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Reverse Engineering of Thin Films to Nanoparticles by Thermal Deposition for Large-Scale Production of Nanometals

机译:通过热沉积对纳米粒子的薄膜对纳米粒子的逆向工程进行大规模生产纳米数

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摘要

A simple method to synthesize metal nanoparticles (Nps) has been proposed using high vacuum thermal deposition (HVTD) by reverse engineering of thin films to Nps. Metal Nps synthesized by this technique corresponds to the top-down approach of nanomaterial synthesis from bulk metals of silver and copper wires to metal Nps. A high-vacuum thermal deposition is a commonly used technique for thin-film deposition in many applications. Synthesis of metal Nps by HVTD is simple, efficient, and can provide particle of about few tens of nanometers is effortless. A precoated thin layer of polyethylene glycol (PEG) on a glass substrate (Petri dish), is allowed deposit with a metallic thin film by thermionically evaporating bulk metal wires in high vacuum. The deposited metal thin film is removed along with the PEG coating into a liquid medium and subjected to sonication, stirring, and deoxidation. Obtaining the particle size in tens of nanometer range in one step is one projecting factor by HVTD technique. Also, providing the feasibility of reusing large particles as precursors after synthesis is a unique vantage point. The Nps were analyzed by various characterizations tools to evaluate the underlying properties.
机译:通过将薄膜逆向工程到NPS,已经用高真空热沉积(HVTD)提出了一种合成金属纳米颗粒(NPS)的简单方法。通过该技术合成的金属NPS对应于纳米材料合成的自上而下方法,从银和铜线到金属NPS的散装金属。高真空热沉积是许多应用中的薄膜沉积的常用技术。通过HVTD合成金属NPS简单,有效,并且可以提供大约几十纳米的颗粒是毫不费力的。在高真空中通过热离子蒸发散装金属线,将玻璃基板(Petri盘子)上的聚乙二醇(PEG)的聚乙二醇(PEG)进行预涂层薄层。将沉积的金属薄膜与PEG涂层一起移入液体介质中并进行超声处理,搅拌和脱氧。在一步中获得数十纳米范围内的粒径是HVTD技术的一个突出系数。此外,在合成之后,提供重用大颗粒作为前体的可行性是独特的有利程度。通过各种特征工具分析NPS来评估底层属性。

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