Method for fabricating nanostructures via nanotemplates using dip-pen nanolithography

被引:2
|
作者
Sharma, S. [1 ]
Salehi-Reyhani, A. [2 ]
Bahrami, A. [1 ]
Intisar, E. [1 ]
Santhanam, H. [1 ]
Michelakis, K. [3 ]
Cass, A. [1 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Inst Biomed Engn, Dept Chem, London SW7 2AZ, England
[2] Univ London Imperial Coll Sci Technol & Med, Prox Project, Inst Chem Biol, London SW7 2AZ, England
[3] Univ Surrey, Adv Technol Inst, Guildford GU2 7XH, Surrey, England
关键词
METAL NANOPARTICLES;
D O I
10.1049/mnl.2012.0698
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Dip-pen nanolithography (DPN) relies on the compatibility between the ink used and the substrate it is written on. This has lead to a significant reliance for DPN on thiol-gold chemistries for the fabrication of nanostructures. This reported work demonstrates a method for creating nanostructures through nanotemplates that allows a wider range of substrates and inks to be used. The substrate was spin-coated with a thin layer of polymer which is selectively removed using a scanning probe microscopy tip coated with a solvent. This produces nanotemplates that are subsequently used to create nanostructures by metallisation. Compared with directly written templates these nanotemplates facilitate longer interaction between inking material and the substrate. They also allow a controlled spatial resolution along the z-axis and eliminate the need for any blocking agents to prevent non-specific adsorption. This method allows DPN to be expanded to applications beyond thiol-gold chemistries.
引用
收藏
页码:1038 / 1040
页数:3
相关论文
共 50 条
  • [31] Material transport in dip-pen nanolithography
    Brown, Keith A.
    Eichelsdoerfer, Daniel J.
    Liao, Xing
    He, Shu
    Mirkin, Chad A.
    FRONTIERS OF PHYSICS, 2014, 9 (03) : 385 - 397
  • [32] Piezoresistive Pens for Dip-Pen Nanolithography
    Henning, A. K.
    Fragala, J.
    Shile, R.
    Simao, P.
    MICROFLUIDICS, BIOMEMS, AND MEDICAL MICROSYSTEMS XI, 2013, 8615
  • [33] Dip-pen nanolithography in tapping mode
    1600, American Chemical Society (125):
  • [34] Nanopatterning of "hard" magnetic nanostructures via dip-pen nanolithography and a sol-based ink
    Fu, L
    Liu, XG
    Zhang, Y
    Dravid, VP
    Mirkin, CA
    NANO LETTERS, 2003, 3 (06) : 757 - 760
  • [35] Immobilization of motile bacterial cells via dip-pen nanolithography
    Nyamjav, Dorjderem
    Rozhok, Sergey
    Holz, Richard C.
    NANOTECHNOLOGY, 2010, 21 (23) : 235105
  • [36] Protein immobilization without purification via dip-pen nanolithography
    Kim, Kyung Hee
    Kim, Jung Dong
    Kim, Young Jun
    Kong, Seong Ho
    Jung, Seung Yong
    Jung, Hyungil
    SMALL, 2008, 4 (08) : 1089 - 1094
  • [37] Arrays of magnetic nanoparticles patterned via "dip-pen" nanolithography
    Liu, XG
    Fu, L
    Hong, SH
    Dravid, VP
    Mirkin, CA
    ADVANCED MATERIALS, 2002, 14 (03) : 231 - +
  • [38] Fabrication of polymeric photonic structures using dip-pen nanolithography
    Fradkin, Zeev
    Roitman, Marcos
    Bardea, Amos
    Avrahamy, Roy
    Bery, Yeoshua
    Ohana, Hanan
    Zohar, Moshe
    JOURNAL OF MICRO-NANOLITHOGRAPHY MEMS AND MOEMS, 2020, 19 (01):
  • [39] Direct fabrication of protein arrays using dip-pen nanolithography
    Wei, L
    Hong, X
    Guo, W
    Bai, YB
    Li, TJ
    CHEMICAL JOURNAL OF CHINESE UNIVERSITIES-CHINESE, 2002, 23 (07): : 1386 - 1388
  • [40] Electroless deposition of Cu nanostructures on molecular patterns prepared by dip-pen nanolithography
    Chang, Yu-Hsu
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 237