First-Principle Calculation on Hydrogen Dissociation on Pd-doped CNT

ORAL

Abstract

We have calculated hydrogen dissociation on Pd-doped (5,5) CNT using density functional theory (DFT), and examined its influence on the conductance of CNT using a non-equilibrium green's function (NEGF) method. Our results show that the hydrogen dissociation is barrier-less on edge of Pd cluster, while on the top of Pd cluster the molecule would not automatically dissociate. Calculations also show that a dense doping with Pd cluster would modify the band structure of CNT substantially such that the doped tube becomes a semi-metal. The dissociation of hydrogen molecule will further change it into a semiconductor. Our NEGF calculations confirmed the band structure calculation, and suggested that Pd-doped CNT could be used as a hydrogen sensor device by measuring the conductance change of the device induced by hydrogen dissociation.

*Acknowledgment: This work is supported by DOE under grant DE-FG02-02ER45995

Authors

  • Chao Cao

    • QTP, Univ. of Florida
    • University of Florida
  • Alexander Kemper

    • QTP, Univ. of Florida
    • University of Florida
  • Yao He

    • QTP, Univ. of Florida
    • University of Florida
  • Hai Ping Cheng

    • QTP, Univ. of Florida
    • University of Florida
    • University of Florida, Gainesville, FL, 32611-8435