• Chinese Journal of Lasers
  • Vol. 45, Issue 4, 402006 (2018)
Chen Zhongyun1、2, Fang Gan2, Cao Liangcheng2, Fu Yun1, Cao Hongzhong2、*, Jiang Zhaoguo1, and Duan Xuanming2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/CJL201845.0402006 Cite this Article Set citation alerts
    Chen Zhongyun, Fang Gan, Cao Liangcheng, Fu Yun, Cao Hongzhong, Jiang Zhaoguo, Duan Xuanming. Direct Writing of Silver Micro-Nanostructures by Femtosecond Laser Tweezer[J]. Chinese Journal of Lasers, 2018, 45(4): 402006 Copy Citation Text show less
    References

    [1] Lee K S, Kim Y S, Lee K T. et al. Process for 20 nm T gate on Al0.25Ga0.75As/In0.2Ga0.8As/GaAs epilayer using two-step lithography and zigzag foot[J]. Journal of Vacuum Science & Technology B, 24, 1869-1872(2006).

    [2] Yoon J B, Choi Y S, Kim B I. et al. CMOS-compatible surface-micromachined suspended-spiral inductors for multi-GHz silicon RF ICs[J]. IEEE Electron Device Letters, 23, 591-593(2002). http://onlinelibrary.wiley.com/resolve/reference/ADS?id=2002IEDL...23..591Y

    [3] Kim S, Jin J, Kim Y J. et al. High-harmonic generation by resonant plasmon field enhancement[J]. Nature, 453, 757-760(2008). http://www.opticsinfobase.org/abstract.cfm?uri=CLEO-2010-CThQ1

    [4] Fang Z, Peng Q, Song W. et al. Plasmonic focusing in symmetry broken nanocorrals[J]. Nano Letters, 11, 893-897(2011). http://www.ncbi.nlm.nih.gov/pubmed/21186820

    [5] Jiao J, Luo X G, Zhao Q. Design and preparation of planar lens based on v-shaped nanoantennas[J]. Acta Optica Sinica, 37, 0724001(2017).

    [6] Li Z, Bao K, Fang Y et al. Correlation between incident and emission polarization in nanowire surface plasmon waveguides[J]. Nano Letters, 10, 1831-1835(2010). http://pubs.acs.org/doi/abs/10.1021/nl100528c

    [7] Porsons J, Hendry E, Sambles J R. et al. Localized surface-plasmon resonances and negative refractive index in nanostructured electromagnetic metamaterials[J]. Physical Review B, 80, 308-310(2009). http://adsabs.harvard.edu/abs/2009PhRvB..80x5117P

    [8] Kauranen M, Zayats A V. Nonlinear plasmonics[J]. Nature Photonics, 6, 737-748(2012).

    [9] Xu B B, Zhang Y L, Zhang W Y et al. Silver-coated rose petal: Green, facile, low-cost and sustainable fabrication of a SERS substrate with unique superhydrophobicity and high efficiency[J]. Advanced Optical Materials, 1, 56-60(2013). http://onlinelibrary.wiley.com/doi/10.1002/adom.201200019/pdf

    [10] Ueno K, Takabatake S, Onishi K. et al. Homogeneous nano-patterning using plasmon-assisted photolithography[J]. Applied Physics Letters, 99, 011107(2011). http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=5945998

    [11] Fu Y, Hu X, Lu C. et al. All-optical logic gates based on nanoscale plasmonic slot waveguides[J]. Nano Letters, 12, 5784-5790(2012). http://pubs.acs.org/doi/abs/10.1021/nl303095s

    [12] Ni X, Zi J W, Wang Y. et al. Three-dimensional metasurface carpet cloak[C]. Conference on Lasers and Electro-Optics, FW4E, 5(2015).

    [13] Hentschel M, Utikal T, Giessen H. et al. Quantitative modeling of the third harmonic emission spectrum of plasmonic nanoantennas[J]. Nano Letters, 12, 3778-3782(2012). http://europepmc.org/abstract/MED/22686215

    [14] Liu N, Guo H, Fu L. et al. Three-dimensional photonic metamaterials at optical frequencies[J]. Nature Materials, 7, 31-37(2008). http://www.ncbi.nlm.nih.gov/pubmed/18059275

    [15] Chen W T, Chen C J, Wu P C. et al. Optical magnetic response in three-dimensional metamaterial of upright plasmonic meta-molecules[J]. Optics Express, 19, 12837-12842(2011). http://www.ncbi.nlm.nih.gov/pubmed/21716526

    [16] Radke A, Gissibl T, Klotzbücher T. et al. Three-dimensional bichiral plasmonic crystals fabricated by direct laser writing and electroless silver plating[J]. Advanced Materials, 23, 3018-3021(2011). http://onlinelibrary.wiley.com/doi/10.1002/adma.201100543/pdf

    [17] Xie C Q, Zhu X L, Niu J B et al. Micro-and nano-metal structures fabrication technology and applications[J]. Acta Optica Sinica, 31, 0900128(2011).

    [18] Ko S H, Chung J, Hotz N. et al. Metal nanoparticle direct inkjet printing for low-temperature 3D micro metal structure fabrication[J]. Journal of Micromechanics and Microengineering, 20, 125010(2010). http://adsabs.harvard.edu/abs/2010JMiMi..20l5010K

    [19] Höflich K, Yang R B, Berger A. et al. The direct writing of plasmonic gold nanostructures by electron-beam-induced deposition[J]. Advanced Materials, 23, 2657-2661(2011). http://europepmc.org/abstract/MED/21538585

    [20] Kuo W S, Lien C H, Cho K C. et al. Multiphoton fabrication of freeform polymer microstructures with gold nanorods[J]. Optics Express, 18, 27550-27559(2010). http://www.opticsinfobase.org/abstract.cfm?uri=oe-18-26-27550

    [21] Masui K, Shoji S, Asaba K. et al. Laser fabrication of Au nanorod aggregates microstructures assisted by two-photon polymerization[J]. Optics Express, 19, 22786-22796(2011). http://www.ncbi.nlm.nih.gov/pubmed/22109158

    [22] Tanaka T, Ishikawa A, Kawata S. Two-photon-induced reduction of metal ions for fabricating three-dimensional electrically conductive metallic microstructure[J]. Applied Physics Letters, 88, 081107(2006). http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=4821497

    [23] Cao Y Y, Takeyasu N, Tanaka T. et al. 3D metallic nanostructure fabrication by surfactant-assisted multiphoton-induced reduction[J]. Small, 5, 1144-1148(2009). http://europepmc.org/abstract/MED/19291732

    [24] Xu B B, Xia H, Niu L G. et al. Flexible nanowiring of metal on nonplanar substrates by femtosecond-laser-induced electroless plating[J]. Small, 6, 1762-1766(2010). http://onlinelibrary.wiley.com/doi/10.1002/smll.201000511/full

    [25] Lu W E, Zhang Y L, Zheng M L. et al. Femtosecond direct laser writing of gold nanostructures by ionic liquid assisted multiphoton photoreduction[J]. Optical Materials Express, 3, 1660-1673(2013). http://www.opticsinfobase.org/abstract.cfm?uri=ome-3-10-1660

    [26] Liu S, Wang H, Zhang Y L. Processing precision of femtosecond laser induced silver nanowiring[J]. Chinese Journal of Lasers, 44, 0102007(2017).

    [27] Bahns J T, Giebink N C, Xiong H et al. 24(35): OP242-OP246[J]. patterning of electrically conductive organic-inorganic hybrid structures. Advanced Materials(2012).

    [28] Xu B B, Zhang R, Wang H. et al. Laser patterning of conductive gold micronanostructures from nanodots[J]. Nanoscale, 4, 6955-6958(2012). http://www.ncbi.nlm.nih.gov/pubmed/23044631

    [29] Urban A S, Lutich A A, Stefani F D. et al. Laser printing single gold nanoparticles[J]. Nano Letters, 10, 4794-4798(2010). http://pubs.acs.org/doi/abs/10.1021/nl1030425

    [30] Ahn B Y, Duoss E B, Motala M J et al. Omnidirectional printing of flexible, stretchable, and spanning silver microelectrodes[J]. Science, 323, 1590-1593(2009). http://www.jstor.org/stable/10.2307/25471734?Search=yes&resultItemClick=true&searchText=au:&searchText="Ralph%20G.%20Nuzzo"&searchUri=%2Faction%2FdoBasicSearch%3Fymod%3DYour%2Binbound%2Blink%2Bdid%2Bnot%2Bhave%2Ban%2Bexact%2Bmatch%2Bin%2Bour%2Bdatabase.%2BBut%2Bbased%2Bon%2Bthe%2Belements%2Bwe%2Bcould%2Bmatch%252C%2Bwe%2Bhave%2Breturned%2Bthe%2Bfollowing%2Bresults.%26amp%3BQuery%3Dau%3A%2522Ralph%2BG.%2BNuzzo%2522%26amp%3Bsi%3D1

    Chen Zhongyun, Fang Gan, Cao Liangcheng, Fu Yun, Cao Hongzhong, Jiang Zhaoguo, Duan Xuanming. Direct Writing of Silver Micro-Nanostructures by Femtosecond Laser Tweezer[J]. Chinese Journal of Lasers, 2018, 45(4): 402006
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