Department of Chemical Engineering, University of Michigan, Ann Arbor, Michigan 48109, USA.
J Am Chem Soc. 2010 Oct 20;132(41):14496-502. doi: 10.1021/ja104735a.
Layer-by-layer assembly (LBL) can create advanced composites with exceptional properties unavailable by other means, but the laborious deposition process and multiple dipping cycles hamper their utilization in microtechnologies and electronics. Multiple rinse steps provide both structural control and thermodynamic stability to LBL multilayers, but they significantly limit their practical applications and contribute significantly to the processing time and waste. Here we demonstrate that by employing inkjet technology one can deliver the necessary quantities of LBL components required for film buildup without excess, eliminating the need for repetitive rinsing steps. This feature differentiates this approach from all other recognized LBL modalities. Using a model system of negatively charged gold nanoparticles and positively charged poly(diallyldimethylammonium) chloride, the material stability, nanoscale control over thickness, and particle coverage offered by the inkjet LBL technique are shown to be equal or better than the case of multilayers made with traditional dipping cycles. The opportunity for fast deposition of complex metallic patterns using a simple inkjet printer is also shown. The additive nature of LBL deposition based on the formation of insoluble nanoparticle-polyelectrolyte complexes of various compositions provides an excellent opportunity for versatile, multicomponent, and noncontact patterning for the simple production of stratified patterns that are much needed in advanced devices.
层层组装(LBL)可以创造出具有特殊性能的高级复合材料,这是其他方法无法实现的,但繁琐的沉积过程和多次浸渍循环限制了它们在微技术和电子学中的应用。多次冲洗步骤为 LBL 多层结构提供了结构控制和热力学稳定性,但它们极大地限制了它们的实际应用,并显著增加了处理时间和浪费。在这里,我们证明通过采用喷墨技术,可以在不浪费的情况下提供用于膜层构建所需的 LBL 组件的必要数量,从而无需进行重复的冲洗步骤。这一特点使这种方法与所有其他公认的 LBL 模式区分开来。使用带负电荷的金纳米粒子和带正电荷的聚二烯丙基二甲基氯化铵的模型体系,展示了喷墨 LBL 技术在材料稳定性、纳米级厚度控制和颗粒覆盖率方面的优势,与使用传统浸渍循环制造的多层膜相当或更好。使用简单的喷墨打印机快速沉积复杂金属图案的机会也得到了展示。基于各种组成的不溶性纳米颗粒-聚电解质复合物形成的 LBL 沉积的添加性质为多功能、多组分和非接触式图案化提供了极好的机会,只需简单生产就可以分层图案,这在先进设备中非常需要。