Infrared surface plasmon polariton on polyaniline-graphite composite

被引:0
作者
Shahzad, Monas [1 ]
Medhi, Gautam [1 ]
Maukonen, Doug [1 ]
Yesiltas, Mehmet [1 ]
Peale, R. E. [1 ]
Buchwald, Walter R.
Cleary, Justin
Liao, Yi [2 ]
Alber, Candace [2 ]
Johns, Valentine K. [2 ]
Hegishte, Rahul [2 ]
Boreman, Glen D. [2 ]
机构
[1] Univ Cent Florida, Dept Phys, Orlando, FL 32816 USA
[2] Univ Florida, Gainesville, FL 32611 USA
来源
ADVANCED ENVIRONMENTAL, CHEMICAL, AND BIOLOGICAL SENSING TECHNOLOGIES IX | 2012年 / 8366卷
关键词
Infrared; Conducting polymers; Graphite; Surface plasmons;
D O I
10.1117/12.919195
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Conducting polymers are potentially useful materials in sensor applications. Polyaniline is one of the most promising of these materials due to high conductivity and plasma frequencies as high as the mid-infrared. The application of this material is still limited because of low conductivity. In this paper, we chemically prepared a composite of co-doped polyaniline with hydrochloric acid and MSA (methane sulfonic acid) in aqueous solution with both colloidal and nano-graphite. Solutions of the composite material were prepared in m-cresol and NMP (N-mthyle-2-pyrrolidone), which are common organic solvents. This approach resulted in material with conductivity higher than either intrinsic polyaniline or graphite alone. The solution of the composite was spin coated on suitable substrates. The thicknesses of the films were measured using atomic force microscope (AFM). Fourier transform infrared spectra (FTIR) and micro-Raman spectra were collected to confirm the composition and determine the infrared thickness. Surface plasmon resonances for grating patterns of this composite material were calculated using experimental determined infrared (IR) ellipsometry data. The goal is to identify a material which has potential application for surface plasmons resonance sensing with high sensitivity and selectivity in IR range.
引用
收藏
页数:6
相关论文
共 10 条
  • [1] Structural, electrical, and thermal Behavior of graphite-polyaniline composites with increased crystallinity
    Bourdo, Shawn
    Li, Zhongrui
    Biris, Alexandru S.
    Watanabe, Fumiya
    Viswanathan, Tito
    Pavel, Ioana
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2008, 18 (03) : 432 - 440
  • [2] Cleary J.W, 2010, P SOC PHOTO-OPT INS, V7673, P5
  • [3] Infrared surface polaritons on antimony
    Cleary, Justin W.
    Medhi, Gautam
    Shahzad, Monas
    Rezadad, Imen
    Maukonen, Doug
    Peale, Robert E.
    Boreman, Glenn D.
    Wentzell, Sandy
    Buchwald, Walter R.
    [J]. OPTICS EXPRESS, 2012, 20 (03): : 2693 - 2705
  • [4] Long-wave infrared surface plasmon grating coupler
    Cleary, Justin W.
    Medhi, Gautam
    Peale, Robert E.
    Buchwald, Walter R.
    [J]. APPLIED OPTICS, 2010, 49 (16) : 3102 - 3110
  • [5] GRAPHITE-INTERCALATION COMPOUNDS - ELECTRONIC-PROPERTIES AND THEIR CORRELATION WITH CHEMISTRY
    FISCHER, JE
    [J]. PHYSICA B & C, 1980, 99 (1-4): : 383 - 394
  • [6] A NEW THEORY OF WOODS ANOMALIES ON OPTICAL GRATINGS
    HESSEL, A
    OLINER, AA
    [J]. APPLIED OPTICS, 1965, 4 (10): : 1275 - &
  • [7] Maier S. A., 2007, PLASMONICS FUNDAMENT, DOI DOI 10.1007/0-387-37825-1
  • [8] Shawn B.E., 2005, CARBON, V43, P2983
  • [9] POLYANILINE - A NOVEL POLYMERIC MATERIAL - REVIEW
    SYED, AA
    DINESAN, MK
    [J]. TALANTA, 1991, 38 (08) : 815 - 837
  • [10] Tompkins H.G, 1993, USES GUIDE ELLIPSOME