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Fly-through synthesis of nanoparticles on textile and paper substrates

机译:穿越的合成纳米颗粒在纺织品上和纸基板

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The fast and efficient synthesis of nanoparticles on flexible and lightweight substrates is increasingly critical for various medical and wearable applications. However, conventional high temperature (high-T) processes for nanoparticle synthesis are intrinsically incompatible with temperature-sensitive substrates, including textiles and paper (i.e. low-T substrates). In this work, we report a non-contact, fly-through' method to synthesize nanoparticles on low-T substrates by rapid radiative heating under short timescales. As a demonstration, textile substrates loaded with platinum (Pt) salt precursor are rapidly heated and quenched as they move across a 2000 K heating source at a continuous production speed of 0.5 cm s(-1). The rapid radiative heating method induces the thermal decomposition of various precursor salts and nanoparticle formation, while the short duration ensures negligible change to the respective low-T substrate along with greatly improved production efficiency. The reported method can be generally applied to the synthesis of metal nanoparticles (e.g. gold and ruthenium) on various low-T substrates (e.g. paper). The non-contact and continuous fly-through' synthesis offers a robust and efficient way to synthesize supported nanoparticles on flexible and lightweight substrates. It is also promising for ultrafast and roll-to-roll manufacturing to enable viable applications.
机译:快速和高效的纳米粒子的合成灵活和轻量级的基质为各种医疗越来越重要嵌入式应用程序。温度(高温)纳米颗粒的过程合成是本质上不兼容热敏基质,包括纺织品和纸(即low-T基质)。这项工作,我们报告一个非接触式,穿越的low-T方法合成纳米颗粒基质由快速辐射加热短时间尺度。基质含有铂(Pt)盐前身是快速加热和淬火在2000 K热源移动连续生产的速度0.5厘米(1)。快速辐射加热方法诱发各种前兆盐的热分解和纳米颗粒的形成,而短持续时间确保微不足道的改变随着大大各自low-T衬底改善生产效率。方法可以普遍应用于合成金属纳米粒子(如黄金和钌)在各种low-T基质(如纸张)。非接触式和连续穿越的合成提供了一个健壮的和有效的方式来合成支持灵活和纳米颗粒轻量级的基质。超速和精密卷绕对位技术制造使可行的应用程序。

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