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Phase transformation of metallic nanoparticle deposits for the electrodes of flexible electronics

机译:柔性电子设备电极的金属纳米颗粒沉积物的相变

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Suspensions with metallic nanoparticles have been widely used to fabricate conductive lines and electrodes for flexible electronic devices under a relatively low processing temperature. This study prepared thiol-stabilized Au nanoparticle suspension and investigated phase transformation of the Au nanoparticle deposits (NPDs) upon heating via in-situ synchrotron radiation X-ray diffraction. With an increasing temperature, the broad diffraction peak of nanosized Au particles with the average diameter of 3nm can be suppressed at around 200°C and soon becomes sharp due to melting and the following solidification. When deposited on the commonly-used electronic substrate, Cu, liquid-solid reaction might occur between the NPDs and the substrate during the thermal process. The low temperature alloying behavior and the formation of the Cu3Au superlattices were manifested by SIMS, XPS and GIXRD.
机译:具有金属纳米颗粒的悬浮液已被广泛用于在相对较低的加工温度下制造用于柔性电子设备的导线和电极。这项研究制备了硫醇稳定的Au纳米颗粒悬浮液,并研究了原位同步辐射X射线衍射加热后Au纳米颗粒沉积物(NPDs)的相变。随着温度的升高,平均直径为3nm的纳米级Au颗粒的宽衍射峰可以在200°C左右得到抑制,并且由于熔化和随后的固化而很快变得尖锐。当沉积在常用的电子基板Cu上时,在热处理过程中,NPD与基板之间可能会发生液固反应。 SIMS,XPS和GIXRD证明了低温合金化行为和Cu 3 Au超晶格的形成。

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