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    High-efficiency CdTe/CdS core/shell nanocrystals in water enabled by photo-induced colloidal hetero-epitaxy of CdS shelling at room temperature

    , Article Nano Research ; Volume 8, Issue 7 , July , 2015 , Pages 2317-2328 ; 19980124 (ISSN) Zare, H ; Marandi, M ; Fardindoost, S ; Sharma, V. K ; Yeltik, A ; Akhavan, O ; Demir, H. V ; Taghavinia, N ; Sharif University of Technology
    Tsinghua University Press  2015
    Abstract
    We report high-efficiency CdTe/CdS core/shell nanocrystals synthesized in water by epitaxially growing CdS shells on aqueous CdTe cores at room temperature, enabled by the controlled release of S species under low-intensity ultraviolet (UV) light illumination. The resulting photo-induced dissociation of S2O32− ions conveniently triggers the formation of critical two-dimensional CdS epitaxy on the CdTe surface at room temperature, as opposed to initiating the growth of individual CdS core-only nanocrystals. This controlled colloidal hetero-epitaxy leads to a substantial increase in the photoluminescence (PL) quantum yield (QY) of the shelled nanocrystals in water... 

    Enhanced thermal stability and biocompatibility of gold nanorods by graphene oxide

    , Article Plasmonics ; 2017 , Pages 1-10 ; 15571955 (ISSN) Shirshahi, V ; Hatamie, S ; Tabatabaei, S. N ; Salimi, M ; Saber, R ; Sharif University of Technology
    Abstract
    In the present study, the effect of nanosized graphene oxide layer on thermal stability and biocompatibility of gold nanorods has been examined. The graphene oxide-wrapped gold nanorods were prepared by electrostatic interaction between negatively charged graphene oxide and positively charged nanorods. The resulting nanohybrids were then heated at different time intervals to 95 °C in a water bath to assess the effect of heat on the rods morphology. The structural changes in gold nanorods were monitored via UV-Vis spectroscopy measurements and transmission electron microscopy images. In similar experiments, the graphene oxide used to wrap gold nanorods was reduced by ascorbic acid in a 95 °C... 

    Morphological and mechanical properties of styrene butadiene rubber/nano copper nanocomposites

    , Article Results in Physics ; Volume 7 , 2017 , Pages 338-344 ; 22113797 (ISSN) Hadizadeh Harandi, M ; Alimoradi, F ; Rowshan, G ; Faghihi, M ; Keivani, M ; Abadyan, M ; Sharif University of Technology
    Elsevier B.V  2017
    Abstract
    In this research, rubber based nanocomposites with presence of nanoparticle has been studied. Styrene butadiene rubber (SBR)/nanocopper (NC) composites were prepared using two-roll mill method. Transmission electron microscope (TEM) and scanning electron microscope (SEM) images showed proper dispersion of NC in the SBR matrix without substantial agglomeration of nanoparticles. To evaluate the curing properties of nanocomposite samples, swelling and cure rheometric tests were conducted. Moreover, the rheological studies were carried out over a range of shear rates. The effect of NC particles was examined on the thermal behavior of the SBR using thermal gravimetric analysis (TGA). Furthermore,... 

    Enhanced thermal stability and biocompatibility of gold nanorods by graphene oxide

    , Article Plasmonics ; Volume 13, Issue 5 , 2018 , Pages 1585-1594 ; 15571955 (ISSN) Shirshahi, V ; Hatamie, S ; Tabatabaei, S. N ; Salimi, M ; Saber, R ; Sharif University of Technology
    Abstract
    In the present study, the effect of nanosized graphene oxide layer on thermal stability and biocompatibility of gold nanorods has been examined. The graphene oxide-wrapped gold nanorods were prepared by electrostatic interaction between negatively charged graphene oxide and positively charged nanorods. The resulting nanohybrids were then heated at different time intervals to 95 °C in a water bath to assess the effect of heat on the rods morphology. The structural changes in gold nanorods were monitored via UV-Vis spectroscopy measurements and transmission electron microscopy images. In similar experiments, the graphene oxide used to wrap gold nanorods was reduced by ascorbic acid in a 95 °C... 

    The growth of CoSi2 thin film in Co/W/Si(100) multilayer structures

    , Article Solid State Communications ; Volume 128, Issue 6-7 , 2003 , Pages 239-244 ; 00381098 (ISSN) Moshfegh, A. Z ; Hashemifar, S. J ; Akhavan, O ; Sharif University of Technology
    2003
    Abstract
    The growth of a CoSi2 thin film has been studied for the Co/W/Si(100) system. The Co film with a thickness of about 30 nm was grown over 12 nm sputtered W interlayer using the evaporation technique. The deposited multilayer structure was annealed in an N2 (80%)+H2 (20%) environment in a temperature range from 400 to 1000 °C for 60 min. The samples were characterized by X-ray diffraction (XRD), four point probe sheet resistance (RS) measurement and scanning electron microscopy (SEM). Using the deposited Co/Si(100) system as a reference point, a CoSi2 layer was formed at 800 °C with undesirable crystalline structure and the RS value of about 1.6Ω/□. Instead, for the Co/W/Si(100) system, it has... 

    Study of Morphology and Effectiveness Mechanism of Mg2Si Phase on Mechanical Properties of Magnesium Alloy AZ91

    , M.Sc. Thesis Sharif University of Technology Piryaee, Mohammad Mahdi (Author) ; Varahram, Nasser (Supervisor) ; Aashouri, Hossein (Supervisor)
    Abstract
    AZ91 alloy (Mg-9Al-1Zn-0.2Mn) is the most important Magnesium casting alloy and because of its high strength to weight ratio, is increasingly demanded in automobile and aerospace industry as the best alloy of the present century. Poor creep resistance of AZ91 alloy is attributed to poor elevated temperature properties of Mg17Al12, which has melting point of 437°C. The softening of the Mg17Al12 phase at elevated temperature is the main cause of grain boundary sliding. in this investigation, The effects of addition of Si element on the microstructure and mechanical properties of AZ91 alloy have been studied as a solution to produce high temperature resistant magnesium alloys. The results show... 

    New thermally stable and organosoluble polyamides and copolyamides containing oxazolopyridine pendant moiety

    , Article Arabian Journal for Science and Engineering ; Volume 45, Issue 6 , March , 2020 , Pages 4727-4735 Khodadadipoor, Z ; Koohmareh, G. A ; Mohebbi Zinab, J ; Sharif University of Technology
    Springer  2020
    Abstract
    In this study, a new series of thermally stable polyamides and copolyamides are prepared through reaction of oxazolopyridine functional diamine, 2-(3,5-diaminophenyl) oxazolo [4,5-b] pyridine with four commercial dicarboxylic acids: pyridine 2,6-dicarboxylic acid, pyridine 2,5-dicarboxylic acid, 4,4′-dicarboxylic acid diphenyl sulfone and 4,4′-dicarboxylic acid diphenyl ether. The synthesized polymers were characterized by FT-IR and 1HNMR spectroscopy. The physical properties of the polymers including solubility and viscosity were studied. The results displayed good solubility, viscosity and high thermal stability. Their viscosities and glass transition temperatures are in the range of... 

    A Study on the Thermal Stability and Microstructure of Nanocrystalline Al-Ti(Ni) Alloys Synthesized by Mechanical Alloying

    , M.Sc. Thesis Sharif University of Technology Motaharinejad, Ruhollah (Author) ; Maddah Hosseini, Hamid Reza (Supervisor) ; Seyyed Reihani, Morteza (Supervisor)
    Abstract
    In the present investigation, the mechanical alloying (MA) technique was employed to produce nanocrystalline Al-Ti Powder mixtures. Elemental Al and Ti powders were mixed with different compositions (0, 5, 10, and 20 wt.% Ti) and then, milled in a vibratory mill up to 7 hr. The variations of powder morphology and particle size, apparent and tap densities, microstructure, grain size, lattice strain, and microhardness were studied with increasing the milling time. While dissolution of Ti in the Al matrix resulted to the formation of supersaturated Al-Ti solid solution in the samples containing 5 and 10 wt.% Ti, the specimen with 20 wt.% Ti, eventually, led to nanocomposite powder with... 

    Study of Thermal Behavior and mechanical properties of Phenolic/Clay Nanocomposits by Molecular Dynamics Simulations

    , M.Sc. Thesis Sharif University of Technology Hashemi, Niloofar (Author) ; Hosseni Kordkheili, Ali (Supervisor)
    Abstract
    Polymer/clay nanocomposites (PCNs) are multifunctional materials that have superior mechanical and thermal properties than polymer-based materials. These materials are obtained by adding small amounts of nanoclays to a polymer matrix. In this work, a molecular dynamics simulation was carried out to investigate the thermomechanical properties of thermosetting clay nanocomposites. The polymer matrix was composed of phenolic molecules with the crosslink density of 0.74, and different structures of PCNS were considered by varying the amount of polymer molecules. Molecular dynamics simulations of different nanocomposite structures were used to provide the atomistic insights, the molecular... 

    Effect of Intermediate Ni Layer on Glass-Stainless Steel Seal at Solid Oxide Fuel Cell

    , M.Sc. Thesis Sharif University of Technology Fakouri Hassanabadi, Masoud (Author) ; Kokabi, Amir Hossein (Supervisor) ; Nemati, Ali (Co-Advisor)
    Abstract
    In order to prevent deterioration of metallic interconnects in solid oxide fuel cells (SOFC), while interacting with glass-ceramic sealant, a nickel electroplated ferritic stainless steel (UNS 430) was used. After applying a layer of powdered glass (SiO2-B2O3-Al2O3-Na2O-BaO-K2O) with thickness around 300-450 μm on the ferritic stainless steel sheets with dimansion of 0.5 × 60 × 60 mm and 0.5 × 10 × 10 mm, samples were heated at temperatures between 770-850 °C and durations of 1 to 15 hours. To evaluate the effect of the Ni layer, two types of sample (only sanded and only electropolished) were also submitted to the same process, and their results were compared with the coated samples. XRF,... 

    Microstructure Investigation of Low Temperature Carburized Precipitation Hardenable 17-4 And 13-8 Mo Stainless Steels

    , M.Sc. Thesis Sharif University of Technology Baniasadi, Fazel (Author) ; Asgari, Sirous (Supervisor)
    Abstract
    Recently, low temperature carburizing of stainless steels, especially austenitic stainless steels, have been considered by so many researchers. The improvement of tribological properties of which is so impressive so much so that such properties like hardness and wear resistance increase to manifold. In this research, low temperature carburizing was done on two kinds of precipitation hardenable stainless steels 17-4 and 13-8 Mo. After that, microstructural investigations were done on the carburized surfaces and in 5, 10, 20, 80, and 150 micrometer depths. Moreover, in each depth, in order to phase structure and tribological properties investigation, XRD and microhardness tests were done,... 

    The Effect of Non-isothermal Annealing on the Microstructure and Mechanical Properties of Severely Deformed Aluminum 1xxx

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Amir Reza (Author) ; Kazeminezhad, Mohsen (Supervisor)
    Abstract
    Multi-directional forging is used as a severe plastic deformation process for producing ultrafine grained materials in which a sample undergoes consecutive compressive strains and as a result, coarse grains break to smaller grains. The strength of multi-directionally forged material increases because of grain refinement, although the high strain energy reserved in a sample after large plastic deformation lessens its ductility. Metals experience non-isothermal heating cycle during annealing till they reach the target temperature. Non-isothermal heating cycle can affect microstructure and mechanical properties of severely deformed material due to its high strain energy. Thus, investigation of... 

    Modification of Three-Way Catalyst (Twc)Formulation for Gasoline Vehicles with the Goal of Improving Its Thermal Stability

    , M.Sc. Thesis Sharif University of Technology Razmara, Shadi (Author) ; Hamzehlouyan, Tayebeh (Supervisor)
    Abstract
    Vehicle exhaust gas catalysts play a significant role in air pollution control. In order to solve the problems of cold start and limited supply of precious metals, new studies have focused on the development of three-way catalysts for gasoline vehicles with small amounts of precious metals and increase thermal stability. Different metal ions, especially rare earth metals, due to different physical and chemical properties, show different reinforcing effects on the properties of ceria-zirconia-based materials. Previous studies have shown that the enhancing effect of these materials and the ceria-zirconia ratio on catalyst activity and stability, as well as studies on thermal stability at 1050... 

    Influence of monoethanolamine on thermal stability of starch in water based drilling fluid system

    , Article Petroleum Exploration and Development ; Volume 45, Issue 1 , February , 2018 , Pages 167-171 ; 18763804 (ISSN) Sharif Nik, M. A ; Ameri Shahrabi, M. J ; Heidari, H ; Valizadeh, M ; Sharif University of Technology
    Elsevier B.V  2018
    Abstract
    To improve the thermal stability of starch in water-based drilling fluid, monoethanolamine (MEA) was added, and the effect was investigated by laboratory experiment. The experimental results show that the addition of monoethanolamine (MEA) increases the apparent viscosity, plastic viscosity, dynamic shear force, and static shear force of the drilling fluid, and reduces the filtration rate of drilling fluid and thickness of mud cake apparently. By creating hydrogen bonds with starch polymer, the monoethanolamine can prevent hydrolysis of starch at high temperature. Starch, as a natural polymer, is able to improve the rheological properties and reduce filtration of drilling fluid, but it works... 

    Study of Solutions for Skin Temperature Reduction in Process Fired Heaters

    , M.Sc. Thesis Sharif University of Technology Harounzadeh Arani, Amir (Author) ; Farhadi, Fatholah (Supervisor)
    Abstract
    Fired heaters are large and complex items used in process plants. Tubular furnaces used mainly in chemical, petrochemical, and refinery process plants. For many process plants, the fired heater performance will determine process unit run-length. High tube metal temperature and coking in the process-fired heaters is one of the serious problems of process plants. Coke forms because the oil in tubes is no longer thermally stable at the operating conditions. Oil film temperature in the inside wall of tube somewhere that, process fluid has highest temperature and lowest velocity. Therefore, process fluid peak film temperature will determined rate of coke formation. This temperature is dependent... 

    Crystallization Kinetics and Formation of Nano Crystals in Al-Ni-Fe-MM System and its Effect on Mechanical Properties

    , Ph.D. Dissertation Sharif University of Technology Mansouri Hassan Abadi, Mehdi (Author) ; Varahram, Naser (Supervisor) ; Simchi, Abdolreza (Supervisor)
    Abstract
    In the present work, primary crystallization mechanism, glass forming ability, thermal stability and formation of nano Al crystals and their effects on the mechanical behavior were investigated in various Al amorphous alloy containing misch metal including Al90-xNi10-yFeyMMx (x=2-10%at, y=0-10 %at) alloys. In order to elaborate the Cu effect on the primary crystallization mechanism Al86Ni10-xCuxMM4(x=0-2/5) alloy were prepared. The results showed that in Al90-xNi10MMx (x=2-10 %at) alloying system variation of the misch metal from 2 to 10 atomic present results in increase in glass forming ability. The crystallization onset temperature also increases from 405 K in Al88Ni10MM2 to 630 K in... 

    Fabrication of “Boron-Clay-Polymer" and "Lead-Clay-Polymer" Nanocomposites for Radiation Shielding of Neutron and Gamma Rays

    , M.Sc. Thesis Sharif University of Technology Kiani, Mohammad Amin (Author) ; Outokesh, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor) ; Mohammadi, Agheil (Co-Advisor)
    Abstract
    In this study, epoxy resin has been modified by nano-clay additives using direct mixing method and epoxy-clay nanocomposites were designed and produced with optimized percentage of clay content. By adding the powder of born carbide and lead oxide in nanocomposites new compounds are obtained. The results are used for protection against neutron and gamma rays, respectively. After preparation of epoxy-clay-born carbide and epoxy- clay-lead oxide nanocomposite the effects of irradiation and carbon fiber on mechanical and thermal properties of nanocomposites were examined. The Nanocomposites were exposed to Electron Beam Irradiation (EBI) in 100 and 500 kGy doses to investigate the effect of... 

    Synthesis and Stability Evaluation of Single Enzyme Nanoparticles for Enzymatic Based Processes

    , Ph.D. Dissertation Sharif University of Technology Khosravi, Arezoo (Author) ; Vossoughi, Manoochehr (Supervisor) ; Shahrokhian, Saeed (Co-Advisor) ; Alemzadeh, Iran (Co-Advisor)
    Abstract
    Enzymes, the nanometric biocatalysts that play a key role in biochemical reactions of living cells and bio-organisms, offer various applications including biosensing, bioremediation and chemical synthesis. A simple bio-conjugation procedure to surround a single horseradish peroxidase (HRP) enzyme molecule with dendritic polyester macromolecules (Polyester-32-hydroxyl-1-carboxyl bis-MPA Dendron, Generation 5) was proposed in this project. The characterization of resultant nanoparticles entitled HRP dendrozyme, was performed by TEM, DLS, GPC and FTIR spectroscopy. The results showed that HRP nanoparticles were spherical in shape and have an average size of 14 nm in diameter. Furthermore,... 

    Experimental Study of Biological Synthesis, Stabilization and Delivery of the Recombinant Protein of Chondroitinase

    , Ph.D. Dissertation Sharif University of Technology Askaripour, Hossein (Author) ; Vossoughi, Manouchehr (Supervisor) ; Alemzadeh, Iran (Supervisor) ; Khajeh, Khosro (Supervisor)
    Abstract
    In this research, immobilization method was employed to increase the thermal stability of Chondroitinase ABC I (cABC I) enzyme. In first step, magnetite nanoparticle (Fe3O4) was selected as a support and cABC I enzyme was attached via the adsorption method. The results showed that pH=6.5, temperature 15 ˚C, enzyme-to-support mass ratio 0.75, and incubation time 4.5 hr were the appropriate conditions for immobilizing cABC I enzyme on Fe3O4 nanoparticle. It was also found that the optimum pH for free and immobilized enzymes was 7.6 and 8.0, respectively. The maximum activity of free enzyme was obtained at 25 ˚C, whereas the activity of immobilized enzyme was almost constant in the temperature... 

    Production of extracellular protease and determination of optimise condition by bacillus licheniformis BBRC 100053

    , Article Chemical Engineering Transactions ; Volume 21 , 2010 , Pages 1447-1452 ; 19749791 (ISSN) ; 9788895608051 (ISBN) Ghobadinejad, Z ; Yaghmaei, S ; Haji Hosseini, R ; Sharif University of Technology
    Abstract
    The production of protease by Bacillus licheniformis BBRC 100053 was studied. The most appropriate medium for the growth and protease production is composed of: lactose 1 %, yeast extract 0.5 %, peptone 0.5 %, KH 2PO4 0.1%, MgSO4.7H2O 0.02 %. Enzyme production corresponded with growth and reached a maximums level (589 U/ml) during the stationary phase at 35 °C, pH equivalent to 10 and with 150 rpm after 73 hours. Protease activity was highest at pH 8 and 45 °C. The best carbon sources are respectively lactose and maltose and the best nitrogen source is peptone The protease was highly active and stable from pH 7.0 to 11.0 with an optimum at pH 7-8.Thermo stability of the enzyme was considered...