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Simulation of mechanical properties of epoxy-based chemically amplified resist by coarse-grained molecular dynamics
Authors:Hiromasa Yagyu  Yoshikazu Hirai  Akio Uesugi  Yoshihide Makino  Koji Sugano  Toshiyuki Tsuchiya  Osamu Tabata
Affiliation:1. R&D Division, Mitsuboshi Belting Ltd, 4-1-21, Hamazoe-dori, Nagata-ku, Kobe 653-0024, Japan;2. Department of Micro Engineering, Kyoto University, Japan
Abstract:The mechanical properties of an epoxy-based chemically amplified resists with various cross-linking ratios were simulated using a newly developed coarse-grained molecular dynamics simulation that employs a bead–spring model. Models with the different cross-linking ratios were created in the molecular dynamics calculation step and uniaxial elongation simulations were performed. The results reveal that the simulated elastic modulus of the resist modeled by the Kremer–Grest model with an extended angle bending potential depends on the cross-linking ratio, its dependency exhibits good agreement with that determined by nanoindentation tests.
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