Black Kate, Singh Jetinder, Mehta Danielle, Sung Sarah, Sutcliffe Christopher J, Chalker Paul R
University Liverpool, Department of Engineering, Liverpool L69 3GH, Merseyside, England.
Sci Rep. 2016 Feb 9;6:20814. doi: 10.1038/srep20814.
Inkjet printing offers an attractive method for the deposition of metal interconnects in electronic systems and enables a low-cost, environmentally friendly route to manufacture. However, virtually all current metal inkjet processes require post-deposition sintering treatments to achieve the optimum electrical conductivity, because the growth mechanism involves coalescence of discrete nanoparticles. A manufacturing process that reduces the number of steps by directly printing silver, removing the need to sinter the printed metal, would be highly advantageous. Here we describe a, sinter-free process that results in the direct printing of crystalline silver. This process exploits the chemistries developed for Atomic Layer Deposition (ALD), to form the basis of a new ink formulation, which we term; Reactive Organometallic inks (ROM). These ROM ink formulations are capable of depositing low temperature, high conductivity metal films, without the need for subsequent sintering treatments. To reduce the temperature for direct formation of metallic Ag, we have added an alcohol as a catalytic reducing agent to dissociate the organometallic component. Silver films printed from our novel ROM ink, on a glass substrate at 120 °C, are electrically conductive with a typical resistivity as low as 39.2% that of bulk silver, without the need for sintering.
喷墨打印为电子系统中金属互连的沉积提供了一种有吸引力的方法,并为制造提供了一条低成本、环境友好的途径。然而,几乎所有当前的金属喷墨工艺都需要进行沉积后烧结处理以实现最佳电导率,因为其生长机制涉及离散纳米颗粒的聚结。一种通过直接打印银来减少步骤数量、无需烧结印刷金属的制造工艺将具有极大优势。在此,我们描述了一种无需烧结的工艺,该工艺可直接打印出结晶银。此工艺利用了为原子层沉积(ALD)开发的化学方法,形成了一种新的油墨配方基础,我们将其称为反应性有机金属油墨(ROM)。这些ROM油墨配方能够沉积低温、高导电性的金属薄膜,而无需后续烧结处理。为了降低直接形成金属银的温度,我们添加了一种醇作为催化还原剂来分解有机金属成分。在玻璃基板上于120°C下用我们新型的ROM油墨打印的银膜具有导电性,其典型电阻率低至块状银的39.2%,无需烧结。