Polymer issues in nanoimprinting technique

被引:0
|
作者
Inst. Mat. Sci. Dept. of Elec. Eng., Univ. Wuppertal, Gauss-S., Wuppertal, Germany [1 ]
不详 [2 ]
机构
来源
Solid-State Electron. | / 6卷 / 1079-1083期
关键词
Glass transition - Molecular weight - Nanotechnology;
D O I
暂无
中图分类号
学科分类号
摘要
We have studied the suitability of poly(methylmethacrylate) (PMMA) of different molecular weight for large area pattern transfer by embossing structures above the glass transition temperature (Tg) of the specific polymer. The molecular weight covers a range of one order of magnitude (Mw approximately 5.0×104-8.1×105). This range was chosen in order to obtain information regarding the flow properties that we expect to depend strongly on the molecular weight at a specific temperature. Large area pattern transfer were tested by applying a stamp with both densely packed and isolated features. The feature size ranged from 100 μm down to 450 nm. At a processing temperature of 90 °C above Tg we found clear indications that flow is sufficient to transfer large, isolated features even into the polymer with the highest Mw. Problems of incomplete material transport can be related to local inhomogeneities of the imprint due to a lack of parallelism between the stamp and the sample. At 50 °C above Tg incomplete flow effects were observed over the whole area and for all molecular weights. This was observed only with large, isolated structures whereas small, periodic features showed a well defined transfer.
引用
收藏
相关论文
共 50 条
  • [31] Molecular orientation of a photoreactive liquid crystalline polymer induced by thermal nanoimprinting and graphoepitaxy
    Okada, Makoto
    Hosoda, Risa
    Kondo, Mizuho
    Haruyama, Yuichi
    Sasaki, Tomoyuki
    Ono, Hiroshi
    Kawatsuki, Nobuhiro
    Matsui, Shinji
    MICROELECTRONIC ENGINEERING, 2014, 123 : 159 - 162
  • [32] Peelable porous nanosheet fabricated by roll-to-roll coating and nanoimprinting technique
    Takuto Aoki
    Tomomasa Suzuki
    Yuta Sunami
    Hong Zhang
    Yosuke Okamura
    MRS Communications, 2023, 13 (6) : 1275 - 1280
  • [33] Peelable porous nanosheet fabricated by roll-to-roll coating and nanoimprinting technique
    Aoki, Takuto
    Suzuki, Tomomasa
    Sunami, Yuta
    Zhang, Hong
    Okamura, Yosuke
    MRS COMMUNICATIONS, 2023, 13 (06) : 1275 - 1280
  • [34] Nanolithography - nanoimprinting
    Nevludov, I. Sh.
    Palagin, V. A.
    Frizuk, E. A.
    2007 INTERNATIONAL WORKSHOP ON OPTOELECTRONIC PHYSICS AND TECHNOLOGY, 2007, : 45 - 49
  • [35] Functional Nanoimprinting
    Andrews, Hayley G.
    Wood, Thomas J.
    Schofield, Wayne C. E.
    Badyal, Jas Pal S.
    CHEMICAL VAPOR DEPOSITION, 2012, 18 (7-9) : 239 - 244
  • [36] Comparison Molecular Orientation of Photoinduced Liquid Crystalline Polymer induced by Thermal Nanoimprinting to that by Graphoepitaxy
    Okada, Makoto
    Nishioka, Emi
    Kondo, Mizuho
    Haruyama, Yuichi
    Sasaki, Tomoyuki
    Ono, Hiroshi
    Kawatsuki, Nobuhiro
    Matsui, Shinji
    JOURNAL OF PHOTOPOLYMER SCIENCE AND TECHNOLOGY, 2013, 26 (01) : 65 - 68
  • [37] Polymer-Assisted Nanoimprinting for Environment- and Phase-Stable Perovskite Nanopatterns
    Jeong, Beomjin
    Han, Hyowon
    Kim, Hong Hee
    Choi, Won Kook
    Park, Youn Jung
    Park, Cheolmin
    ACS NANO, 2020, 14 (02) : 1645 - 1655
  • [38] Analysis of the Metal/Polymer Bi-layer Structure during Demolding Process of Nanoimprinting
    Wang, Qing
    Zheng, Xu
    Zhang, Rui
    Zhang, Jintao
    Ma, Lijun
    Liu, Huawei
    JOURNAL OF PHOTOPOLYMER SCIENCE AND TECHNOLOGY, 2015, 28 (06) : 763 - 767
  • [39] Hierarchically Patterned Elastomeric and Thermoplastic Polymer Films through Nanoimprinting and Ultraviolet Light Exposure
    Chen, Ying
    Wang, Zilu
    Kulkarni, Manish M.
    Wang, Xiaoteng
    Al-Enizi, Abdullah M.
    Elzatahry, Ahmed A.
    Douglas, Jack F.
    Dobrynin, Andrey, V
    Karim, Alamgir
    ACS OMEGA, 2018, 3 (11): : 15426 - 15434
  • [40] Electric Field-Aided Formation Combined with a Nanoimprinting Technique for Replicating a Plant Leaf
    Kim, Geun Hyung
    Jeon, Ho Jun
    Yoon, Hyeon
    MACROMOLECULAR RAPID COMMUNICATIONS, 2009, 30 (12) : 991 - 996