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    The effect of nanocrystalline tungsten oxide concentration on surface properties of dip-coated hydrophilic WO3-SiO2 thin films

    , Article Journal of Physics D: Applied Physics ; Volume 40, Issue 7 , 2007 , Pages 2089-2095 ; 00223727 (ISSN) Naseri, N ; Azimirad, R ; Akhavan, O ; Moshfegh, A. Z ; Sharif University of Technology
    2007
    Abstract
    WO3-SiO2 compound thin films were deposited on glass substrates using the sol-gel method, and then all the samples were dried at 100 °C and annealed at 400 °C in air. The effect of WO3 concentration on the hydrophilicity of WO3-SiO2 compound films was studied for the first time and it was shown that the films containing 85 mol% of the concentration possessed a superhydrophilic surface without UV or visible irradiation. Optical properties of the films such as transmittance, reflectance and bandgap energy were investigated using a UV-visible spectrophotometer. According to atomic force microscopy, the surface ratio was maximized in 85 mol% concentration of WO3 similar to hydrophilicity.... 

    Hydrophilicity variation of WO3 thin films with annealing temperature

    , Article Journal of Physics D: Applied Physics ; Volume 40, Issue 4 , 2007 , Pages 1134-1137 ; 00223727 (ISSN) Azimirad, R ; Naseri, N ; Akhavan, O ; Moshfegh, A. Z ; Sharif University of Technology
    2007
    Abstract
    The influence of annealing temperature on the hydrophilic property of WO3 thin films deposited by thermal evaporation and sol-gel dip-coating methods was studied and compared for the first time. The thermal evaporated WO3 thin films annealed at 400 °C showed a nearly super-hydrophilic property without UV and visible illumination. By analysing the O(1s) core level peak of XPS spectra, the amount of oxygen contributed at various bonds (including O2-, OH- and H2O) on the surface of the annealed samples at different temperatures were measured. In addition, a correlation between the hydrophilicity and the concentration of chemisorbed water on the film surface was suggested, independent of the... 

    The effect of heating time on growth of NaxWO3 nanowhiskers

    , Article Vacuum ; Volume 82, Issue 8 , 2008 , Pages 821-826 ; 0042207X (ISSN) Azimirad, R ; Goudarzi, M ; Akhavan, O ; Moshfegh, A. Z ; Sharif University of Technology
    2008
    Abstract
    A simple method for synthesis of NaxWO3 nanowhiskers on tungsten thin films with 40 nm thickness sputtered on soda lime substrate as a source of sodium atoms has been reported for the first time. After heat treatment of the W thin films at 650 °C in N2 ambient for different times (15, 80 and 180 min), crystalline NaxWO3 nanowhiskers with [0 0 1] direction were obtained. scanning electron microscopy (SEM), X-ray diffractometry (XRD), X-ray photoelectron spectroscopy (XPS) and optical transmission/reflection measurements were employed to determine various properties of the grown nanowhiskers. Experimental results revealed that size and density of nanowhiskers were dependent on the annealing... 

    Formation of gold nanoparticles in heat-treated reactive co-sputtered Au-SiO 2 thin films

    , Article Applied Surface Science ; Volume 254, Issue 1 SPEC. ISS , 2007 , Pages 286-290 ; 01694332 (ISSN) Sangpour, P ; Akhavan, O ; Moshfegh, A. Z ; Roozbehi, M ; Sharif University of Technology
    Elsevier  2007
    Abstract
    In this work, formation of gold nanoparticles in radio frequency (RF) reactive magnetron co-sputtered Au-SiO 2 thin films post annealed at different temperatures in Ar + H 2 atmosphere has been investigated. Optical, surface topography, chemical state and crystalline properties of the prepared films were analyzed by using UV-visible spectrophotometry, atomic force microscopy (AFM), X-ray photoelectron spectroscopy (XPS) and X-ray diffractometry (XRD) techniques, respectively. Optical absorption spectrum of the Au-SiO 2 thin films annealed at 800 °C showed one surface plasmon resonance (SPR) absorption peak located at 520 nm relating to gold nanoparticles. According to XPS analysis, it was... 

    Physical characteristics of heat-treated nano-silvers dispersed in sol-gel silica matrix

    , Article Nanotechnology ; Volume 17, Issue 3 , 2006 , Pages 763-771 ; 09574484 (ISSN) Babapour, A ; Akhavan, O ; Azimirad, R ; Moshfegh, A. Z ; Sharif University of Technology
    2006
    Abstract
    Silica films containing various concentrations of Ag nanoparticles were deposited on glass slides using a sol-gel process and then heat-treated in air at different temperatures. The films were analysed by using UV-visible spectrophotometry, atomic force microscopy (AFM), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and x-ray photoelectron spectroscopy (XPS) for their optical, surface morphological as well as structural, and chemical properties. After heat-treatment, the optical absorption peaks of Ag nanoparticles show a blueshift and an intensity reduction due to particle size reduction and AgOx nanoparticle formation, respectively. The particle size reduction... 

    A study on the effects of Fex/Niy/MgO(1-x-y) catalysts on the volumetric and electrochemical hydrogen storage of multi-walled carbon nanotubes

    , Article International Journal of Hydrogen Energy ; Volume 35, Issue 1 , 2010 , Pages 231-237 ; 03603199 (ISSN) Reyhani, A ; Mortazavi, S. Z ; Zaker Moshfegh, A ; Nozad Golikand, A ; Sharif University of Technology
    2010
    Abstract
    The effects of various ratios of Fe/Ni/MgO and growth temperatures on yield, diameter and quality of multi-walled carbon nanotubes (MWCNTs) were studied. Thermal gravimetric analysis (TGA) confirmed that the MWCNT yield depends on Fe/Ni ratio with the following order; Fe0.5 Ni0.5 > Fe > Fe0.75 Ni0.25 > Fe0.25 Ni0.75 > Ni. The results indicated that there is an optimum temperature (940 °C) for the MWCNT growth both from quality and quantity (yield) aspects as compared to other temperatures. Moreover, the changes on Fe/Ni to MgO ratio for the MWCNT growth revealed that Fe/Ni/MgO with the ratio of 17.5/17.5/65 had the highest quality and surface area as compared to the other ratios. The... 

    Recent progress on doped ZnO nanostructures for visible-light photocatalysis

    , Article Thin Solid Films ; Volume 605 , April , 2015 , Pages 2–19 ; 00406090 (ISSN) Samadi, M ; Zirak, M ; Naseri, A ; Khorashadizade, E ; Moshfegh, A. Z ; Sharif University of Technology
    Elsevier  2015
    Abstract
    Global environmental pollution and energy supply demand have been regarded as important concerns in recent years. Metal oxide semiconductor photocatalysts is a promising approach to apply environmental remediation as well as fuel generation from water splitting and carbon dioxide reduction. ZnO nanostructures have been shown promising photocatalytic activities due to their non-toxic, inexpensive, and highly efficient nature. However, its wide band gap hinders photo-excitation for practical photocatalytic applications under solar light as an abundant, clean and safe energy source. To overcome this barrier, many strategies have been developed in the last decade to apply ZnO nanostructured... 

    Graphitic carbon nitride (g-C3N4)-based photocatalysts for solar hydrogen generation: Recent advances and future development directions

    , Article Journal of Materials Chemistry A ; Volume 5, Issue 45 , 2017 , Pages 23406-23433 ; 20507488 (ISSN) Naseri, A ; Samadi, M ; Pourjavadi, A ; Moshfegh, A. Z ; Ramakrishna, S ; Sharif University of Technology
    Royal Society of Chemistry  2017
    Abstract
    Graphitic carbon nitride (g-C3N4) is a metal-free conjugated polymer constructed from two-dimensional sheets with a bandgap energy of 2.7 eV, which makes it an applicable and efficient visible-active photocatalyst for H2 production. In the present study, the basic concepts and principles of photocatalytic water splitting have been discussed, and a guide for the selection of appropriate photocatalysts, focusing on the g-C3N4 nanomaterials, has been proposed. Our approach is mainly concentrated on evaluating two factors, namely the solar-to-hydrogen (STH) conversion and apparent quantum yield (AQY) for different photocatalysts, to provide an in-depth analysis and a framework for solar H2... 

    Enhanced photocatalytic activity of ZnO/g-C3N4 nanofibers constituting carbonaceous species under simulated sunlight for organic dye removal

    , Article Ceramics International ; Volume 47, Issue 18 , 2021 , Pages 26185-26196 ; 02728842 (ISSN) Naseri, A ; Samadi, M ; Pourjavadi, A ; Ramakrishna, S ; Moshfegh, A. Z ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Semiconductor-based photocatalysis is an efficient approach for degradation of organic pollutants. In this context, ZnO/g-C3N4 composite nanofibers containing carbonaceous species with different concentrations of g-C3N4 nanosheets (x = 0.25, 0.5, 1, 2, 10 wt%) noted as ZnO/carbon/(x wt%) g-C3N4 are prepared by electrospinning technique. For preparation of the composite nanofibers, bulk g-C3N4 is exfoliated to nanosheets, and then it is mixed with polyvinyl alcohol and appropriate zinc acetate content followed by electrospinning process. Thermal annealing of the as spun zinc acetate/poly(vinyl alcohol)/g-C3N4 nanosheets sample under N2 atmosphere leads to the formation of carbonaceous species... 

    Magnetically recyclable fe3o4@tmu-32 Metal-Organic framework photocatalyst for tetracycline degradation under visible light

    , Article Inorganic Chemistry ; Volume 60, Issue 23 , 2021 , Pages 17997-18005 ; 00201669 (ISSN) Abdollahi, N ; Ostovan, A ; Rahimi, K ; Zahedi, M ; Moshfegh, A. Z ; Sharif University of Technology
    American Chemical Society  2021
    Abstract
    Metal-organic frameworks (MOFs) are a new class of porous crystalline materials being used as photocatalysts for efficient pollutant removal and environmental remediation. In this study, the TMU-32 MOF was synthesized as an effective photocatalyst for the photodegradation of tetracycline (TC) with 96% efficiency in 60 min under visible light. The high photocatalytic activity of the TMU-32 MOF is mainly due to its large specific surface area, which is beneficial for promoting both the adsorption of TC and the separation of the photoinduced charges. Moreover, its desired crystallinity makes it a semiconductor with an appropriate band gap energy. Next, a composite of the TMU-32 MOF with Fe3O4... 

    Magnetically recyclable Fe3O4@TMU-32 metal-organic framework photocatalyst for tetracycline degradation under visible light

    , Article Inorganic Chemistry ; Volume 60, Issue 23 , 2021 , Pages 17997-18005 ; 00201669 (ISSN) Abdollahi, N ; Ostovan, A ; Rahimi, K ; Zahedi, M ; Moshfegh, A. Z ; Sharif University of Technology
    American Chemical Society  2021
    Abstract
    Metal-organic frameworks (MOFs) are a new class of porous crystalline materials being used as photocatalysts for efficient pollutant removal and environmental remediation. In this study, the TMU-32 MOF was synthesized as an effective photocatalyst for the photodegradation of tetracycline (TC) with 96% efficiency in 60 min under visible light. The high photocatalytic activity of the TMU-32 MOF is mainly due to its large specific surface area, which is beneficial for promoting both the adsorption of TC and the separation of the photoinduced charges. Moreover, its desired crystallinity makes it a semiconductor with an appropriate band gap energy. Next, a composite of the TMU-32 MOF with Fe3O4... 

    Shedding light on pseudocapacitive active edges of single-layer graphene nanoribbons as high-capacitance supercapacitors

    , Article ACS Applied Energy Materials ; Volume 2, Issue 5 , 2019 , Pages 3665-3675 ; 25740962 (ISSN) Qorbani, M ; Esfandiar, A ; Mehdipour, H ; Chaigneau, M ; Irajizad, A ; Moshfegh, A. Z ; Sharif University of Technology
    American Chemical Society  2019
    Abstract
    In the field of energy storage by high-rate supercapacitors, there has been an upper limit for the total interfacial capacitance of carbon-based materials. This upper limit originates from both quantum and electric double-layer capacitances. Surpassing this limit has been the focus of intense research in this field. Here, we precisely investigate the effect of chemical functional groups and physical confinement on the electrochemical performance of graphene nanoribbons. We present the results of a quasi-one-dimensional single-layer graphene nanoribbon (120 nm in width and -100 μm in length) microelectrode fabricated by mechanical exfoliation of graphite, followed by electron beam lithography... 

    The effect of annealing temperature on the statistical properties of WO3 surface

    , Article Journal of Statistical Mechanics: Theory and Experiment ; Issue 9 , 2006 ; 17425468 (ISSN) Jafari, G. R ; Saberi, A. A ; Azimirad, R ; Moshfegh, A. Z ; Rouhani, S ; Sharif University of Technology
    2006
    Abstract
    We have studied the effect of annealing temperature on the statistical properties of WO3 surface using atomic force microscopy (AFM) techniques. We have applied both level crossing and structure function methods. Level crossing analysis indicates an optimum annealing temperature of around 400°C at which the effective area of the WO3 thin film is maximum, whereas the composition of the surface remains stoichiometric. The complexity of the height fluctuation of surfaces was characterized by roughness, the roughness exponent and the lateral size of surface features. We have found that there is a phase transition at around 400°C from one set to two sets of roughness parameters. This happens due... 

    CdS nanoparticle sensitized titanium dioxide decorated graphene for enhancing visible light induced photoanode

    , Article Applied Surface Science ; Vol. 320, issue , 30 November , 2014 , pp. 772-779 ; ISSN: 01694332 Yousefzadeh, S ; Faraji, M ; Nien, Y. T ; Moshfegh, A. Z ; Sharif University of Technology
    2014
    Abstract
    CdS/TiO2/graphene (CTG) nanocomposite thin films were synthesized by a facile production route. The TiO2/graphene (TG) nanocomposite was initially fabricated by sol-gel method in such a way that TiO2 nanoparticles loaded on graphene oxide (GO) sheet via photocatalytic process. Then, CdS nanoparticles were deposited on the TG thin film by successive ion layer adsorption and reaction process (SILAR) approach. Based on atomic force microscopy (AFM), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) analyses, the TG thin film possessed a larger surface area as compared with the pure TiO2 thin film due to presence of graphene sheet. UV/visible spectroscopy exhibited... 

    A photocatalytic approach in micro arc oxidation of WO3-TiO 2 nano porous semiconductors under pulse current

    , Article Materials Chemistry and Physics ; Volume 128, Issue 3 , 2011 , Pages 427-432 ; 02540584 (ISSN) Bayati, M.R ; Golestani Fard, F ; Moshfegh, A. Z ; Molaei, R ; Sharif University of Technology
    2011
    Abstract
    Since ultraviolet (UV) irradiation cannot be applied for a long time in practical applications, it is necessary to develop a narrow band gap photocatalyst to decompose environmental pollutants under visible irradiation. In this research, (WO3)x-(TiO2)1-x nano-porous layers were fabricated by micro arc oxidation (MAO) and influence of the electrical current type on their physical and chemical properties was investigated. Morphological studies, performed by SEM technique, revealed that pore size and roughness decreased with the frequency and increased with the duty cycle. The pulse-grown layers had a finer structure when compared to those fabricated under direct current. XRD and XPS results... 

    Field-emission enhancement of molybdenum oxide nanowires with nanoprotrusions

    , Article Journal of Nanoparticle Research ; Volume 13, Issue 1 , January , 2011 , Pages 115-125 ; 13880764 (ISSN) Khademi, A ; Azimirad, R ; Nien, Y. T ; Moshfegh, A. Z ; Sharif University of Technology
    2011
    Abstract
    The field-emission properties of molybdenum oxide nanowires grown on a silicon substrate and its emission performance in various vacuum gaps are reported in this article. A new kind of molybdenum oxides named nanowires with nanoscale protrusions on their surfaces were grown by thermal vapor deposition with a length of ~1 μm and an average diameter of ~50 nm. The morphology, structure, composition and chemical states of the prepared nanostructures were characterized by scanning electron microscopy (SEM), high-resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). According to XRD, XPS, and TEM analyses, the synthesized samples... 

    P-Doped g-C3N4Nanosheet-Modified BiVO4Hybrid Nanostructure as an Efficient Visible Light-Driven Water Splitting Photoanode

    , Article ACS Applied Energy Materials ; Volume 5, Issue 10 , 2022 , Pages 12283-12296 ; 25740962 (ISSN) Feizi Mohazzab, B ; Akhundi, A ; Rahimi, K ; Jaleh, B ; Moshfegh, A. Z ; Sharif University of Technology
    American Chemical Society  2022
    Abstract
    Here, a solution combustion method was employed to construct a photoanode based on bismuth vanadate (BV) composition. To curtail the fast charge recombination, phosphorus-doped g-C3N4 nanosheets (PCNS) in combination with BV are considered a potential approach. The prepared solution combustion facilitated the formation of a BiVO4-PCNS (BV-PCNS) hybrid photoanode with worm-like morphology with a simple setup. The weight ratio of PCNS/BiVO4 and the loading volume/cm2 were optimized to determine the most efficient photoanode. The highest photocurrent density of 0.5 mA/cm2 at 1.23 V vs reversible hydrogen electrode (RHE) under 1 sun illumination was achieved for the hybrid nanostructure at 2 wt... 

    Design and tailoring of one-dimensional ZnO nanomaterials for photocatalytic degradation of organic dyes: a review

    , Article Research on Chemical Intermediates ; Volume 45, Issue 4 , 2019 , Pages 2197-2254 ; 09226168 (ISSN) Samadi, M ; Zirak, M ; Naseri, A ; Kheirabadi, M ; Ebrahimi, M ; Moshfegh, A. Z ; Sharif University of Technology
    Springer Netherlands  2019
    Abstract
    Abstract: Photocatalysis using semiconductors has emerged as a promising wastewater treatment process to overcome the major challenges faced by conventional technologies. The advantages of ZnO nanomaterials over other semiconductors, and their structure-dependent properties, make them important building blocks in nanotechnology as multifunctional materials. Moreover, it has been confirmed that ZnO nanomaterials can exhibit high performance in photodegradation of organic dyes for treatment of industrial effluent. The wurtzite structure of ZnO contains polar and nonpolar planes; the low surface energy and thermodynamic stability of the nonpolar planes enable formation of one-dimensional (1D)... 

    Optimal Ag2S nanoparticle incorporated TiO2 nanotube array for visible water splitting

    , Article RSC Advances ; Volume 4, Issue 15 , 2014 , Pages 7838-7844 ; ISSN: 20462069 Gholami, M ; Qorbani, M ; Moradlou, O ; Naseri, N ; Moshfegh, A. Z ; Sharif University of Technology
    2014
    Abstract
    Free-standing TiO2 nanotube array (TNA) films were fabricated via two-step anodization of a titanium sheet. The X-ray diffraction pattern indicated amorphous TNAs were transformed into anatase after annealing the films at 500 °C in air. The surface of TNA was modified by a sequential-chemical bath deposition (S-CBD) method to fabricate Ag2S nanoparticles and forming TNA/Ag2S-n nanostructure, by varying the number of cycles (n). Based on SEM observations, the produced films consisted of vertically ordered tubular structure arrays, each with 125 nm in diameter and 4.1 μm in length containing silver sulphide nanoparticles of ∼12 nm diameter. X-Ray photoelectron spectroscopy (XPS) confirmed the... 

    In situ derivation of sulfur activated TiO2 nano porous layers through pulse-micro arc oxidation technology

    , Article Materials Research Bulletin ; Volume 46, Issue 10 , 2011 , Pages 1642-1647 ; 00255408 (ISSN) Bayati, M. R ; Golestani Fard, F ; Moshfegh, A. Z ; Molaei, R ; Sharif University of Technology
    2011
    Abstract
    Micro arc oxidation technique, as a facile and efficient process, was employed to grow sulfur doped titania porous layers. This research sheds light on the photocatalytic performance of the micro arc oxidized S-TiO2 nano-porous layers fabricated under pulse current. Morphological and topographical studies, performed by SEM and AFM techniques, revealed that increasing the frequency and/or decreasing the duty cycle resulted in formation of finer pores and smoother surfaces. XRD and XPS results showed that the layers consisted of anatase and rutile phases whose fraction was observed to change depending on the synthesis conditions. The highest anatase relative content was obtained at the...