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Synthesis of magnetic ions-doped QDs Synthesized Via a facial aqueous solution method for Optical/MR dual-modality imaging applications
, Article Journal of Fluorescence ; Volume 31, Issue 3 , 2021 , Pages 897-906 ; 10530509 (ISSN) ; Zare, H ; Shahedi, Z ; Fazaeli, Y ; Rahighi, R ; Sharif University of Technology
Springer
2021
Abstract
This research reports the preparation and examination of Cadmium Telluride (CdTe) Quantum Dots and doping CdTe QDs with Europium (Eu), Gadolinium (Gd), and Manganese (Mn) prepared in aqueous solution using TGA as a capping agent. Magnetic QDs (MQDs) are important agents for fluorescence (FL) /magnetic resonance (MR) dual-modal imaging due to their excellent optical and magnetic properties. Herein, the chemical bonds, structural, fluorescence, and magnetized properties of CdTe QDs and effect of Mn, Eu, and Gd ions doping on their properties were examined by X-ray powder diffraction (XRD), high-resolution transmission electron microscopy (HRTM), Energy-dispersive X-ray spectroscopy (EDX),...
High performance of finite element method applied to plastic analysis of reinforced materials with application in optoelectronic devices
, Article Journal of Optoelectronics and Advanced Materials ; Volume 17, Issue 9-10 , 2015 , Pages 1545-1548 ; 14544164 (ISSN) ; Daneshmand, S ; Fazaeli, D ; Sharif University of Technology
National Institute of Optoelectronics
2015
Abstract
Finite element analysis of creeping short fiber composites is carried out in the second stage creep with application in microelectronic and optoelectronic/photonic devices. Prediction of the creep behavior is very significant for designing the optoelectronic and photonic composites with optical fibers. Study on the creep behavior is necessary for failure, fracture, fatigue, and creep resistance of the optoelectronic/photonic composites. The creep behavior of the short fiber composites is estimated by FEM. Study on the creep behavior is necessary for defect analysis and creep resistance of the short fiber composites. In this research work, prediction of the creep behavior of the short fiber...
Numerical study on the creep behavior of the metal matrix short fiber composites with application in optoelectronic and photonic devices
, Article Optoelectronics and Advanced Materials, Rapid Communications ; Volume 9, Issue 9-10 , 2015 , Pages 1088-1092 ; 18426573 (ISSN) ; Daneshmand, S ; Fazaeli, D ; Sharif University of Technology
2015
Abstract
FEM study is carried out for predicting the behavior of the short fiber composites in the steady state creep with application in optoelectronic and photonic devices. The study on the creep behavior is necessary in order for failure, fracture, fatigue, and creep resistance of the short fiber composites. In this article, the creep behavior of the short fiber composite is predicted under tensile axial loading by the numerical method. One of the significant applications of the work is in the short fiber composite designing and optimizing. Also, the available experimental results [10] are used for the FEM simulation
Microstructure and mechanical properties of dual phase steels, with different martensite morphology, produced during TLP bonding of a low C-Mn steel
, Article Metals and Materials International ; Volume 22, Issue 5 , 2016 , Pages 856-862 ; 15989623 (ISSN) ; Ekrami, A ; Kokabi, A. H ; Sharif University of Technology
Korean Institute of Metals and Materials
2016
Abstract
In this research, production of ferrite - martensite dual phase Steels with different martensite morphology was considered during transient liquid phase bonding of a low carbon steel. The steel was bonded using an iron base interlayer with melting point of 1443 K and 40 μm thickness. Bonding process carried out at 1473 K, under pressure of 0.5 MPa, at different holding time of 10, 20, 30 and 40 minutes. Microstructural studies of joint region showed that isothermal solidification completed at the bonding time of 40 minutes. Microstructure of joints made at the bonding time of 10, 20, and 30 minutes consists of two distinct region, athermal and isothermal solidified zones. Microstructure of...
Synthesis, characterization and biological evaluation of a well dispersed suspension of gallium-68-labeled magnetic nanosheets of graphene oxide for in vivo coincidence imaging
, Article Radiochimica Acta ; Volume 105, Issue 1 , 2017 , Pages 65-73 ; 00338230 (ISSN) ; Rahighi, R ; Tayyebi, A ; Feizi, S ; Sharif University of Technology
Walter de Gruyter GmbH
2017
Abstract
Graphene oxide (GO) nanosheets were hybridized with Fe3O4 nanoparticles (NPs) to form magnetic GO (MGO) and were further labeled by [68Ga]GaCl3 as a potential drug delivery system. Paper chromatography, Fourier transform infra red (FTIR) spectroscopy, low-angle X-ray diffraction (XRD), CHN and atomic force microscopy (AFM) were utilized to characterize the trinary composite ([68Ga]@MGO). Biological evaluations of the prepared nanocomposite were performed in normal Sprague Dawley rats and it was found to be a possible host for theranostic radiopharmaceuticals. The results showed that the grafting of Fe3O4 NPs on nanocomposite reduced the unwanted liver and spleen uptakes and increased the...
Novel aspects of application of cadmium telluride quantum dots nanostructures in radiation oncology
, Article Applied Physics A: Materials Science and Processing ; Volume 123, Issue 8 , 2017 ; 09478396 (ISSN) ; Zare, H ; Karimi, S ; Rahighi, R ; Feizi, S ; Sharif University of Technology
Springer Verlag
2017
Abstract
In the last two decades, quantum dots nanomaterials have garnered a great deal of scientific interest because of their unique properties. Quantum dots (QDs) are inorganic fluorescent nanocrystals in the size range between 1 and 20 nm. Due to their structural properties, they possess distinctive properties and behave in different way from crystals in macro scale, in many branches of human life. Cadmium telluride quantum dots (CdTe QDs) were labeled with 68Ga radio nuclide for fast in vivo targeting and coincidence imaging of tumors. Using instant paper chromatography, the physicochemical properties of the Cadmium telluride quantum dots labeled with 68Ga NPs (68Ga@ CdTe QDs) were found high...
Enhancing the mechanical properties and formability of low carbon steel with dual-phase microstructures
, Article Journal of Materials Engineering and Performance ; Volume 25, Issue 2 , 2016 , Pages 382-389 ; 10599495 (ISSN) ; Hashemi, R ; Sadeghi, E ; Fazaeli, A ; Ghazanfari, A ; Lashini, H ; Sharif University of Technology
Springer New York LLC
2016
Abstract
In the present study, a special heat treatment cycle (step quenching) was used to produce a dual-phase (DP) microstructure in low carbon steel. By producing this DP microstructure, the mechanical properties of the investigated steel such as yield stress, tensile strength, and Vickers hardness were increased 14, 55, and 38%, respectively. In order to investigate the effect of heat treatment on formability of the steel, Nakazima forming test was applied and subsequently finite element base modeling was used to predict the outcome on forming limit diagrams. The results show that the DP microstructure also has a positive effect on formability. The results of finite element simulations are in a...
The Effect of Martensite Morphology on Mechanical Properties of TLP Bonded Dual Phase Steels
, M.Sc. Thesis Sharif University of Technology ; Ekrami, Ali Akbar (Supervisor) ; Kokabi, Amir Hossein (Supervisor)
Abstract
In the present study the production of ferrite-martensite dual-phase (DP) Steel was investigated during the bonding process by transient liquid phase method. The effect of martensite morphologies on mechanical properties of bonding zone were also studied. To make the bonding process and DP steel production heat treatment cycle simultaneously, the step in which the isothermal solidification completed, bonding process, was done simultaneously with austenitising of the steel. Homogenizing of the bond zone, was also done with DP steel making at the intercritical temperature. The St52 steel was utilized for producing DP steel and for bonding process, iron base interlayer with melting point of...
In vivo SPECT imaging of tumors by 198,199Au-labeled graphene oxide nanostructures
, Article Materials Science and Engineering C ; Vol. 45 , 2014 , pp. 196-204 ; ISSN: 09284931 ; Akhavan, O ; Rahighi, R ; Aboudzadeh, M. R ; Karimi, E ; Afarideh, H ; Sharif University of Technology
2014
Abstract
Graphene oxide (GO) sheets functionalized by aminopropylsilyl groups (8.0 wt.%) were labeled by 198,199Au nanoparticle radioisotopes (obtained through reduction of HAuCl4 in sodium citrate solution followed by thermal neutron irradiation) for fast in vivo targeting and SPECT imaging (high purity germanium-spectrometry) of tumors. Using instant thin layer chromatography method, the physicochemical properties of the amino-functionalized GO sheets labeled by 198,199Au NPs (198,199Au@AF-GO) were found to be highly stable enough in organic phases, e.g. a human serum, to be reliably used in bioapplications. In vivo biodistribution of the 198,199Au@AF-GO composite was investigated in rats bearing...
The application of artificial intelligence in health financing: a scoping review
, Article Cost Effectiveness and Resource Allocation ; Volume 21, Issue 1 , 2023 ; 14787547 (ISSN) ; Takian, A ; Bakhtiari, A ; Rabiee, H. R ; Fazaeli, A. A ; Sazgarnejad, S ; Sharif University of Technology
BioMed Central Ltd
2023
Abstract
Introduction: Artificial Intelligence (AI) represents a significant advancement in technology, and it is crucial for policymakers to incorporate AI thinking into policies and to fully explore, analyze and utilize massive data and conduct AI-related policies. AI has the potential to optimize healthcare financing systems. This study provides an overview of the AI application domains in healthcare financing. Method: We conducted a scoping review in six steps: formulating research questions, identifying relevant studies by conducting a comprehensive literature search using appropriate keywords, screening titles and abstracts for relevance, reviewing full texts of relevant articles, charting...
Multiclass fuzzy user equilibrium with endogenous membership functions and risk-taking behaviors
, Article Journal of Advanced Transportation ; 2016 ; 01976729 (ISSN) ; Lou, Y ; Hsu, Y. T ; Shabanpour, R ; Shafahi, Y ; Sharif University of Technology
John Wiley and Sons Ltd
2016
Abstract
Over the last decades, several approaches have been proposed in the literature to incorporate users' perceptions of travel costs, their bounded rationality, and risk-taking behaviors into network equilibrium modeling for traffic assignment problem. While theoretically advanced, these models often suffer from high complexity and computational cost and often involve parameters that are difficult to estimate. This study proposes an alternative approach where users' imprecise perceptions of travel times are endogenously constructed as fuzzy sets based on the probability distributions of random link travel times. Two decision rules are proposed accordingly to account for users' heterogeneous...
Finite element and experimental method for analyzing the effects of martensite morphologies on the formability of DP steels
, Article Mechanics Based Design of Structures and Machines ; Volume 48, Issue 5 , 2020 , Pages 525-541 ; Torabi, M. A ; Sareban, M ; Lashini, H ; Sadeghi, E ; Fazaeli, A ; Habibi, M ; Hashemi, R ; Sharif University of Technology
Taylor and Francis Inc
2020
Abstract
In this article, we investigated the effect of martensite morphology on the mechanical properties and formability of dual phase steels. At first, three heat treatment cycles were subjected to a low-carbon steel to produce ferrite–martensite microstructure with martensite morphology of blocky-shaped, continuous, and fibrous. Tensile tests were then carried out so as to study mechanical properties, particularly the strength and strain hardening behavior of dual phase steels. In order to study the formability of dual phase samples, Forming Limit Diagram was obtained experimentally and numerically. Experimental forming limit diagram was obtained using Nakazima forming test, while Finite Element...
Finite element and experimental method for analyzing the effects of martensite morphologies on the formability of DP steels
, Article Mechanics Based Design of Structures and Machines ; 2019 ; 15397734 (ISSN) ; Torabi, M. A ; Sareban, M ; Lashini, H ; Sadeghi, E ; Fazaeli, A ; Habibi, M ; Hashemi, R ; Sharif University of Technology
Taylor and Francis Inc
2019
Abstract
In this article, we investigated the effect of martensite morphology on the mechanical properties and formability of dual phase steels. At first, three heat treatment cycles were subjected to a low-carbon steel to produce ferrite–martensite microstructure with martensite morphology of blocky-shaped, continuous, and fibrous. Tensile tests were then carried out so as to study mechanical properties, particularly the strength and strain hardening behavior of dual phase steels. In order to study the formability of dual phase samples, Forming Limit Diagram was obtained experimentally and numerically. Experimental forming limit diagram was obtained using Nakazima forming test, while Finite Element...
Ultrafine Co nanoislands grafted on tailored interpenetrating N-doped carbon nanoleaves: An efficient bifunctional electrocatalyst for rechargeable Zn-air batteries
, Article Chemical Engineering Journal ; Volume 431 , 2022 ; 13858947 (ISSN) ; Chen, L ; Yang, H ; Zhang, Y ; Peng, Y ; Luo, X ; Ahmad, A ; Ramzan, N ; Xu, Y ; Shi, Y ; Sharif University of Technology
Elsevier B.V
2022
Abstract
Zeolitic imidazole frameworks (ZIFs) provide an exciting platform to design and fabricate non-precious-metal carbon-based catalysts for oxygen reduction/evolution reaction (ORR/OER). Herein, we elaborately design a facile enzyme-assisted synthetic strategy that enables to tailor the ZIFs precursors into structural stable decussation shape, which derived Co nanoislands grafted on decussate N-doped carbon nanoleaves (D-Co@NC) can well retain the interpenetrating nanostructure. Benefiting from the combined advantages of compositions and interpenetrating nanostructures, D-Co@NC possesses 5.2 times higher exposed electrochemical active area than the conventional dodecahedral one, thus endowing...
Interaction of glazing parameters, climatic condition and interior shadings: performing energy and cost analysis in a residential building in Iran
, Article Energy Efficiency ; Volume 13, Issue 1 , 21 December , 2020 , Pages 159-176 ; Gholipour, Y ; Saboohi, Y ; Yan, W ; Sharif University of Technology
Springer
2020
Abstract
In this paper, the interaction between various window specifications and different climate conditions is investigated. For this purpose, simultaneous effects of several aspects including glazing system, glass type, filling gas, glass thickness, window frame fraction, and interior shading are considered under three different climatic conditions. To evaluate the energy performance of various considered alternatives, the energy simulation of a base case building is evaluated in a computer environment. Using the validated model, the energy analysis is quantitatively performed, and cost-benefit analyses from the viewpoints of both residents and government are carried out based on the domestic and...
Synthesis of substituted 2,2′ and 4,4′-bithiazoles in various solvents
, Article Indian Journal of Chemistry - Section B Organic and Medicinal Chemistry ; Volume 40, Issue 6 , 2001 , Pages 498-499 ; 03764699 (ISSN) ; Beni, Y. A
2001
Abstract
Some tetra substituted derivatives of 2,2′ and 4,4′ bithiazoles have been synthesized and characterized in various solvents
Mathematical modeling of the reaction in an iron ore pellet using a mixture of hydrogen, water vapor, carbon monoxide and carbon dioxide: An isothermal study
, Article Advanced Powder Technology ; Volume 17, Issue 3 , 2006 , Pages 277-295 ; 09218831 (ISSN) ; Motamed Hashemi, M. Y ; Saboohi, Y ; Sharif University of Technology
VSP BV
2006
Abstract
A mathematical time-dependent and isothermal model based on the grain model has been developed to simulate the kinetic and thermal behaviors of a porous iron oxide pellet undergoing chemical reactions with a mixture of hydrogen, carbon monoxide, carbon dioxide and water vapor. Its novelty consists in fact that it can deal with a multi-species reducing gas and oxide pellet. In spite of previous models in which the pure reductant was applied as reducing gas, this model can indicate an actual view of pellet reduction including the effects of reducing gas utility and reducing gas ratio. A finite volume fully implicit technique was applied for solving the governing equations. The model has been...
A thermodynamically consistent electro-chemo-mechanical theory for modeling axonal swelling
, Article Journal of the Mechanics and Physics of Solids ; Volume 145 , 2020 ; Naghdabadi, R ; Sohrabpour, S ; Li, Y ; Hu, Y ; Sharif University of Technology
Elsevier Ltd
2020
Abstract
In the present study, for the first time, a thermodynamically consistent large deformation theory is developed to model the multi physics problem of axonal swelling which is the hallmark of most of the brain diseases. To this end, the relevant axonal compartments are first explained and the corresponding model parts are introduced. Next, the problem is formulated as an open thermodynamic system and the corresponding constitutive and evolution equations are extracted utilizing the balance laws. Here, a multiplicative decomposition of the deformation gradient is used to capture the active behavior of the axonal actin cortex. Specific free energy functions are given for the model parts to...
Probabilistic data-driven framework for performance assessment of retaining walls against rockfalls
, Article Probabilistic Engineering Mechanics ; Volume 70 , 2022 ; 02668920 (ISSN) ; Mahsuli, M ; Zhang, Y ; Xue, Y ; Huang, H ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
Rockfall is a significant hazard to sites that are located at the foot of rock slopes. In such sites, there is a notable need to evaluate the potential for rockfall, estimate the extent of areas at risk, and design retaining structures to reduce the risk of rockfall-induced. This paper presents a probabilistic framework for predicting the formation and progression of rockfalls and for evaluating the performance of retaining walls under rockfalls. To this end, first a probabilistic model for the rock projectile motion on a slope is presented. The model accounts for prevailing uncertainties, i.e., the trigger points, rock shape, projectile path, and slope material properties, which include...
Organic–inorganic hybrid nanoflowers as a new biomimetic platform for ROS-induced apoptosis by photodynamic therapy
, Article European Journal of Pharmaceutical Sciences ; Volume 191 , 2023 ; 09280987 (ISSN) ; Hamidieh, A. A ; Lu, Y ; Hosseinkhani, S ; Sharif University of Technology
Elsevier B.V
2023
Abstract
We report here a newly and facile synthesis of the phospholipids@gold nanoflowers (AuNFs) from intact cells as a new biomimetic organic-inorganic hybrid. The most appealing feature of this nanostructure is its dual-absorbing peak in near infrared (NIR) and visible region of spectra, which makes them a potential light-sensitive agent for reactive oxygen species (ROS)-induced apoptosis. Here, in contrast to previous studies, proposed nanostructures are synthesized in a one-pot reaction using phospholipids present in living cell membranes (as a donor cell) with detectable micro process of AuNF formation. The properties of the resulting AuNFs were evaluated through transmission electron...