290
Views
5
CrossRef citations to date
0
Altmetric
Articles

Development and characterization of flexible antenna based on conductive metal pattern on polyester fabric

, &
Pages 1888-1898 | Received 29 Aug 2016, Accepted 21 Feb 2017, Published online: 02 Mar 2017

References

  • Abadi, Z., Bidoki, M., Mottaghitalab, V., Benvidi, A., & Shams Nateri, A. (2014). Inkjet deposited silver nanoparticle electrodes. Iranian Journal of Material Science and Engineering, 11(3), 1–9.
  • Abadi, Z., Mottaghitalab, V., Bidoki, M., & Benvidi, A. (2014a). Flexible biosensor using inkjet printing of silver nanoparticles. Sensor Review, 34, 360–366.10.1108/SR-07-2013-704
  • Abadi, Z., Mottaghitalab, V., Bidoki, M., & Benvidi, A. (2014b). The inkjet printing of reducible AgNPs as amperometric glucose biosensor electrode. Progress in Color Colorants and Coating, 7(4), 285–294.
  • Abbasi, Q. H., Rehman, M. U., Yang, X., Alomainy, A., Qaraqe, K., & Serpedin, E. (2013). Ultrawideband band-notched flexible antenna for wearable applications. IEEE Antennas and Wireless Propagation Letters, 12, 1606–1609.10.1109/LAWP.2013.2294214
  • Balaraju, J., Narayanan, T. S., & Seshadri, S. (2006). Structure and phase transformation behaviour of electroless Ni–P composite coatings. Materials Research Bulletin, 41, 847–860.10.1016/j.materresbull.2005.09.024
  • Bidoki, S. M., Lewis, D. M., Clark, M., Vakorov, A., Millner, P. A., & McGorman, D. (2007). Ink-jet fabrication of electronic components. Journal of Micromechanics and Microengineering, 17, 967.10.1088/0960-1317/17/5/017
  • Chen, W. D., Lin, Y.-H., Chang, C.-P., Sung, Y., Liu, Y.-M., & Ger, M.-D. (2011). Fabrication of high-resolution conductive line via inkjet printing of nano-palladium catalyst onto PET substrate. Surface and Coatings Technology, 205, 4750–4756.
  • Chen, H., Zhang, J., Ouyang, Y., & Zhong, X. (2007). Preparation of Fe–Zn alloy deposits by electroless plating. Transactions of the IMF, 85, 270–273.10.1179/174591907X229653
  • Cobley, A., Mason, T., & Saez, V. (2011). Review of effect of ultrasound on electroless plating processes. Transactions of the IMF, 89, 303–309.10.1179/174591911X13170500147670
  • Coosemans, J., Hermans, B., & Puers, R. (2006). Integrating wireless ECG monitoring in textiles. Sensors and Actuators A: Physical, 130–131, 48–53.10.1016/j.sna.2005.10.052
  • Cordente, N., Respaud, M., Senocq, F., Casanove, M.-J., Amiens, C., & Chaudret, B. (2001). Synthesis and magnetic properties of nickel nanorods. Nano Letters, 1, 565–568.
  • Gan, X., Wu, Y., Liu, L., Shen, B., & Hu, W. (2008). Electroless plating of Cu–Ni–P alloy on PET fabrics and effect of plating parameters on the properties of conductive fabrics. Journal of Alloys and Compounds, 455, 308–313.10.1016/j.jallcom.2007.01.054
  • Goldenstein, A., Rostoker, W., Schossberger, F., & Gutzeit, G. (1957). Structure of chemically deposited nickel. Journal of the Electrochemical Society, 104, 104–110.10.1149/1.2428503
  • Graham, A. H., Lindsay, R. W., & Read, H. J. (1965). The structure and mechanical properties of electroless nickel. Journal of the Electrochemical Society, 112, 401–413.10.1149/1.2423557
  • Haghdoost, F., Mottaghitalab, V., & Haghi, A. K. (2015). Comfortable textile-based electrode for wearable electrocardiogram. Sensor Review, 35, 20–29.10.1108/SR-08-2013-719
  • Hertleer, C., Rogier, H., Vallozzi, L., & Van Langenhove, L. (2009). A textile antenna for off-body communication integrated into protective clothing for firefighters. IEEE Transactions on Antennas and Propagation, 57, 919–925.10.1109/TAP.2009.2014574
  • Hertleer, C., Tronquo, A., Rogier, H., & Van Langenhove, L. (2008). The use of textile materials to design wearable microstrip patch antennas. Textile Research Journal, 78, 651–658.10.1177/0040517507083726
  • Hu, B., Li, D., Ala, O., Manandhar, P., Fan, Q., Kasilingam, D., & Calvert, P. D. (2011). Textile-based flexible electroluminescent devices. Advanced Functional Materials, 21, 305–311.10.1002/adfm.201001110
  • Inoue, K., Matsui, K., Watanabe, M., & Honma, H. (2009). Effect of UV irradiation on electroless Cu–Ni–P plating on cycloolefin polymer. Transactions of the IMF, 87, 51–54.10.1179/174591909X412431
  • Jiang, H., Liu, Z., Wang, X., & Wang, Z. (2007). Effect of triethanolamine on deposition rate of electroless copper plating. Transactions of the IMF, 85, 103–106.10.1179/174591907X177543
  • Karaguzel, B., Merritt, C. R., Kang, T., Wilson, J. M., Nagle, H. T., Grant, E., & Pourdeyhimi, B. (2008). Utility of nonwovens in the production of integrated electrical circuits via printing conductive inks. Journal of the Textile Institute, 99, 37–45.10.1080/00405000701547748
  • Karimi, R., Mohtaram, F., Mottaghitalab, V., & Mehrizi, M. K. (2016). Development of wearable rectangular textile antenna and investigation of its performance under bent condition at different angles. Journal of Industrial Textiles, 8, 1–16.
  • Keong, K., Sha, W., & Malinov, S. (2002). Crystallisation kinetics and phase transformation behaviour of electroless nickel–phosphorus deposits with high phosphorus content. Journal of Alloys and Compounds, 334, 192–199.10.1016/S0925-8388(01)01798-4
  • Li, L., & An, M. (2008). Electroless nickel–phosphorus plating on SiCp/Al composite from acid bath with nickel activation. Journal of Alloys and Compounds, 461, 85–91.10.1016/j.jallcom.2007.06.126
  • Magdassi, S., Bassa, A., Vinetsky, Y., & Kamyshny, A. (2003). Silver nanoparticles as pigments for water-based ink-jet inks. Chemistry of Materials, 15, 2208–2217.10.1021/cm021804b
  • Mohammadian, M., Afzali, A., Mottaghitalab, V., & Haghi, A. (2012). Washing and rubbing fastness of electroless plated polyester conductive fabric. MATERIALE PLASTICE, 49, 182–185.
  • Nasirpouri, F., Bending, S. J., Peter, L. M., & Fangohr, H. (2011). Electrodeposition and magnetic properties of three-dimensional bulk and shell nickel mesostructures. Thin Solid Films, 519, 8320–8325.10.1016/j.tsf.2011.03.058
  • Roh, J.-S., Chi, Y.-S., Lee, J.-H., Tak, Y., Nam, S., & Kang, T. J. (2010). Embroidered wearable multiresonant folded dipole antenna for FM reception. IEEE Antennas and Wireless Propagation Letters, 9, 803–806.10.1109/LAWP.2010.2064281
  • Sankaralingam, S., & Gupta, B. (2010). Development of textile antennas for body wearable applications and investigations on their performance under bent conditions. Progress In Electromagnetics Research B, 22, 53–71.10.2528/PIERB10032705
  • Shanmuganantham, T., & Raghavan, S. (2009). Design of a compact broadband microstrip patch antenna with probe feeding for wireless applications. AEU-International Journal of Electronics and Communications, 63, 653–659.10.1016/j.aeue.2008.05.009
  • Singh, I., & Tripathi, D. V. (2011). Micro strip patch antenna and its applications: A survey. International Journal of Computer Technology and Applications, 2, 1595–1599.
  • Sosa-Pedroza, J., Martinez-Zuiga, F., & Enciso-Aguilar, M. (2010). Satellite communications. United Kingdom: INTECH Open Access Publisher.10.5772/253
  • Wang, Z., Zhang, L., & Volakis, J. L. (2013). Textile antennas for wearable radio frequency applications. Textiles and Light Industrial Science and Technology, 2(3), 104–112.
  • Zhu, S., & Langley, R. (2009). Dual-band wearable textile antenna on an EBG substrate. IEEE Transactions on Antennas and Propagation, 57, 926–935.10.1109/TAP.2009.2014527

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.