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Reversible Size Control of Liquid-Metal Nanoparticles under Ultrasonication

机译:超声作用下液态金属纳米颗粒的可逆尺寸控制

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This paper describes the reversible control of the size of liquid-metal nanoparticles under ultrasonication. Gallium was utilized as a liquid metal, which has a melting point of 29.8 degrees C. Investigating the effects of ultrasonication (power, time, and temperature) on the formation of gallium nanoparticles revealed that the process is similar to the formation of oil in water (O/W) or water in oil (W/O) emulsions, as the temperature significantly affects the size of the gallium nanoparticles (GaNPs). Under ultrasonication, the balance between the break-up and coalescence of the GaNPs can be adjusted by changing the temperature or adding acid through modulating the natural surface oxide layer (which can be removed with acid) and the stabilizing effect of the surfactant dodecanethiol. Coalescence was predominant at higher temperatures, whereas particle break-up was found to be predominant at lower temperatures. Furthermore, the change in size was accompanied by a shift in the plasmonic absorption of the GaNPs in the UV region.
机译:本文描述了超声作用下可逆控制液态金属纳米粒子的大小。镓被用作液态金属,其熔点为29.8摄氏度。调查超声波处理(功率,时间和温度)对镓纳米颗粒形成的影响表明,该过程类似于水中的油形成(O / W)或油包水乳液(W / O),因为温度会显着影响镓纳米颗粒(GaNPs)的尺寸。在超声作用下,可以通过改变温度或通过调节天然表面氧化物层(可以用酸去除)和添加表面活性剂十二烷硫醇的稳定作用来添加酸,来调节GaNP分解和聚结之间的平衡。在较高的温度下聚结是主要的,而在较低的温度下聚结是主要的。此外,尺寸的变化伴随着UV区域中GaNPs的等离子体吸收的移动。

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