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用于电子应用的低介电常数材料——苯并环丁烯基聚合物的喷墨打印

Inkjet Printing of a Benzocyclobutene-Based Polymer as a Low-k Material for Electronic Applications.

作者信息

Iervolino Filippo, Suriano Raffaella, Scolari Martina, Gelmi Ilaria, Castoldi Laura, Levi Marinella

机构信息

Department of Chemistry, Materials and Chemical Engineering "Giulio Natta", Politecnico di Milano, Piazza Leonardo da Vinci 32, Milan 20133, Italy.

STMicroelectronics, Via Camillo Olivetti, 2, Agrate Brianza 20864, Monza and Brianza, Italy.

出版信息

ACS Omega. 2021 Jun 10;6(24):15892-15902. doi: 10.1021/acsomega.1c01488. eCollection 2021 Jun 22.

Abstract

Polymeric materials with a low dielectric constant are widely used in the electronic industry due to their properties. In particular, polymer adhesives can be used in many applications such as wafer bonding and three-dimensional integration. Benzocyclobutene (BCB) is a very interesting material thanks to its excellent bonding behavior and dielectric properties. Usually, BCB is applied by spin-coating, although this technology does not allow the fabrication of complex patterns. To obtain complex patterns, it is necessary to use a printing technology, such as inkjet printing. However, inkjet printing of BCB-based inks has not yet been investigated. Here, we show the feasibility of printing complex patterns with a BCB-based ink, reaching a resolution of 130 μm. We demonstrate that with a proper dilution, BCB-based inks enter the printability window and drop ejection is achieved without the formation of satellite drops. In addition, we present the conditions in which there is an appearance of the coffee ring effect. Inks that feature a too high interaction with the substrate are more likely to show the coffee ring effect, deteriorating the printing quality. We also observe that it is possible to achieve a better film uniformity by increasing the number of printed layers, due to redissolution of the BCB-based polymer that helps to level possible inhomogeneities. Our work represents the starting point for an in-depth study of BCB-based polymer fabrication using jet printing technologies, as a comparison of the bonding quality obtained with different materials and different technologies could give more information and broaden the perspective regarding this field.

摘要

具有低介电常数的聚合物材料因其特性而在电子工业中得到广泛应用。特别是,聚合物粘合剂可用于许多应用,如晶圆键合和三维集成。苯并环丁烯(BCB)由于其优异的键合行为和介电性能,是一种非常有趣的材料。通常,BCB通过旋涂法应用,尽管这种技术无法制造复杂图案。为了获得复杂图案,有必要使用印刷技术,如喷墨印刷。然而,基于BCB的油墨的喷墨印刷尚未得到研究。在此,我们展示了使用基于BCB的油墨印刷复杂图案的可行性,分辨率达到130μm。我们证明,通过适当稀释,基于BCB的油墨进入可印刷窗口,实现液滴喷射且不形成卫星液滴。此外,我们还展示了出现咖啡环效应的条件。与基材相互作用过高的油墨更有可能出现咖啡环效应,从而降低印刷质量。我们还观察到,通过增加印刷层数可以实现更好的膜均匀性,这是由于基于BCB的聚合物的再溶解有助于平整可能存在的不均匀性。我们的工作代表了使用喷射印刷技术深入研究基于BCB的聚合物制造的起点,因为比较不同材料和不同技术获得的键合质量可以提供更多信息,并拓宽该领域的视野。

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