Origins of wear-induced tungsten corrosion defects in semiconductor manufacturing during tungsten chemical mechanical polishing

化学机械平面化 腐蚀 抛光 材料科学 冶金 薄脆饼 泥浆 溶解 氧化物 复合材料 化学 纳米技术 物理化学
作者
Seung-Hoon Choi,Melissa E. Kreider,Adam C. Nielander,Michaela Burke Stevens,Gaurav A. Kamat,Ja Eung Koo,Ki Ho Bae,Ho‐Young Kim,Il Young Yoon,Bo Un Yoon,Kihyun Hwang,Dong Un Lee,Thomas F. Jaramillo
出处
期刊:Applied Surface Science [Elsevier BV]
卷期号:598: 153767-153767 被引量:18
标识
DOI:10.1016/j.apsusc.2022.153767
摘要

During chemical mechanical polishing (CMP) process optimization, a unique corrosion defect was identified in the tungsten (W) contact plugs, which were investigated to develop practical solutions to improve CMP mass productivity. The corrosion defect occurred in the absence of external incident energy and was observed to occur only at the W plugs connected to the P+/n-well close to the wafer edge. To examine the root cause of the corrosion, a series of experiments was carried out at each W CMP step, using in-line defect inspection. Additional experiments were conducted using on-line inductively coupled plasma mass spectrometry (ICP-MS) to understand pH- and potential-dependent electrochemical dissolution behaviors of W. Experimentally, W corrosion was confirmed to be exacerbated if the surface oxide of the W plugs is removed by the deionized water (DIW) rinsing step under wafer pressurization, then exposed to DIW and alkaline cleaning solution. Although the DIW rinsing step is commonly performed to clean polishing pads right after the main polishing, a small amount of applied pressure (0.5 psi) without slurry supply can lead to corrosion defects. This wear-induced corrosion of the W plugs can be prevented by removing the applied pressure during the post DIW rinsing step of W CMP.
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