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Effects of the gap distance on the characteristics of gold nanoparticles in nanofluids synthesized using solution plasma processing

机译:间隙距离对溶液等离子体合成纳米流体中金纳米颗粒特性的影响

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In this study, gold nanoparticles for use in the production of nanofluids were synthesized with various gap distances of 1.0 mm to 16.0 mm between cathode and anode electrodes using Solution Plasma Processing (SPP). The size distribution and the shape of gold nanoparticles in the nanofluids were investigated using a UV-vis nir spectrophotometer and transmission electron microscope (TEM); the dispersion stability of the gold nanofluids was characterized using zeta-potential. The results demonstrate that the distances between electrodes have a strong effect on the formation of Au nanoparticles in nanofluids. The gap distance of 1.0 mm produced the smallest average particle size, 17.7 ± 6.0 nm in diameter, and the most uniform size distribution. In addition, the zeta-potential of the gold nanoparticles synthesized with a gap distance of 1.0 mm was measured at −45.4 ± 1.3 mV, which suggests excellent dispersion stability of nanoparticles in the nanofluids. Possible mechanisms for the formation of nanoparticles in SPP are suggested. The electrons provided from the solution plasma are believed to play a vital role in producing the Au nanoparticles. Also, increased electrical energy from the plasma is responsible not only for increasing the surface areas of the nanoparticles in the solution by making the nanoparticles even smaller in size, but also for facilitating good dispersion stability by negatively charging the nanoparticles.
机译:在这项研究中,使用溶液等离子体处理(SPP)合成了用于生产纳米流体的金纳米颗粒,阴极和阳极之间的间隙距离为1.0 mm至16.0 mm。使用紫外可见分光光度计和透射电子显微镜(TEM)研究了纳米流体中金纳米颗粒的尺寸分布和形状。金纳米流体的分散稳定性用ζ电位表征。结果表明,电极之间的距离对纳米流体中金纳米颗粒的形成有很强的影响。 1.0 mm的间隙距离产生最小的平均粒径,直径为17.7±6.0 nm,并且粒径分布最均匀。另外,在-45.4±1.3mV处测量了以1.0mm的间隙距离合成的金纳米颗粒的ζ电位在-45.4±1.3mV,这表明纳米颗粒在纳米流体中的优异的分散稳定性。建议在SPP中形成纳米颗粒的可能机制。据信由溶液等离子体提供的电子在生产金纳米颗粒中起着至关重要的作用。而且,来自等离子体的增加的电能不仅负责通过使纳米颗粒尺寸更小来增加溶液中纳米颗粒的表面积,而且还通过使纳米颗粒带负电来促进良好的分散稳定性。

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