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    Morphological Manipulation of Photo-Anode Electrode of Nano-Structured TiO2 Dye-Sensitized Solar Cells

    , M.Sc. Thesis Sharif University of Technology Moradzaman, Mozhgan (Author) ; Mohammadi, Mohammad Reza (Supervisor)
    Abstract
    Dye-sensitized solar cells (DSSCs) are Photoelectrochemical cells using wide band gap nanoporous oxide semiconductors sensitized by dye molecules. For achieving high efficiency DSSCs preparation of photoanode electrode with high surface aea which leads to adequate dye absorption is necessary. In order to achieve proper morphology, thickness, particles size and porosity, producing a TiO2 nano-structured paste is required. TiO2 powder was prepared using sol-gel method. following a calcination process at 300 degrees, XRD patterns showed presence of anatase and brookite structures with average crystallite size of 9 nm. Additives such as diethylene glycol, acetylacetone and Triton X-100 were used... 

    Using of SnS2 Nanostructured Layer as an Electron Transport Layer in the Perovskite Solar Cells

    , Ph.D. Dissertation Sharif University of Technology Haghighi, Maryam (Author) ; Mahdavi, Mohammad (Supervisor) ; Taghavinia, Nima (Supervisor) ; Mohammadpour, Raheleh (Co-Supervisor)
    Abstract
    In this research, we focus on study and investigation of the role of Tin(IV) Sulfide (SnS2) nanostructured layer as electron transport layer in perovskite and chalcogenide thin film solar cells. For this purpose, SnS2 powder was prepared through hydro/solvo-thermal method, utilizing different ratios of water and ethanol as solvent and various sulfur sources (thioacetamide and thiourea). Afterwards, different solvents were investigated to achieve a stable ink (about one month) with uniform dispersion. After determining the appropriate ink and powder, thin films of SnS2 were prepared employing spin coating, spray pirolysis and laser pulsed deposition (PLD) methods and characterized. With each... 

    Synthesis of Aligned Carbon Nanotubes and Their Modification with Noble Metallic Nanoparticles as Organic Analytes Biosensors

    , Ph.D. Dissertation Sharif University of Technology Fayazfar, Haniyeh (Author) ; Afshar, Abdollah (Supervisor) ; Dolati, Abolghasem (Supervisor)
    Abstract
    An efficient method has been developed to synthesize well-aligned multi-walled carbon nanotubes (MWCNTs) on a conductive Ta substrate by chemical vapor deposition (CVD). By varying CVD parameters, aligned CNTs (A-MWCNTs) with diameter between 20-100 nm and length of some micrometers with bamboo-like shapes were produced. Free-standing MWCNTs arrays were functionalized and purified through electrochemical oxidation. Then in order to improve the performance, facile template-free electrochemical routes were developed for the shape-selective synthesis of less-common Au nanostructures, including flower, sphere, dendrite, sheet and rod on A-CNTs at room temperature. The results showed that the... 

    Nanostructural Coating of Al2O3 on NiTi Alloy Via Electrochemical Method for Improvement of Biomedical and Surface Properties

    , M.Sc. Thesis Sharif University of Technology Mahloujchi, Raziyeh (Author) ; Sadrnezhaad, Khatiboleslam (Supervisor)
    Abstract
    Nitinol alloy is important and increasingly used in medicine and industry due to its unique properties such as shape memory and superelasticity. Plasma Electrolytic Oxidation (PEO) is a relatively new method which in electrical discharge occurrence and formation of small plasma arcs on the anode surface and the electrochemical and thermochemical reactions in plasma environment prepare ceramic coating on the substrate. This method is taken into consideration because of its simplicity and effectiveness in the preparation of oxide ceramic coatings with porous structure on the surface of certain metals and alloys to improve their corrosion and wear properties. In this study, to improve the... 

    Characterization of Lithium Presence in Brine and Extraction of Lithium from Brine Resources of Iran

    , M.Sc. Thesis Sharif University of Technology Moazeni Afarani, Maryam (Author) ; Askari, Masoud (Supervisor) ; Nusheh, Mohammad (Co-Advisor)
    Abstract
    One of the basic resources for lithium extraction is brine which is very abundance in Iran. It is important to characterize these brines and their compositions to select a suitable method for lithium recovery from them. By investigation of the local brines and determining lithium and other alkali metals composition in them, the ion exchange process using titanium dioxide ion-sieve with nanotube morphology is suggested as highly effective method for lithium extraction from Iranian brines. Due to high advantages of hydrothermal process, TiO2 nanotubes were produced by this method and the optimum parameters of hydrothermal reactions were reported. In this way, hydrogen titanate nanotubes with... 

    Study of Antibacterial Performance of Metal Oxide Nanostructures and their Effect on Bacterial Growth Kinetics

    , M.Sc. Thesis Sharif University of Technology Afkhami, Fatemeh Sadat (Author) ; Naseri, Naimeh (Supervisor) ; Zaker Moshfegh, Alireza (Co-Supervisor)
    Abstract
    Fighting contagious microbial diseases is considered a serious health issue, which has attracted much attention in worldwide. Thus, development of new materials based on nanostructures as a new generation of antibiotics to address this challenge has been of interest to researchers in recent years. Nanostructures based on metallic oxide semiconductors such as oxides with light absorption, production of electron-hole pairs in needle like structures cause tearing bacterial membrane and eventually destroy the bacterium. To this end, we designed experiments to study mechanism and physics governing the process of bacterial degradation to determine the best conditions for inhibiting bacteria... 

    Study and Preparation of the Modified Nanostructure Carbon Electrode for Capacitive Deionization (CDI) Process

    , Ph.D. Dissertation Sharif University of Technology Talebi, Majid (Author) ; Ahadian, Mohammad Mahdi (Supervisor) ; Shahrokhian, Saeed (Supervisor)
    Abstract
    Nowadays capacitive deionization (CDI) has attracted a lot of attention for water treatment. CDI is an emerging water treatment technology that uses electrophoretic driving forces for desalination of water. During the CDI process, ions are adsorbed onto the surface of electrodes by applying a low voltage electric field (DC<2V). In addition, the regeneration of the electrodes contains desorption of the electrosorbed ions from the surface of the electrodes to the water in the absence of the applied electric field. In the mechanism of CDI, separation and accumulation of ions in the electric field are the main processes and no additional chemicals are required in this technology. Therein,... 

    Studying Supercapacitive Performance of Cobalt-based Hierarchical Nanostructures

    , M.Sc. Thesis Sharif University of Technology Afsahi, Nikan (Author) ; Naseri, Naimeh (Supervisor)
    Abstract
    One of the pillars of reaching a steady development is to utilize sustainable energies. In order to make use of these modern means of energy, appropriate energy storage devices are inevitable. One of the families of these devices is the supercapacitors. Moving toward the 4th industrial revolution, we are encountering modern technologies such as internet of things and wearable electronics. Therefore, designing and fabricating microsupercapacitors is of paramount importance in order to reduce the weight and size of these devices. Cobalt and nickel are considered as two important elements to be used in synthesizing supercapacitive materials and composites, because of their good electrochemical... 

    Investigation of Electro-Optical Properties of Heterostructures based on 2-D Layered Materials by Quantum Simulation

    , M.Sc. Thesis Sharif University of Technology Saadat Somaeh Sofla, Zahra (Author) ; Simchi, Abdolreza (Supervisor) ; Shayeganfar, Farzaneh (Supervisor)
    Abstract
    Density Functional Theory is one of the most robust Ab-intio methods for describing the structural and electronic properties of a wide range of materials. The ability to predict the material properties changes due to targeted material manipulation at the atomic scale has reduced the cost of many empirical experiments. It has improved the knowledge and understanding of the investigation and producing new materials and devices. Tow dimensional heterostructures are highly regarded due to their unique optoelectronic properties, potential application in nanoelectronic devices, energy storage devices, solid-state devices, and photovoltaic devices. In this study, the two-dimensional materials... 

    Experimental Study of the β-CD-g-PG Hybrid Nanostructure On Phase Solubilityof Hydrophobic Drug

    , M.Sc. Thesis Sharif University of Technology Asadi, Farshid (Author) ; Saifkordi, Aliakbar (Supervisor) ; Vossoughi, Manouchehr (Supervisor)
    Abstract
    Some widely used drugs such as paclitaxel (PTX) are poorly water soluble. The clinical use of PTX with solubilizer causes side effects. These problems limited its application in treatments. In this work has been studied the effect of β-CD-g-PG (HPCD) hybrid nanomaterials, conjugated PG branches onto β-CD core, on the water solubility of PTX. First HPCD has been synthesized. Then the inclusion complex of PTX with HPCD was prepared. The inclusion complex efficiency for PTX:HPCD complex in 1:25 mole ratio was 87%. Then solubility of PTX with HPCD in water has been determined, showing Ap type phase solubility diagram. Then stability constants were calculated. The first order and second order... 

    Doping Effect of Copper and Copper Oxide on H2S Sensing of Nanostructured WO3

    , M.Sc. Thesis Sharif University of Technology Nowrouzi, Rasoul (Author) ; Iraji Zad, Azam (Supervisor)
    Abstract
    The aim of this research is preparation of tungsten trioxide nanoparticles film for hydrogen sulfide gas sensing. These nanoparticles were made by simple and inexpensive sol-gel method. To improve gas sensing properties, various precursors of copper and copper oxides were added to the sol. This solution was coated on alumina substrate by spin coating method. After annealing, sensing properties of samples were studied by measuring the electrical resistance. Best precursor and its molar percentage of copper to tungsten were selected (WO3-Cu2O (1%)). All tests for this sample were done in temperatures below 100 °C and gas concentration lower than 10 ppm. Sensitivity of WO3-Cu2O (1%) to 1 ppm... 

    Circuit Model for Periodic Plasmonic Nanostructures Used as Light-rapping Back-structures in thin Film Solar Cells

    , M.Sc. Thesis Sharif University of Technology Yarmoghaddam, Elahe (Author) ; Mehrany, Khashayar (Supervisor) ; Khavasi, Amin (Co-Advisor)
    Abstract
    In recent years, thin-film photovoltaic cells with thicknesses of less than 1-2 µm have been developed with potentially lower production costs. Due to the small thickness of the absorbing semiconductor in these cells, the absorption is inevitably low at energies close to the electronic band gap of the semiconductor. This is particularly a problem for thin-film devices. Recently، periodic metallic nanostructures supporting surface plasmons have been introduced as alternative solutions to achieve light trapping in thin-film solar cells.Full numerical methods are usually used for the analysis of these periodic structures. The main drawback of these methods is that they are time-consuming and... 

    Multiscale Modeling of Crack Propagation under Thermal Fatigue in Nano-Structured Materials

    , Ph.D. Dissertation Sharif University of Technology Yasbolaghi, Reza (Author) ; Khoei, Amir Reza (Supervisor)
    Abstract
    In this research, various molecular dynamics simulations have been carried out and sensitivity of the crack propagation process to the simulation parameters including the load pattern, maximum applied strain, temperature, loading frequency, and percentage of defects is investigated. Moreover, the crack propagation in poly-crystalline structure is studied using a larger model consisting of several atomic crystals and the effect of the presence of crystals on crack growth is investigated. In the next step, a novel coupling technique is developed in the continuum–atomistic multi-scale analysis of temperature field problems. In this manner, a new thermostat is introduced based on the single-atom... 

    Visible Light Active TiO2 Nanostructured Fibers for Decomposition of Pollutants in Petroleum Industry and Dye/Semiconductor Sensitized Solar Cells

    , Ph.D. Dissertation Sharif University of Technology Ghadiri, Elham (Author) ; Taghavinia, Nima (Supervisor) ; Aghabozorg, Hamid Reza (Supervisor) ; Iraji Zad, Azam (Co-Advisor)

    Design and Fabrication of Flexible Fiber- Shaped Hybrid Micro- Supercapacitors Based on Carbon Nanostructures and Oxides, Sulfides and Phosphides of Some Transition Metals

    , Ph.D. Dissertation Sharif University of Technology Naderi, Leila (Author) ; Shahrokhian, Saeed (Supervisor)
    Abstract
    Miniaturization of electronic devices with portable, flexible and wearable characteristics created a great demand for high-performance microscale energy storage devices with lightweight and flexible properties. Among the energy storage devices, wire-shaped micro-supercapacitors have recently received tremendous attention due to their small size, lightweght, and high flexibility. In the first part, the porous dendritic Ni-Cu film was prepared on Cu wire substrate (CW) for fabrication of high- performance wire-type micro-supercapacitors (micro-SCs). The porous structure with dendritic morphology provides a high surface area, short ion diffusion pathway and low contact resistance between... 

    Design and Implement of Gas Distribution and Control System for Deposition of Nano-Structure through NFCVD

    , M.Sc. Thesis Sharif University of Technology Ahmadi, Zabihollah (Author) ; Rashidian, Bizhan (Supervisor)
    Abstract
    For realization of nanosale photonic device required by the future system, electron beams, and scanning probe microscopes have been used to control the site on the subtrate. However, these techniques have a fatal disadvantage because they cannot deal with insulators and Diffraction of light, limiting their application.To overcome this difficulties, we design and implement near-field optical chemical vapor deposition, which enables the fabrication of nanometer-scale structure, while controlling their position. To guarantee that an optical near field is generated sufficiently, we fabricated a sharped W-tip by electrochemical etching. The separation between the W-tip and the substrate was kept... 

    Design and Fabrication of Electrical Field Sensor for Biological and Corrosion Currents Application

    , M.Sc. Thesis Sharif University of Technology Mahmoudi, Amin (Author) ; Simchi, Abdolreza (Supervisor) ; Fardmanesh, Mehdi (Supervisor)
    Abstract
    Electric field sensors are one of the common types of sensors that are widely used today to record changes in the electric field in underwater environments, also record pH changes in different materials. This type of sensor is inspired by the shark mucous membrane. In this study, silver / silver chloride silver (Ag / AgCl) was used for three methods of silver filtration directly in electrolyte containing chloride ion, Electrophoretic electrode method and electrode making method using silver oxide adhesive. Part of the electrodes manufacturing method involves converting part of silver into silver chloride. The made electrode has a length of 7 cm and a diameter of 0.5 mm, with its core made of... 

    Design and Synthesis of a Novel Nanomaterial as a Carrier of a Hydrophobe drug in an Inclusion Complex based on Cychlodextrin

    , M.Sc. Thesis Sharif University of Technology Gholami, Mahsa (Author) ; Vossoughi, Manouchehr (Supervisor) ; Kazemi, Akhtarolmolouk (Supervisor)
    Abstract
    Paclitaxel is used as a drug against breast and ovarian cancers. Although paclitaxel has high biologic activity, it has very pour solubility in water like some other drugs. Since drugs should be solved in water to be absorbed by the body, for absorb enhancement, we should use carriers which includes both polar and non polar sites. eta-Cyclodextrin which has this feature is capable for producing inclusion complex in its hydrophobic pores with non polar materials. In this project by adding polymeric polyacrylamide branches on beta-Cyclodextrin, polymeric nano structure has been developed to enhance water solubility in comparison with pure beta-Cyclodextrin. Study on producing polymeric nano... 

    Design and Development of Electrochemical DNA Nanobiosensors for Identification and Determination of Important Biomarkers

    , Ph.D. Dissertation Sharif University of Technology Salimian, Razieh (Author) ; Shahrokhian, Saeed (Supervisor) ; Kalhor, Hamid Reza (Co-Supervisor)
    Abstract
    The main purpose of this Ph.D. Thesis is to develop DNA-based biosensors using Label-free approaches applying simple, inexpensive and fast electrochemical techniques to measure the biological markers of cancer.In the first part, a simple protocol for detection of specific-sequence DNA is introduced. In this method carbon nanotube is used as a hybridization indicator. This label-free system provides the advantage of eliminating additional labeling procedure. As the signal enhances in the presence of MWCNT and decreases in the presence of target, the fabricated sensor is known as a signal-off device. The oxidation signal of Fe(CN)63-/4- is followed as an analytical signal to detect target... 

    Design of Smart Magnetic Micellar Nanocarrier Based on Modified Polycaprolactone for Targeting Delivery of Paclitaxel as Anticancer Drug

    , M.Sc. Thesis Sharif University of Technology Dastanpour, Lida (Author) ; Pourjavadi, Ali (Supervisor)
    Abstract
    Today, current methods are used for treatment of cancers. Patient experiences a period of hard treatment during destruction of both healthy and diseased cells. Researchers are following stimulus- response drug delivery systems that they control time and position of drug release. Meanwhile, micellar nanoparticles are important, because it can transport the hydrophobic anticancer drugs from body's physiological barriers. On the other hand, tumour tissue has low pH and high temperature as compared to health tissue. Therefore, using pH and thermosensitive polymer coating could be effective in triggered drug release. In the first study, micellar systems were synthesized which were responsive to...