首页> 外文会议>Photomask and Next-Generation Lithography Mask Technology XIII pt.2 >Verification of the modified model of drying process of a polymer liquid film on a flat substrate by experiment (2) - through more accurate experiment -
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Verification of the modified model of drying process of a polymer liquid film on a flat substrate by experiment (2) - through more accurate experiment -

机译:通过更精确的实验,通过实验(2)验证了在平坦基材上的聚合物液膜干燥过程的改进模型-

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摘要

We have proposed and modified a model of drying process of polymer solution coated on a flat substrate for flat polymer film fabrication and have presented the fruits through Photomask Japan 2002, 2003, 2004 and so on. And for example numerical simulation of the model qualitatively reappears a typical thickness profile of the polymer film formed after drying, that is, the profile that the edge of the film is thicker and just the region next to the edge's bump is thinner. Then we have clarified dependence of distribution of polymer molecules on a flat substrate on a various parameters based on analysis of many numerical simulations. Then we done a few kinds of experiments so as to verify the modified model and reported the initial result of them through Photomask Japan 2005. Through the initial result we could observe some results supporting the modified model. But we could not observe a characteristic region of a valley next to the edge's bump of a polymer film after drying because a shape of a solution's film coated on a substrate in the experiment was different from one in resists' coating and drying process or imagined in the modified model. In this study, we improved above difference between experiment and the model and did experiments for verification again with a shape of a solution's film coated on a substrate coincident with one imagined in the modified model and using molar concentration. As a result, some were verified more strongly and some need to be examined again. That is, we could confirm like results of last experiment that the smaller average molecular weight of Metoloses was, the larger the gradient of thickness profile of a polymer thin film was. But we could not observe a depression just inside the edge of the thin film also in this improved experiment. We may be able to enumerate the fact that not an organic solution but an aqueous solution was used in the experiment as the cause of non-formation of the depression.
机译:我们已经提出并修改了涂覆在用于平坦聚合物膜制造的平坦基板上的聚合物溶液的干燥过程的模型,并通过光掩模日本2002、2003、2004等展示了其成果。并且例如,模型的数值模拟定性地再现了干燥后形成的聚合物膜的典型厚度轮廓,即,膜的边缘较厚并且仅靠近边缘的凸起的区域较薄的轮廓。然后,我们基于对许多数值模拟的分析,弄清了聚合物分子在平面基材上的分布对各种参数的依赖性。然后,我们进行了几种实验,以验证修改后的模型,并通过Photomask Japan 2005报告了它们的初始结果。通过初始结果,我们可以观察到一些支持修改后的模型的结果。但是我们无法观察到干燥后聚合物膜边缘凸起附近的凹谷的特征区域,因为实验中在基材上涂覆的溶液膜的形状与抗蚀剂的涂覆和干燥过程不同,或者在修改后的模型。在这项研究中,我们改善了实验与模型之间的上述差异,并进行了实验以验证溶液的薄膜形状是否与修改后的模型中所设想的一致,并再次使用摩尔浓度进行了验证。结果,有些经过了更强有力的验证,而有些则需要再次进行检查。就是说,我们可以像上一个实验的结果一样确认,Metoloses的平均分子量越小,聚合物薄膜的厚度分布梯度就越大。但是,在这项改进的实验中,我们也无法在薄膜边缘内部观察到凹陷。我们也许可以列举出在实验中不是使用有机溶液而是使用水溶液作为不形成凹陷的原因这一事实。

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