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Molecular Dynamics Investigation of the Deformation Mechanism of Gold with Variations in Mold Profiles during Nanoimprinting

机译:纳米印刷过程中模具型材变形的金变形机制的分子动力学研究

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摘要

Understanding the deformation behavior during nanoimprint lithography is crucial for high resolution patterning. Molecular dynamics modeling was implemented to investigate the effect of different mold profiles (cylindrical, rectangular, and spherical) on the von Mises stress, lattice dislocations, and material deformation. Relatively higher von Mises stress (1.08 × 107 Pa) was observed for the spherical mold profile compared to the rectangular and cylindrical profiles due to the larger surface area of contact during the mold penetration stage of NIL. Substantial increases in the von Mises stress were observed for all the mold geometries during the mold penetration stage. The von Mises stresses had a reduction in the relaxation and mold retrieval stages based on the rearrangement of the gold atoms. The lattice dislocation during the deformation process revealed the formation of the BCC structure which further reverted to the FCC structure after the mold retrieval. The polyhedral template matching (PTM) method was used to explain the retention of the FCC structure and subsequent ductile behavior of the substrate. The cylindrical mold had the lowest percentage spring back in both of the orthogonal directions and thus replicated the mold profile with high-fidelity as compared to the spherical and rectangular molds. The findings of this research can aid the design of molds for several applications.
机译:了解纳米压印光刻期间的变形行为对于高分辨率图案来说至关重要。实施了分子动力学建模,以研究不同模具型材(圆柱形,矩形,球形)对VON误差,格子脱位和材料变形的影响。与矩形和圆柱形轮廓相比,对于球形模具,与矩形和圆柱形曲线相比,与矩形和圆柱形曲线相比,观察到相对较高的von误判压力(1.08×107Pa)由于较大的圆形和圆柱形轮廓。在模具穿透阶段期间,针对所有模具几何形状观察到von误声应力的大幅增加。基于金原子的重排,Von Mises应力减少了松弛和模具检索阶段。变形过程中的晶格脱位揭示了在模具检索后进一步恢复到FCC结构的BCC结构的形成。多面体模板匹配(PTM)方法用于解释FCC结构的保留和基材的后续延性行为。圆柱形模具在正交方向上具有最低百分比的弹簧,因此与球形和矩形模具相比,在高保真上以高保真复制模具轮廓。该研究的结果可以帮助设计模具的几种应用。

著录项

  • 期刊名称 Materials
  • 作者

    Abhaysinh Gaikwad; Salil Desai;

  • 作者单位
  • 年(卷),期 2021(14),10
  • 年度 2021
  • 页码 2548
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类 外科学;
  • 关键词

    机译:变形机制;金;晶格错位;纳米压印光刻;分子动力学;

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