Nano-Kirigami Structures and Branched Nanowires Fabricated by Focused Ion Beam-Induced Milling, Bending, and Deposition

被引:6
|
作者
Xia, Deying [1 ]
Notte, John [1 ]
机构
[1] Carl Zeiss SMT Inc, PCS Integrat Ctr, 75 Sylvan St,Suite 101, Danvers, MA 01923 USA
关键词
branched nanowires; focused ion beam; focused ion beam-induced deposition; helium ion microscopy; Ion beam-induced bending; kirigami; neon focused ion beam; NANOSTRUCTURES; NANOFABRICATION; MANIPULATION; IMPLANTATION;
D O I
10.1002/admi.202200696
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
3D nanostructures hold the key to building custom devices with special and flexible functionalities. Ion beam-induced bending and folding are used for the fabrication of 3D nanostructures from prepared 2D nano-patterned membranes. Tensile and compressive stresses can be introduced within the layers of a thin membrane under ion beam irradiation to manipulate and control the formation of nano-kirigamis. Both localized and broader ion beam irradiation can be used to induce bending in the membrane with remarkable control of the bending angle and direction. In this work, an approach to fabricate nano-kirigamis with focused ion beams (FIBs) is developed. First, helium or neon ion beams are used to mill 2D patterns into the planar membrane with good accuracy, nanoscale, and less damage. Subsequently, gallium ion beam is used to broadly and uniformly irradiate the patterned region to induce out-of-plane bending to form nano-kirigamis. Both upward and downward bending are observed for different thicknesses of membranes. The bending angle is easily controlled by varying the irradiation dosage. Moreover, with FIB-induced deposition, nanopillars, or nanowires (NWs) can be grown on the membrane before or after bending. Various complex 3D nanostructures and branched NWs can be fabricated using this approach.
引用
收藏
页数:14
相关论文
共 50 条
  • [1] Continuous cellular automaton simulation of focused ion beam-induced deposition for nano structures
    Fang, Chen
    Chai, Qing
    Chen, Qianhuang
    Xing, Yan
    NANOTECHNOLOGY, 2020, 31 (10)
  • [2] Focused-ion-beam-based nano-kirigami: from art to photonics
    Li, Jiafang
    Liu, Zhiguang
    NANOPHOTONICS, 2018, 7 (10) : 1637 - 1650
  • [3] Ion beam-induced bending of silicon nanowires
    Pecora, Emanuele F.
    Irrera, Alessia
    Priolo, Francesco
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2012, 44 (06): : 1074 - 1077
  • [4] Invited Article: Nano-kirigami metasurfaces by focused-ion-beam induced close-loop transformation
    Liu, Zhiguang
    Du, Huifeng
    Li, Zhi-Yuan
    Fang, Nicholas X.
    Li, Jiafang
    APL PHOTONICS, 2018, 3 (10)
  • [5] Arbitrary Structures Fabricated by Focused Ion Beam Milling
    Jiang, Xiaoxiao
    Wang, Fengwen
    Ma, Zhenhe
    Gu, Qiongchan
    Lv, Jiangtao
    Si, Guangyuan
    NANOTECHNOLOGY AND MATERIAL ENGINEERING RESEARCH, 2013, 661 : 66 - 69
  • [6] Transport properties of Pt nanowires fabricated by beam-induced deposition
    Tsukatani, Y., 1600, Japan Society of Applied Physics (44):
  • [7] Transport properties of Pt nanowires fabricated by beam-induced deposition
    Tsukatani, Y
    Yamasaki, N
    Murakami, K
    Wakaya, F
    Takai, M
    JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS BRIEF COMMUNICATIONS & REVIEW PAPERS, 2005, 44 (7B): : 5683 - 5686
  • [8] FOCUSED-ION BEAM-INDUCED DEPOSITION OF COPPER
    DELLARATTA, AD
    MELNGAILIS, J
    THOMPSON, CV
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, 1993, 11 (06): : 2195 - 2199
  • [9] Focused ion beam-induced fabrication of tungsten structures
    Ishida, M
    Fujita, J
    Ichihashi, T
    Ochiai, Y
    Kaito, T
    Matsui, S
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, 2003, 21 (06): : 2728 - 2731
  • [10] Focused ion beam based nano-kirigami/origami for three-dimensional micro/nanomanufacturing and photonic applications
    Chen Shan-Shan
    Liu Xing
    Liu Zhi-Guang
    Li Jia-Fang
    ACTA PHYSICA SINICA, 2019, 68 (24)