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    Monte Carlo simulation of temperature-programmed desorption CO/Cu(110) and CO2/Cu(100) systems

    , Article Surface Review and Letters ; Volume 11, Issue 2 , 2004 , Pages 137-143 ; 0218625X (ISSN) Zakeri, K. H ; Dashti, A ; Sharif University of Technology
    2004
    Abstract
    In this investigation, we have studied the kinetics and mechanism of desorption of CO from the Cu(110) surface using a new Monte Carlo simulation and putting emphasis on high order lateral interaction. According to our simulated TPD spectra, for β 0 = 10 K/s the maximum desorption rate occurs at Tm = 218.6 K. Furthermore, analysis of simulated TPD spectra of CO desorption shows that it is strongly lateral-interactive and results an activation energy of CO desorption from Cu(110) that is Ed = 66.6 Kj/mol. These simulated results are compared with other reported results and show excellent agreement. After that we have investigated the kinetics and mechanism of desorption of CO2 from the... 

    An Investigation on the electrochemical behavior of the co/cu multilayer system

    , Article Journal of Nanoscience and Nanotechnology ; Volume 10, Issue 9 , September , 2010 , Pages 5964-5970 ; 15334880 (ISSN) Mahshid, S. S ; Dolati, A ; Sharif University of Technology
    2010
    Abstract
    Co/Cu multilayers were deposited in a sulfate solution by controlling the current and potential for the deposition of cobalt and copper layer respectively. The electrochemical behavior of these multilayers was studied by cyclic voltammetry and current transients. In addition, a mathematical analysis was used to characterize the electrodeposition system. Simultaneously, the nucleation and growth mechanisms were monitored by these techniques. In this case, the results clearly showed that electrodeposition of cobalt layers was a kinetically controlled process while the reduction of copper ions was a diffusion-control process. Although nucleation mechanism of the single Co deposit was found as a... 

    Efficient post-plasma catalytic degradation of toluene via series of CoCu/TiO2 catalysts

    , Article Research on Chemical Intermediates ; Volume 48, Issue 10 , 2022 , Pages 4227-4248 ; 09226168 (ISSN) Ayub, K. S ; Zaman, W. Q ; Miran, W ; Ali, M ; Abbas, Z ; Mushtaq, U ; Shahzad, A ; Yang, J ; Sharif University of Technology
    Springer Science and Business Media B.V  2022
    Abstract
    Volatile organic compounds (VOCs) represent a very important class of pollutants that causes serious health effects. There is an urgent requirement to establish efficient technologies that can reduce and control VOCs. Non-thermal plasma (NTP) is an emerging technology that can decompose low concentration VOCs. However, the low efficiency and high power cost are major hindrances in its commercialization. In this work, Co–Cu with TiO2 support catalysts are prepared by using the deposition precipitation method and utilized in post-plasma catalysis for the efficient degradation of toluene selected as a model VOC. The synergistic effect of Co–Cu/TiO2 with different Co/Cu molar ratios along with...