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    Structures of Cu n + (n = 3-10) Clusters Obtained by Infrared Action Spectroscopy

    , Article Journal of Physical Chemistry Letters ; Volume 10, Issue 9 , 2019 , Pages 2151-2155 ; 19487185 (ISSN) Lushchikova, O. V ; Huitema, D. M. M ; López Tarifa, P ; Visscher, L ; Jamshidi, Z ; Bakker, J. M ; Sharif University of Technology
    American Chemical Society  2019
    Abstract
    Coinage metal clusters are of great importance for a wide range of scientific fields, ranging from microscopy to catalysis. Despite their clear fundamental and technological importance, the experimental structural determination of copper clusters has attracted little attention. We fill this gap by elucidating the structure of cationic copper clusters through infrared (IR) photodissociation spectroscopy of Cu n + -Ar m complexes. Structures of Cu n + (n = 3-10) are unambiguously assigned based on the comparison of experimental IR spectra in the 70-280 cm -1 spectral range with spectra calculated using density functional theory. Whereas Cu 3 + and Cu 4 + are planar, starting from n = 5, Cu n +... 

    Fully-Tunable microwave photonic filter with complex coefficients using tunable delay lines based on frequency-Time conversions

    , Article Optics Express ; Volume 20, Issue 20 , 2012 , Pages 22728-22734 ; 10944087 (ISSN) Mokhtari, A ; Preuler, S ; Jamshidi, K ; Akbari, M ; Schneider, T ; Sharif University of Technology
    Abstract
    A fully electrically tunable microwave photonic filter is realized by the implementation of delay lines based on frequency-Time conversion. The frequency response and free spectral range (FSR) of the filter can be engineered by a simple electrical tuning of the delay lines. The method has the capability of being integrated on a silicon photonic platform. In the experiment, a 2-Tap tunable microwave photonic filter with a 3-dB bandwidth of 2.55 GHz, a FSR of 4.016 GHz, a FSR maximum tuning range from -354 MHz to 354 MHz and a full FSR translation range is achieved  

    Synergistic enhancement of photocatalytic antibacterial effects in high-strength aluminum/TiO2 nanoarchitectures

    , Article Ceramics International ; Volume 46, Issue 15 , October , 2020 , Pages 24267-24280 Mesbah, M ; Sarraf, M ; Dabbagh, A ; Nasiri Tabrizi, B ; Paria, S ; Banihashemian, S. M ; Bushroa, A. R ; Faraji, G ; Tsuzuki, T ; Madaah Hosseini, H. R ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Unlike gold and silver, aluminum shows a localized surface plasmon resonance (LSPR) over a wide spectral range from ultraviolet (UV) to the visible region. Herein, we demonstrate a new process to optically couple TiO2 nanotubes (NTs) with a high-strength aluminum substrate, to achieve a synergistic enhancement of photocatalytic antibacterial effects through controlled LSPR of aluminum. The high-strength aluminum substrate was produced by tubular channel angular pressing (TCAP). Their LSPR was tailored through the formation of superficial nano-concave arrays (NCAs) with desired concave diameters. A layer of aligned TiO2 NTs was fabricated on the surface of aluminum nano-concave arrays (Al...