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    Active Corrosion Protection Application of Conducting Polymer Coating on Steel

    , M.Sc. Thesis Sharif University of Technology Naghavi, Samira (Author) ; Ghorbani, Habib (Supervisor)
    Abstract
    Corrosion is caused through chemical interactions between metal and gases in the surrounding environment. Conductive polymers are used for corrosion protection, polyaniline is the most environmentally stable out of all the conductive polymers, the most studied of this materials, is highly stable, synthesized easily, highly conducting, and readily converted between its various oxidation states.
    In this study we prepared nanoporous polyaniline coating on carbon steel to corrosion protection. Coating was included nanopouros polyaniline with doping molybdate (PANI-MoO_4^(-2)). To increase adhesion between steel and PANI-MoO_4^(-2) layer, oxalic acid was used. Polystyrene nanoparticle layer... 

    The Impedimetric Human Papiloma Virous DNA Biosensor Fabrication Based on Gold Nanotubes

    , Ph.D. Dissertation Sharif University of Technology Shariati, Mohsen (Author) ; Ghorbani, Mohammad (Supervisor) ; Sasanpour, Pezhman (Supervisor)
    Abstract
    An impedimetric human papilloma virus (HPV) DNA biosensor based on gold nanotubes (AuNTs) in label free detection was materialized. The AuNTs decorated nanoporous polycarbonate (AuNTs-PC) template as biosensor electrode was fabricated by electrodeposition method. The single strand DNA (ss-DNA) probe was covalently immobilized onto the AuNTs-PC electrode. The hybridization of target sequences with the ss-DNA probe was observed by the electrochemical impedance spectroscopy (EIS). The biosensor showed high selectivity and could differentiate between the complementary, mismatch and non-complementary DNA sequences. The EIS measurements were matched to Randle's equivalent circuit. The... 

    Vibration Modes of Membrane Proteins by Application of Elastic Network Model

    , Ph.D. Dissertation Sharif University of Technology Besya, Azimberdy (Author) ; Ejtehadi, Mohammad Reza (Supervisor) ; Mobasheri, Hamid (Supervisor) ; Naghdabadi, Reza (Co-Advisor)
    Abstract
    Outer membrane proteins play the role of molecular machines in the outer membrane of bacteria to regulate their basic functions. These macromolecules have nano-scale dimensions and they are involved in the classifications of nano-machines and nano-pores. Protein structure is constructed of chain of amino acids. Coarse grained elastic network model of the protein introduces a network of selected point masses, which is located on α-carbon of each amino acid, linked together with harmonic springs that represent the interactions between residues, both the chemical (protein backbone) and physical bonds. Using the harmonic network potential and theory of mechanical vibration, normal modes of... 

    Preparation of Nano Fluid from Carbon Nano Structures with High Surface Area in Order to Improve the Heat Transfer Coefficient in Heat Exchangers

    , M.Sc. Thesis Sharif University of Technology Naghash Chimeh, Amir Saleh (Author) ; Sattari, Sorena (Supervisor) ; Rashidi, Alimorad (Co-Advisor)
    Abstract
    In this research convective heat transfer coefficient enhancement of nanofluids prepared from high surface area graphene has been investigated in laminar flow in the developing region. The nanofluid has been prepared from nanoporous graphene with high surface area and with concentration of 0.025 to 0.1 %wt. Deionized water has been used as the base fluid and a type of Ter-Polymer has been utilized as the surfactant. The results indicate that thermal conductivity of nanofluid with concentration of 0.1 %wt remains quite constant, with only %3.8 enhancement, while convective heat transfer coefficient improves significantly, with 34% enhancement. The behavior of this enhancement related to the... 

    Uranium Recovery From Liquid Waste of UCF Plant With Ion Exchange Resin Method

    , M.Sc. Thesis Sharif University of Technology Asadi, Zahra (Author) ; Samadfam, Mohammad (Supervisor) ; Sepehrian, Hamid (Supervisor)
    Abstract
    During the various stages of uranium processing in Uranium Conversion Facility (UCF) in Isfahan, significant amounts of liquid waste stream is produced which is sent to evaporation ponds. In addition to environmental considerations, uranium recovery from existing pools is also economically feasible due to high concentration uranium in liquid waste. Several methods have been evolved over the years to remove dissolved uranium from uranium bearing solution. These methods are: chemical precipitation, liquid-liquid extraction, ion exchange and membrane processes. The purpose of this study is recovery of uranium from liquid waste of Isfahan UCF plant by using ion exchange method. Although this... 

    Numerical Investigation of Off-axis translocation, Shape, and the Electrical Charge of a Nanoparticle in the Nanofluidic Conduit

    , M.Sc. Thesis Sharif University of Technology Jodeyri, Zohreh (Author) ; Taghipoor, Mojtaba (Supervisor)
    Abstract
    The advent of nanopore-based sensors based on resitive pulse sensing gave rise to a remarkable breakthrough in the detection and characterization of nanoscale species. The sensors can detect the species’concentration, size, and charge using the resistive pulse characteristics. Some strong correlations have been reported between the resitive pulse characteristics and the particle’s geometrical and physical properties. These correlations are commonly used to obtain information about the particles in commercial devices and research setups. The correlations, however, do not consider the simultaneous effect of influential factors such as particle shape, charge, and off-axis translocation, which... 

    Design and Manufacturing of a Setup for Solid-state Nanopore Fabrication

    , M.Sc. Thesis Sharif University of Technology Bayat, Alireza (Author) ; Akbari, Javad (Supervisor) ; Taghipour, Mojtaba (Supervisor)
    Abstract
    The aim of the current research is to study the process of making a solidstate nanopore by molding from PDMS polymer and to make a laboratory sample of a solidstate nanopore manufacturing device using this method. Solid-state nanopores are used to control ion transport in microfluidic channels,lab-on-a-chip detection to study nucleic acids and proteins, desalination, nanofluidic transistors,single-cell sensing tools, and particle classification. In general, the smaller the nanopore, the shorter the length and the higher the mechanical stability, the better the performance. In this research, chips have been made on which there is a blade with a sharpness of 10 nanometers and a height of 10... 

    Investigation of the Influence of Charge and External Field on Desalination by Carbon Nanostructures Using Molecular Dynamics Simulation

    , Ph.D. Dissertation Sharif University of Technology Mortazavi, Vahid Reza (Author) ; Moosavi, Ali (Supervisor) ; Nouri-Borujerdi, Ali (Co-Supervisor)
    Abstract
    Membrane filtration systems are one of the most widely used and effective methods for desalination of saline water in the seas and oceans and treatment of industrial and domestic effluents in order to provide the fresh water resources needed for human survival on the earth and also meet the needs of various industries. The low efficacy of the traditional technologies necessitates the introduction of novel desalination methods. For this purpose, carbon-based membranes have been proposed as high-performance membranes because of their high mechanical strength, ultrafast permeation, and controllable pore size. In this study, by conducting molecular dynamics simulations, the effects of electric... 

    Investigation on Hydrophobic Particle Mobility in Electrolyte Media under Various Electrokinetic Effects

    , M.Sc. Thesis Sharif University of Technology Shafiei Souderjani, Ali (Author) ; Seeadi, Mohammad Hassan (Supervisor) ; Kazemzadeh Hannani, Siamak (Co-Supervisor)
    Abstract
    Electrophoresis of colloidal and bio-particles, which is the motion of a charged particle under an electric field, is a powerful method for the characterization and separation of particles. Electrophoresis of particles could be in electrolyte and gel mediums. Additional drag force is exerted on the particle in a gel medium due to the 3D polymeric structure. Experimental research and molecular dynamics simulations have shown that the no-slip boundary condition is not valuable for many particles in micro and nano-devices. The Navier slip condition, which represents the amount of slip, must replace the no-boundary condition. Characterization of hydrophobicity for optimal design in microfluidic... 

    Performance Modeling of Nano-Porous Monolayers in Water Desalination Using Molecular Dynamics Simulations Approach

    , Ph.D. Dissertation Sharif University of Technology Mehrdad, Mohammad (Author) ; Moosavi, Ali (Supervisor) ; Nejat, Hossein (Co-Supervisor)
    Abstract
    Water plays an essential role in the daily lives of humans, plants, and animals. Due to the lack of safe water on the planet, in recent years there have been many challenges in the field of water treatment, which has made water desalination technology always one of the most advanced technologies. The most advanced technology in this field is the use of nanotechnology in water and wastewater treatment, especially the use of Membrane processes such as reverse osmosis. Unlike conventional reverse osmosis membranes, nanoporous membranes can ensure rapid water transfer during the displacement process. The purpose of this thesis is to introduce new monolayers that have an incredible performance in... 

    Investigation of the Influence of Nanoparticle & Nanofluidic Conduit Geometry on Ionic Transport

    , M.Sc. Thesis Sharif University of Technology Bakouei, Mostafa (Author) ; Taghipoor, Mojtaba (Supervisor)
    Abstract
    Resistive pulse sensing (RPS) has proved to be a viable method for detection and characterization of micro and nano particles. This method works based on ionic current variation inside nanopores. Modern fabrication methods have introduced different nanopore geometries for resistive pulse sensors therefore studing the effects of geometry on sensing performance of nanaopores is important. Numerical simulation has been used to study a wide variation of nanopore’s geometry configurations and study the physics behind this phenomena. Based on the results, numerical simulation could be used as a fast and easy tool for size determination for nanopore. To compare the sensing performance of different... 

    Increasing Critical Heat Flux and Boiling Heat Transfer on Superhydrophilic Nano Porous Surface Using Low Conductive Spots

    , M.Sc. Thesis Sharif University of Technology Najafpour, Sahand (Author) ; Mousavi, Ali (Supervisor)
    Abstract
    This dissertation argues that bi-conductive textured surfaces increase both Critical Heat Flux (CHF) and Heat Transfer Coefficient (HTC) simultaneously. Surface modification is applied to stainless steel specimens by the anodizing method in an electrolyte containing Ammonium Fluoride and DI-Water and Ethylene Glycol as the based solvent. The process of oxidation was under constant DC voltage and constant temperature. The contact angle on self-aligned Nano-porous oxide layer fabricated on the substrate substantially decreases to about 5.7 degree which has a dramatic effect on CHF. Furthermore, the oxide layer augments the boiling efficiency by increasing the number of active sites and... 

    Effects of Graphene Nanopores and Temperature on DNA Sequencing Using Molecular Dynamics

    , M.Sc. Thesis Sharif University of Technology Majdi, Amin (Author) ; Meghdari, Ali (Supervisor) ; Khoshnood, Atefeh (Co-Advisor)
    Abstract
    Distinguishing the structure of DNA is of outmost importance in the medicine and agriculture industry nowadays. Various methods have been suggested so far; however, high costs, incorrect results, and time-taking process are among main defects of them. Scientists try to find new ways for recognizing DNA structure and system in order to overcome such problems. One of these new methods is absorbing and passing DNA through Nano-pores in an electrolyte solution under the influence of an electrical field. The basis of this method is the ionized currents which occur due to the passing of DNA through Nano-pores. Because each DNA base pairs can form a barrier corresponding to a unique measured value,... 

    Molecular Dynamic Simulation of Water Desalination Across Porous Single Layer Graphene Membrane

    , M.Sc. Thesis Sharif University of Technology Chogani, Alireza (Author) ; Moosavi, Ali (Supervisor)
    Abstract
    In recent years carbon nanotubes and other carbon nanostructures such as graphene sheets have attracted a lot of attention due to their unique mechanical, thermal and electrical properties. These structures can be used in desalination of sea water, removal of hazardous substances from water tanks, gases separation, and so on. The nano porous single layer graphene membranes are very efficient for desalinating water due to their very low thickness. In this study, the mechanism of passing water and salt ions through nano porous single-layer graphene membrane are simulated using classical molecular dynamics. In the simulation, in order to separate salt ions from the water, the effects of applied... 

    Numerical Simulation of Water Filtration from Pollutant Ions Using Nanoporous Graphene Membrane

    , M.Sc. Thesis Sharif University of Technology Rahiminejad, Mohammad (Author) ; Moosavi, Ali (Supervisor) ; Nouri Borujerdi, Ali (Supervisor)
    Abstract
    Water treatment from industrial and domestic pollutants is one of the most important issues in recent decades. In the present research, simulation of water purification using single-layer graphene membrane were studied. The effects of nanopores diameter, applied pressure, concentration of contaminant ions, and functional groups on the amount of filtered water and ion rejection through the membrane were quantified. Contaminant ions including Na+, K+, Mg2+, Ca2+, and Cl- were dissolved in water. Based on the results, by increasing the pore diameter and applied pressure, more water would pass through the membrane. Also it was concluded that pores with functional groups have better performance... 

    Theoretical Analysis of Mechanical Properties for Metal Matrix Nanocomposites Reinforced by Carbon Nanotubes Using Nonlocal Elasticity

    , M.Sc. Thesis Sharif University of Technology Amini Niaki, Sina (Author) ; Naghdabadi, Reza (Supervisor) ; Sohrabpour, Saeed (Supervisor)
    Abstract
    Nanocomposites are fabricated by incorporating nano-scale particles in polymer, metal, or ceramic matrices. Metal matrix nanocomposites are a new kind of materials which have shown superior mechanical features, such as high strength, stiffness, and hardness. However, they are not sensitive to high temperature, in contrast to the polymer matrix nanocomposites. Nanoporous materials, also, have wide range of applications in different fields, such as geology, biology, biomechanics, and electronic. Carbon Nanotubes (CNTs) have shown wonderful properties like high Young’s modulus, high resonance frequency and unique electrical behavior. Wonderful mechanical and electrical properties make CNTs... 

    Degradation of Dye in Wastewater Using iron Based Porous Nanocatalyst in a Batch Reactor

    , M.Sc. Thesis Sharif University of Technology Mehdipour, Mohammad Hossein (Author) ; Ghotbi, Cyrus (Supervisor) ; Mahmoudi, Niaz Mohammad (Supervisor)
    Abstract
    consumption of which (especially azo dyes) have been increasing nowadays, causing the increase of textile wastewaters. Usually, these wastewaters contain an immense number of dyes, and if these dyes release in the environment especially in waters, they cause some problems, such as the change of watercolor as well as taste, and affect creatures' lives severely. Moreover, If the dyes are left untreated in aquatic ecosystems, they can remain in the environment for a very long time, resulting in harmful and irreversible effects. Azo dyes are classified as mono, di-, three, azo dyes due to their bonds. Because dyes are increasingly used, nowadays, different methods are developed for the treatment... 

    Synthesis of Metal-Organic Framework Nano-Porous Catalyst for Degrading Organic Pollutants (Dyes) in Wastewater

    , M.Sc. Thesis Sharif University of Technology Mirzaieazar, Hedieh (Author) ; Kazemeini, Mohammad (Supervisor) ; Mahmoodi, Niyaz Mohammad (Supervisor)
    Abstract
    Nanoporous metal-organic frameworks are among the new and advanced compounds that have attracted attention of researchers due to their unique properties such as high surface area, high porosity and regular structure. These compounds can catalyze and degrade pollutants. Due to the high consumption of organic compounds, especially textile dyes, the pollution caused by wastewater is increasing in various industries. Disposal of wastewater containing organic pollutants into aquatic environments can alter the natural color, change the taste of water and disturb the life of living organisms. If the dyes are left untreated in aquatic ecosystems, they can remain in the environment for a very long... 

    Study of 131I Adsorption Behavior on Nanoporous Silicates Modified with Elements of Ag, Cu, Zn, Ni

    , M.Sc. Thesis Sharif University of Technology Rohani, Ramezan (Author) ; Sayf Kordi, Ali Akbar (Supervisor) ; Sepehrian, Hamid (Supervisor)
    Abstract
    One of the common methods used for treatment of gaseous radioactive wastes in nuclear waste management is adsorption process. Nanoporous materials have found great utility as sorption media because of their large internal surface area and more adsorption sites than other adsorbents, which caused the increasing attention of researchers to use them in the nuclear waste management. Hence in this study, the surface of nanoporous silicates of SBA-15 and MCM-41 modified with d-block elements of the periodic table such as silver, copper, zinc and nickel by wet impregnation method. After characterization by different techniques such as X-ray diffraction, nitrogen gas porosimetry, Fourier... 

    Study of Micropollutants Adsorption from Water by Nanoporous Silica Aerogels

    , M.Sc. Thesis Sharif University of Technology Abdoli, Majid (Author) ; Bastani, Daruoosh (Supervisor) ; Bargozin, Hassan (Co-Advisor)
    Abstract
    Phenolic compounds are important environmental pollutants that the removal and separation of them from the water and industrial wastewater especially in the oil industry is essential before entering the environment. In the present study, the removal efficiency of the adsorbent silica aerogel 4-Chlorophenol and 4-Bromophenol as phenolic compounds from aqueous solution was surveyed. In this research, the effects of various factors such as contact time, pH, and initial concentration of the pollutant and the adsorbent on the adsorption were studied. It was observed that there is a large amount of adsorption in acidic pH and this amount increases by incrementing the concentration of the...