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Transfer Durability of Line-Patterned Replica Mold Made of High-Hardness UV-Curable Resin

机译:用高硬度UV固化树脂制成的线图案复制品模具的转印耐久性

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摘要

Ultraviolet nanoimprint lithography (UV-NIL) requires high durability of the mold for the mass production of nanostructures. To evaluate the durability of a line-patterned replica mold made of high-hardness UV curable resin, repetitive transfer and contact angle measurements of the replica mold were carried out. In the line patterns, as the contact angle decreases due to repeated transfer, capillary action occurs, and water flows along them. Therefore, it can be said that a mold with a line pattern exhibits an anisotropic contact angle because these values vary depending on the direction of the contact angle measurement. Subsequently, these anisotropic characteristics were investigated. It was determined that it was possible to predict the lifetime of line-and-space molds over repeated transfers. As the transcription was repeated, the contact angle along the line patterns decreased significantly before becoming constant. Moreover, the contact angle across the line pattern decreased slowly while maintaining a high contact angle with respect to the contact angle along the line pattern. The contact angle then decreased linearly from approximately 90°. The mold was found to be macroscopically defect when the values of the contact angle along the line pattern and the contact angle across the line pattern were close. Predicting the mold’s lifetime could potentially lead to a shortened durability evaluation time and the avoidance of pattern defects.
机译:紫外线纳米压印光刻(UV-NIL)需要模具的高耐久性以进行纳米结构的批量生产。为了评估由高硬度UV可固化树脂制成的线图案化复制品的耐久性,进行复制模具的重复传递和接触角测量。在线条图案中,随着反复转移引起的接触角减小,发生毛细管作用,并且水沿它们流动。因此,可以说具有线图案的模具表现​​出各向异性接触角,因为这些值根据接触角测量的方向而变化。随后,研究了这些各向异性特征。确定可以通过重复转移预测线路空间模具的寿命。随着转录重复,在变得恒定之前,沿线图案的接触角显着下降。此外,线条图案的接触角在沿线图案的接触角保持高接触角,同时保持高接触角。然后,接触角从大约90°线性降低。当沿线图案的接触角的值和线图案的接触角接近时,发现模具是宏观缺陷。预测模具的寿命可能导致缩短的耐久性评估时间和避免模式缺陷。

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