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首页> 外文期刊>AIP Advances >Diameter control of gold nanoparticles synthesized in gas phase using atmospheric-pressure H2/Ar plasma jet and gold wire as the nanoparticle source: Control by varying the H2/Ar mixture ratio
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Diameter control of gold nanoparticles synthesized in gas phase using atmospheric-pressure H2/Ar plasma jet and gold wire as the nanoparticle source: Control by varying the H2/Ar mixture ratio

机译:使用大气压H2 / Ar等离子流和金线作为纳米颗粒源的气相合成金纳米颗粒的直径控制:通过改变H2 / Ar混合比进行控制

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This report describes diameter control of gold nanoparticles (AuNPs) during synthesis using an atmospheric-pressure H2/Ar plasma jet drive with pulse-modulated ultrahigh frequency, employing Au wire as the NP source material. During this process, where most of the AuNPs are regarded as formed through condensation from Au vapor derived by the Au wire etching, the mean diameter varied in the approximate range of 2–12 nm with H2 volume ratios up to 3.9%. In plasma diagnostics, results showed that the H2 volume ratio influences the plasma discharge behaviour, which affects the heat flux density flowed into the Au wire, and the atomic hydrogen concentration in the plasma. Both seemed to influence the etching rate of the Au wire per unit area, which is directly related to the concentration of Au vapor in the plasma. The concentration is one factor affecting the particle size evolution because of the collisions among vapor species in reaction field. Therefore, the AuNP size variation with the H2 volume ratio was discussed from the perspective of the etching rate of the Au wire at each H2 volume ratio.
机译:该报告描述了在大气压下使用带有脉冲调制的超高频的H 2 / Ar等离子射流驱动器(以Au线作为NP源材料)控制金纳米颗粒(AuNPs)的直径。在此过程中,大多数AuNP被认为是通过Au线蚀刻得到的Au蒸气的冷凝而形成的,平均直径在大约2–12 nm范围内变化,H 2 高达3.9%。在等离子体诊断中,结果表明H 2 的体积比会影响等离子体的放电行为,从而影响流入金丝的热通量密度和等离子体中的氢原子浓度。两者似乎都影响每单位面积金线的蚀刻速率,这与等离子体中金蒸气的浓度直接相关。由于反应场中蒸汽物质之间的碰撞,浓度是影响粒径演变的一个因素。因此,从在每个H 2 体积比下金线的蚀刻速率的角度,讨论了随着H 2 体积比AuNP尺寸的变化。

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