首页> 外文会议>Conference on Metrology, Inspection, and Process Control for Microlithography XXI pt.1 >Optimizing Surface Finishing Processes Through the Use of Novel Solvents and Systems
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Optimizing Surface Finishing Processes Through the Use of Novel Solvents and Systems

机译:通过使用新型溶剂和系统来优化表面处理工艺

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As the semiconductor industry continues to implement the ITRS (International Technology Roadmap for Semiconductors) node targets that go beyond 45nm, the need for improved cleanliness between repeated process steps continues to grow. Wafer cleaning challenges cover many applications such as Cu/low-K integration, where trade-offs must be made between dielectric damage and residue by plasma etching and CMP or moisture uptake by aqueous cleaning products. Some surface sensitive processes use the Marangoni tool design where a conventional solvent such as IPA (isopropanol), combines with water to provide improved physical properties such as reduced contact angle and surface tension. This paper introduces the use of alternative solvents and their mixtures compared to pure IPA in removing ionics, moisture, and particles using immersion bench-chemistry models of various processes. A novel Eastman proprietary solvent, Eastman methyl acetate is observed to provide improvement in ionic, moisture capture, and particle removal, as compared to conventional IPA. These benefits may be improved relative to pure IPA, simply by the addition of various additives. Some physical properties of the mixtures were found to be relatively unchanged even as measured performance improved. This report presents our attempts to cite and optimize these benefits through the use of laboratory models.
机译:随着半导体行业继续实施超过45nm的ITRS(半导体国际技术路线图)节点目标,不断重复的工艺步骤之间对提高清洁度的需求不断增长。晶圆清洁挑战涵盖了许多应用,例如Cu / low-K集成,必须在电介质损坏与等离子体蚀刻和CMP残留或水性清洁产品吸收水分之间进行权衡。一些对表面敏感的过程使用Marangoni工具设计,其中常规溶剂(例如IPA(异丙醇))与水结合使用可提供改善的物理性能,例如减小的接触角和表面张力。本文介绍了使用浸入式化学模型的各种方法,与纯IPA相比,使用替代溶剂及其混合物与纯IPA相比,可去除离子,水分和颗粒。与常规IPA相比,已观察到伊士曼(Eastman)乙酸甲酯是一种新颖的伊士曼(Eastman)专有溶剂,在离子,水分捕获和颗粒去除方面提供了改进。相对于纯IPA,只需添加各种添加剂即可改善这些优势。发现混合物的某些物理性质相对不变,即使测量性能有所提高。本报告介绍了我们通过使用实验室模型来尝试并优化这些收益的尝试。

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