价尺寸和形状控制

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An electron-assisted strategy was developed to prepare gold nanoparticles (AuNPs) at room temperature. Glow discharge plasma as electron source was successfully used to control the valence state, size, and shape of AuNPs. Stable Au(I) was obtained in 3 min by plasma, and Au(I) was reduced to zero valence with the increase in treatment time. An increase in the amount of Au did not induce an increase in particle size. A narrow size distribution was also achieved. The narrowest size distribution was observed at 9 min at 600 V. AuNPs grew slowly under glow discharge plasma, which slightly changed the mean size of AuNPs. Moreover, the average size of AuNPs was smaller under alkaline conditions. The initial pH of the solution can affect the nucleation and growth of AuNPs and further affect their particle size. Spherical AuNPs, hexagonal AuNPs, rectangular AuNPs, flower-shaped AuNPs, and Au nanorods were easily obtained within 30 min by adding different additives. The hexagonal AuNPs exhibited the largest current response toward caffeine and showed a good linear range (0.1-1000 mu M) with a low detection limit (0.064 mu M), because their high-energy planes can increase the electron transfer rate and improve electrocatalytic activity.
机译:开发了一种电子辅助策略以在室温下制备金纳米颗粒(AUNP)。作为电子源的辉光放电等离子体已成功地用于控制AUNP的价态,尺寸和形状。通过血浆在3分钟内在3分钟内获得稳定的Au(I),并且随着治疗时间的增加,Au(i)降低至零种性。 Au的量增加没有诱导粒度的增加。还实现了狭窄的尺寸分布。在600 V的9分钟内观察到最窄的尺寸分布。AUNPS在辉光放电等离子体下慢慢增长,这略微改变了AUNP的平均尺寸。此外,在碱性条件下,AUNP的平均尺寸较小。溶液的初始pH可以影响AUNP的成核和生长,并进一步影响其粒度。通过添加不同的添加剂,在30分钟内容易地在30分钟内容易地获得球形AUNP,六边形AUNP,矩形AUNP,花形AUNP和AU纳米棒。六角形AUNPS表现出对咖啡因的最大电流反应,并显示出低检测极限(0.064μm)的良好线性范围(0.1-1000 mu m),因为它们的高能量平面可以增加电子转移率并改善电催化活性。

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