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Plastic-compatible low-resistance printable gold nanoparticle conductors for flexible electronics
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D. Huang, F. Liao, S. Molesa, D. Redinger, and V. Subramanian, "Plastic-compatible low-resistance printable gold nanoparticle conductors for flexible electronics," J. Electrochem. Soc., vol.150, no.7, pp. 412-417, 2003.
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An ink-jet-deposited passive component process for RFID
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D. Redinger, R. Farshchi, and V. Subramanian, "An ink-jet-deposited passive component process for RFID," IEEE Trans. Electron Devices, vol.51, no.12, pp. 1978-1983, Dec. 2004.
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IEEE Trans. Electron Devices
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Ink-jetted silver/copper conductors for printed RFID applications
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Flexible Electronics 2004-Materials and Device Technology, N. Fruehauf, B. R. Chalamala, B. E. Gnade, and J. Jang, Eds.,Warrendale, PA
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S. K. Volkman, Y. Pei, D. Redinger, S. Yin, and V. Subramanian, "Ink-jetted silver/copper conductors for printed RFID applications," in Flexible Electronics 2004-Materials and Device Technology,N. Fruehauf, B. R. Chalamala, B. E. Gnade, and J. Jang, Eds.,Warrendale, PA, 2004, Mater. Res. Soc. Symp. Proc. 814, I7.8.
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Quenching of growth of ZnO nanoparticles by adsorption of octanethiol
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A novel transparent air-stable printable n-type semiconductor technology using ZnO nanoparticles
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S. K. Volkman, S. E. Molesa, J. B. Lee, B. A. Mattis, A. De la Fuente Vornbrock, T. Bakhishev, and V. Subramanian, "A novel transparent air-stable printable n-type semiconductor technology using ZnO nanoparticles," in 2004 IEEE Int. Electron Devices Meeting Tech. Dig., pp. 769-772.
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Solution-processed zinc oxide field-effect transistors based on self-assembly of colloidal nanorods
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T. Bakhishev, S. K. Volkman, and V. Subramanian, "Solution-processed ZnO nanowire-network thin film transistors for transparent electronics," in 2005 Mater. Res. Soc. Fall Symp., Boston, MA, Dec. 2005, Paper DD5.5.
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D. Redinger and V. Subramanian, "High-performance chemical-bathdeposited zinc oxide thin-film transistors," IEEE Trans. Electron Devices, vol.54, no.6, pp. 1301-1307, Jun. 2007.
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