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热熔纳米玻璃粉与不同基材之间的润湿性机理研究

Study on the Wetting Mechanism between Hot-Melt Nano Glass Powder and Different Substrates.

作者信息

Liu Yifang, Chen Junyu, Zheng Gaofeng

机构信息

Department of Instrumental and Electrical Engineering, Xiamen University, Xiamen 361102, China.

Shenzhen Research Institute of Xiamen University, Shenzhen 518000, China.

出版信息

Micromachines (Basel). 2022 Oct 6;13(10):1683. doi: 10.3390/mi13101683.

Abstract

The wettability of molten glass powder plays an essential role in the encapsulation of microelectromechanical system (MEMS) devices with glass paste as an intermediate layer. In this study, we first investigated the flow process of nano glass powder melted at a high temperature by simulation in COMSOL. Both the influence of the different viscosity of hot-melt glass on its wettability on SiO and the comparison of the wettability of hot-melt glass on Au metal lead and SiO were investigated by simulation. Then, in the experiment, the hot-melt glass flew and spread along the length of the Au electrode because of a good wettability, resulting in little coverage of the hot-melt glass on the Au electrode, with a height of only 500 nm. In order to reduce the wettability of the glass paste on the Au electrode, a SiO isolation layer was grown on the surface of golden lead by chemical vapor deposition. It successfully reduced the wettability, so the thickness of the hot-melt glass was increased to 1.95 μm. This proved once again that the wettability of hot-melt glass on Au was better.

摘要

熔融玻璃粉的润湿性在以玻璃浆料作为中间层对微机电系统(MEMS)器件进行封装的过程中起着至关重要的作用。在本研究中,我们首先通过在COMSOL中进行模拟,研究了高温下纳米玻璃粉的流动过程。通过模拟研究了热熔玻璃不同粘度对其在SiO上润湿性的影响,以及热熔玻璃在Au金属引线和SiO上润湿性的比较。然后,在实验中,由于润湿性良好,热熔玻璃沿着Au电极的长度飞行并铺展,导致热熔玻璃在Au电极上的覆盖量很少,高度仅为500 nm。为了降低玻璃浆料在Au电极上的润湿性,通过化学气相沉积在金引线表面生长了一层SiO隔离层。它成功降低了润湿性,因此热熔玻璃的厚度增加到了1.95μm。这再次证明了热熔玻璃在Au上的润湿性更好。

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