• Acta Photonica Sinica
  • Vol. 49, Issue 10, 1031002 (2020)
Jian WANG, Jun-qi XU, Jun-hong SU, Yang LI, and Yun-yun SHI
Author Affiliations
  • Shaanxi Province Thin Film Technology and Optical Test Open Key Laboratory,Xi'an Technological University,Xi'an 710021,China
  • show less
    DOI: 10.3788/gzxb20204910.1031002 Cite this Article
    Jian WANG, Jun-qi XU, Jun-hong SU, Yang LI, Yun-yun SHI. Research on Infrared Anti-reflection Thin Film Devices with Compatibility of Electromagnetic Shielding[J]. Acta Photonica Sinica, 2020, 49(10): 1031002 Copy Citation Text show less
    References

    [1] Xiao-guo FENG, Ge ZHANG, Yang TANG. Electromagnetic shielding properties of metallic mesh coatings. Optics and Precision Engineering, 23, 686-691(2015).

    [2] Xiao-han LIU, Jing-li ZHAO, Xiao-guo FENG. Electromagnetic shielding of highly transparent inductive mesh. Optics and Precision Engineering, 20, 80-87(2012).

    [3] Xiao-han LIU, Xiao-guo FENG, Jing-li ZHAO. Electroless nickel plating of thin copper mesh on K9 substrate. Optics and Precision Engineering, 18, 2185-2191(2010).

    [4] Zhen-gang LU, Jiu-bin TAN, Peng JIN. Equivalent refractive index model on shielding effectiveness analysis of high transparency metallic mesh. Optics and Precision Engineering, 949-954(2006).

    [5] Jian ZHANG, Jin-song GAO, Nian-xi XU. Design and study of optically transparent band-pass frequency selective surface. Acta Physica Sinica, 62, 416-422(2013).

    [6] Yun CHEN, Yan-ru LI, Hong-sheng ZHANG. Improvement on fabrication technology of metallic mesh based on ZnS. Chinese Optics, 7, 131-136(2014).

    [7] Yu CHEN. Study on electromagnetic shielding of infrared /visible optical window, 34, 393-397(2012).

    [8] R R MOHAN, S J VARMA, J SANKARAN. Impressive electromagnetic shielding effects exhibited by highly ordered, micrometer thick polyaniline films. Applied Physics Letters, 108, 154101(2016).

    [9] P J BORA, K J VINOY, P C RAMAMURTHY. Nickel coated flyash (Ni-FAC) cenosphere doped polyaniline composite film for electromagnetic shielding. Materials Research Express, 2, 036403(2015).

    [10] P J BORA, N MALLIK, P C RAMAMURTHY. Poly(vinyl butyral)-polyaniline-magnetically functionalized fly ash cenosphere composite film for electromagnetic interference shielding. Composites Part B: Engineering, 224-233(2016).

    [11] J JUNG. Highly stretchable and transparent electromagnetic interference shielding film based on silver nanowire percolation network for wearable electronics applications. ACS Applied Materials & Interfaces, 9, 44609-44616(2017).

    [12] D H KIM, Y KIM, J W KIM. Transparent and flexible film for shielding electromagnetic interference. Materials & Design, 89, 703-707(2016).

    [13] D G KIM, J H CHOI, D K CHOI. Highly bendable and durable transparent electromagnetic interference shielding film prepared by wet sintering of silver nanowires. ACS Applied Materials & Interfaces, 10, 29730-29740(2018).

    [14] G WU, Y CHEN, H ZHAN. UItrathin and flexible carbon nanotube/polymer composite films with excellent mechanical strength and electromagnetic interference shieldling. Carbon, 3, 472-480(2020).

    [15] Y Y WANG, Z H ZHOU, C G ZHOU. Lightweight and robust Carbon nanotube/Polyimide foam for efficient and heat-resistant electromagnetic interference shielding and microwave absorption. ACS Applied Materials &Interfaces, 2, 8704-8712(2020).

    [16] T T LI, Y WANG, H K PENG. Lightweight, flexible and superhydrophobic composite nanofiber films inspired by nacre for highly electromagnetic interference shielding. Composites Part A: Applied Science and Manufacturing, 1, 30434-30438(2020).

    [17] Xian-jun SU, Jia-yuan HE. Fabrication of antireflectin coating on ZnS substrate. Optical Instruments, 68-70(2001).

    [18] Y MATSUOKA, S MATHONNEIRE, S PETERS. Broadband multilayer anti-reflection coating for mid-infrared range from 7  μm to 12  μm. Applied Optics, 57, 1645(2018).

    [19] A YENISOY, C YESILYAPRAK, S TUZEMEN. High efficient ultra-broadband anti-reflection coating on silicon for infrared applications. Infrared Physics & Technology, 100, 82-86(2019).

    [20] S B GE, W G LIU, S ZHOU. Design and preparation of a micro-pyramid structured thin film for broadband infrared antireflection. Coatings, 8, 192(2018).

    [21] M KOHIN, S J WEIN, J D TRAYLOR. Analysis and design of transparent conductive coatings and filters. Optical Engineering, 32, 911-925(1993).

    [22] R URICH. Far-infrared properties of metallic mesh and its complementary structure. Infrared Physics, 7, 37-57(1967).

    Jian WANG, Jun-qi XU, Jun-hong SU, Yang LI, Yun-yun SHI. Research on Infrared Anti-reflection Thin Film Devices with Compatibility of Electromagnetic Shielding[J]. Acta Photonica Sinica, 2020, 49(10): 1031002
    Download Citation