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    Efficient nanostructured biophotovoltaic cell based on bacteriorhodopsin as biophotosensitizer

    , Article ACS Sustainable Chemistry and Engineering ; Volume 3, Issue 5 , March , 2015 , Pages 809-813 ; 21680485 (ISSN) Mohammadpour, R ; Janfaza, S ; Sharif University of Technology
    American Chemical Society  2015
    Abstract
    Here, we report on utilizing a photoactive protein, bacteriorhodopsin (bR), as a light harvester in combination with TiO2 nanoparticles in biosensitized solar cell application. Experiments have been conducted to investigate the capability of surface adsorption of bR on nanoparticular TiO2photoanodes. Different pretreatment processes have been done to modify the interface of TiO2 nanoparticles and bR as a biophotosensitizer. Our results indicate the feasibility of efficient immobilization and photoinduced charge transfer of bR to the nanostructured TiO2 photoelectrode. Under illumination of simulated AM1.5 sunlight, the solar-light-to-electricity... 

    Comparison of trap-state distribution and carrier transport in nanotubular and nanoparticulate TiO2 electrodes for dye-sensitized solar cells

    , Article ChemPhysChem ; Volume 11, Issue 10 , July , 2010 , Pages 2140-2145 ; 14394235 (ISSN) Mohammadpour, R ; Zad, A. I ; Hagfeldt, A ; Boschloo, G ; Sharif University of Technology
    2010
    Abstract
    Dye-sensitized solar cells (DSCs) with nanotubular TiO2 electrodes of varying thicknesses are compared to DSCs based on conventional nanoparticulate electrodes. Despite the higher degree of order in one-dimensional nanotubular electrodes, electron transport times and diffusion coefficients, determined under short-circuit conditions, are comparable to those of nanoparticulate electrodes. The quasi-Fermi level, however, is much lower in the nanotubes, suggesting a lower concentration of conduction band electrons. This provides evidence for a much higher diffusion coefficient for conduction band electrons in nanotubes than in nanoparticulate films. The electron lifetime and the diffusion length... 

    Aggressive driving: Do driving overconfidence and aggressive thoughts behind the wheel, drive professionals off the road?

    , Article Transportation Research Part F: Traffic Psychology and Behaviour ; Volume 79 , 2021 , Pages 170-184 ; 13698478 (ISSN) Mohammadpour, S. I ; Nassiri, H ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Aggressive driving has emerged as one of the most studied behaviors in the traffic psychology context due to its association with odds of motor vehicle crashes (MVCs) and especially fatal ones. Nevertheless, behavioral (aggression) and affective (anger) aspects of aggressive driving have been deeply studied; its cognitive part hasn't gained much attention; However, its role in understanding the process of aggression and designing interventions couldn't be neglected. This research investigated the contribution of overconfidence (as the driver's cognitive bias), aggressive thoughts, driver's aggression, and risk perception in driver's performance and the number of self-reported active... 

    Potential of light-harvesting of bacteriorhodopsin co-sensitized with green fluorescence protein: A new insight into bioenergy application

    , Article Biomass and Bioenergy ; Volume 87 , 2016 , Pages 35-38 ; 09619534 (ISSN) Mohammadpour, R ; Janfaza, S ; Zeinoddini, M ; Sharif University of Technology
    Elsevier Ltd  2016
    Abstract
    Herein we report for the first time on efficient and environmentally friendly bioenergy production from bacteriorhodopsin (bR) and green florescent protein (GFP) as co-sensitizers. bR as a transmembrane protein, acts like a light-driven proton pump in Halobacterium salinarum, converting light energy into a proton gradient. Employing GFP beside bR can enhance the photo-bioenergy production efficiency in two aspects: GFP can increase short circuit current by improvement in light absorption either by extending the sensitizingspectrumor making fluorescence in absorption region of bR. It can also enhance open circuit voltage more than 150 mV by improvement in photoelectrode converging and... 

    Nanostructured versus flat compact electrode for triboelectric nanogenerators at high humidity

    , Article Scientific Reports ; Volume 11, Issue 1 , 2021 ; 20452322 (ISSN) Karimi, M ; Seddighi, S ; Mohammadpour, R ; Sharif University of Technology
    Nature Research  2021
    Abstract
    The triboelectric nanogenerator (TENG) is a promising technology for mechanical energy harvesting. TENG has proven to be an excellent option for power generation but typically TENGs output power drops significantly in humid environments. In this work, the effect of electrode’s material on power output, considering smooth and nanostructured porous structures with various surface hydrophobicity, is investigated under various humidity conditions. A vertical contact-separation mode TENG is experimentally and numerically studied for four surface morphologies of Ti foil, TiO2 thin film, TiO2 nanoparticulated film, and TiO2 nanotubular electrodes. The results show that the TENG electrical output in... 

    Light harvesting and photocurrent generation by nanostructured photoelectrodes sensitized with a photosynthetic pigment: A new application for microalgae

    , Article Bioresource Technology ; Volume 163 , July , 2014 , Pages 1-5 ; ISSN: 09608524 Mohammadpour, R ; Janfaza, S ; Abbaspour Aghdam, F ; Sharif University of Technology
    2014
    Abstract
    Here in this study, successful conversion of visible light into electricity has been achieved through utilizing microalgal pigments as a sensitizer of nanostructured photo-electrode of dye-sensitized solar cells (DSSCs). For the first time, photosynthetic pigments extracted from microalgae grown in wastewater is employed to imitate photosynthesis process in bio-molecule-sensitized solar cells. Two designs of photoanode were employed: 10μm nanoparticular TiO2 electrode and 20μm long self-ordered, vertically oriented nanotube arrays of titanium dioxide films. Microalgal photosynthetic pigments are loaded on nanostructured electrodes and their photovoltaic performances have been investigated.... 

    An n-path enhanced-q tunable filter with reduced harmonic fold back effects

    , Article IEEE Transactions on Circuits and Systems I: Regular Papers ; Volume 60, Issue 11 , 2013 , Pages 2867-2877 ; 15498328 (ISSN) Mohammadpour, A ; Behmanesh, B ; Atarodi, S. M ; Sharif University of Technology
    2013
    Abstract
    A high-Q, tunable, bandpass filtered amplifier structure is proposed which is based on a novel Q enhancement technique in N-path filters. Using Fourier series analysis, frequency response of an N-path filter as well as the aliasing effects which are present in it are derived. Frequency translation of unwanted contents at higher frequencies to the center frequency of the bandpass filter is called harmonic fold back (HFB). It is shown that using an additional N-path filter with the same clock frequency but different clock phases can reduce the HFB. The required conditions for fold back elimination are derived fromFourier series expansion analysis. In order to achieve HFB reduction as well as... 

    Band-gap narrowing and electrochemical properties in N-doped and reduced anodic TiO2 nanotube arrays

    , Article Electrochimica Acta ; Volume 270 , 2018 , Pages 245-255 ; 00134686 (ISSN) Peighambardoust, N. S ; Khameneh Asl, S ; Mohammadpour, R ; Khameneh Asl, S ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    Electrochemical activity of TiO2 nanotube arrays (NTAs) is restricted by a wide band gap of TiO2. To overcome this restriction, we considered systematic research on two effective methods of doping of TiO2 NTAs such as the N-doping and electrochemical reductive doping and predicting the proper application of them. Band gap narrowing was occurred from 3.16 eV for undoped TiO2 NTAs to 2.9 and 2.7 eV at N-doped and self-doped TiO2 ones respectively. The electrochemical responses of the TiO2 NTAs before and after doping were examined by cyclic Voltammetry (CV) curve. To understand the electrochemical behavior of the undoped and doped TiO2 NTAs, electrochemical impedance spectroscopy (EIS) was... 

    Improved efficiency in front-side illuminated dye sensitized solar cells based on free-standing one-dimensional TiO2 nanotube array electrodes

    , Article Solar Energy ; Volume 184 , 2019 , Pages 115-126 ; 0038092X (ISSN) Peighambardoust, N. S ; Khameneh Asl, S ; Mohammadpour, R ; Khameneh Asl, S ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    Although morphological disorder of nanotube structure is further down than the nanoparticular electrode, its density of traps are the hindering effects in the charge transport. In this study, crack-free TiO2 nanotube membranes, which obtained through a re-anodizing process, are fixed on transparent fluorine–tin-oxide glass by applying a few drops of Titanium Isopropoxide without needing the TiO2 powder paste. Front-side illuminated dye sensitized solar cells fabricated by undoped, N-doped and blue TiO2 nanotube membranes are investigated. The electrical characteristics of TiO2 nanotube based dye sensitized solar cells are followed by theoretical analysis using simple one-diode model.... 

    Validation of the driver's angry thoughts questionnaire (DATQ) in a sample of professional drivers in iran

    , Article IATSS Research ; Volume 46, Issue 3 , 2022 , Pages 370-379 ; 03861112 (ISSN) Mohammadpour, S. I ; Nassiri, H ; Sullman, M. J. M ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    Aggressive driving has emerged as one of the most studied behaviors in the traffic safety field, due to its association with the odds of motor vehicle crashes and especially fatal crashes. Previous research has investigated the situations which provoke anger while driving, as well as the emotional (anger) and behavioral (aggression) aspects of aggressive driving. However, surprisingly the cognitive aspects of aggressive driving have largely been neglected. This study investigated the psychometric properties of the short-forms of the Driver's Angry Thoughts Questionnaire (DATQ) and the Driving Anger Expression Inventory (DAX) in a sample of professional drivers. Furthermore, the study aimed... 

    Influence of energy band alignment in mixed crystalline TiO2 nanotube arrays: Good for photocatalysis, bad for electron transfer

    , Article Journal of Physics D: Applied Physics ; Volume 50, Issue 50 , 2017 ; 00223727 (ISSN) Mohammadpour, R ; Sharif University of Technology
    2017
    Abstract
    Despite the wide application ranges of TiO2, the precise explanation of the charge transport dynamic through a mixed crystal phase of this semiconductor has remained elusive. Here, in this research, mixed-phase TiO2 nanotube arrays (TNTAs) consisting of anatase and 0-15% rutile phases has been formed through various annealing processes and employed as a photoelectrode of a photovoltaic cell. Wide ranges of optoelectronic experiments have been employed to explore the band alignment position, as well as the depth and density of trap states in TNTAs. Short circuit potential, as well as open circuit potential measurements specified that the band alignment of more than 0.2 eV exists between the... 

    Flexible triboelectric nanogenerator based on high surface area TiO2 nanotube arrays

    , Article Advanced Engineering Materials ; Volume 20, Issue 5 , May , 2018 ; 14381656 (ISSN) Mohammadpour, R ; Sharif University of Technology
    Wiley-VCH Verlag  2018
    Abstract
    Triboelectric nanogenerators (TENGs) can harvest mechanical energy through coupling triboelectric effect and electrostatic induction. Typically, TENGs consist of organic materials, however on account of the potentially wide range of applications of TENGs as the self-powered portable/wearable electronics, biomedical devices, and sensors; semiconductor metal oxide materials can be promising candidates to be incorporating in TENG structure. Here, flexible TENG based on self-organized TiO2 nanotube arrays (TNTAs) is fabricated via anodization method. The introduced flexible large area nanotubular electrode is employed as the moving electrode in contact with Kapton film in vertical contact... 

    Influence of perovskite morphology on slow and fast charge transport and hysteresis in the perovskite solar cells

    , Article Journal of Physical Chemistry Letters ; Volume 7, Issue 22 , 2016 , Pages 4614-4621 ; 19487185 (ISSN) Mohammadian, N ; Moshaii, A ; Alizadeh, A ; Gharibzadeh, S ; Mohammadpour, R ; Sharif University of Technology
    American Chemical Society  2016
    Abstract
    We have investigated the influence of perovskite morphology on slow and fast charge transport in the perovskite solar cells. Solar cells with different perovskite cuboid sizes (50-300 nm) have been fabricated using various methylammonium iodide concentrations. Both the low-frequency capacitance and hysteresis are maximum for the cell with the largest perovskite grains (300 nm). The low-frequency capacitance is about three orders of magnitude greater than the intermediate frequency capacitance, indicating the great role of ions on the slow responses and hysteresis. The measurement of open-circuit voltage decay indicates that for the large grains of 300 nm up to 70% of Voc remains across the... 

    Surfactant-free stable SnS2 nanoparticles dispersion for deposition of device-quality films

    , Article Thin Solid Films ; Volume 669 , 2019 , Pages 269-274 ; 00406090 (ISSN) Haghighi, M ; Tajabadi, F ; Mahdavi, S. M ; Mohammadpour, R ; Taghavinia, N ; Sharif University of Technology
    Elsevier B.V  2019
    Abstract
    Tin sulfide (SnS2) has recently attracted considerable attention due to its layered structure that may form two dimensional morphologies. It is an n-type semiconductor with band gap and electron affinity similar to CdS and In2S3; therefore can be regarded as an alternative for these materials in thin film solar cells. Here, we synthesis of SnS2 nanoparticles with different morphology in different ratio of water-ethanol mixed solution by solvothermal method, and observe that more ethanol leads to large sheet like morphologies, while water based synthesis results in very small nanosheets. A challenge in wet deposition of device-quality thin films of SnS2 is the requirement for highly dispersed... 

    Numerical study of the effect of vascular bed on heat transfer during high intensity focused ultrasound (HIFU) ablation of the liver tumor

    , Article Journal of Thermal Biology ; Volume 86 , 2019 ; 03064565 (ISSN) Mohammadpour, M ; Firoozabadi, B ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    In this study, the influence of vascular bed comprising terminal arterial branches on heat transfer in a liver tumor exposed to high intensity focused ultrasound (HIFU) is studied numerically. Also, the effect of vascular density on temperature distribution is investigated. A coupled set of acoustics, thermal, and fluid models is used to calculate the temperature distribution in the liver. The numerical model is established based on the Westervelt and bioheat equations along with the Navier-Stokes equations. Moreover, the acoustic streaming effect is included with Newtonian and non-Newtonian flow assumptions. It is found that in a vascular bed comprising terminal arterial branches, the... 

    High intensity focused ultrasound (HIFU) ablation of porous liver: numerical analysis of heat transfer and hemodynamics

    , Article Applied Thermal Engineering ; Volume 170 , April , 2020 Mohammadpour, M ; Firoozabadi, B ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In the present study, the influence of the liver vascular bed on heat transfer in a tumor located close to the hepatic artery and exposed to high intensity focused ultrasound (HIFU), is studied numerically. For this purpose, an acoustics-thermal-fluid coupling model based on the porous media theory under the local thermal non-equilibrium assumption is used to calculate the temperature field in the tumor, porous liver, and the hepatic artery. Different generations of the liver vasculature including arterial branches, terminal arterial branches, terminal veins and venous branches are examined at different porosities (the volume fraction of the vasculature). It is found that the liver... 

    Evaluation of the Hydrodynamic Performance of A Special Submarine Rescue System

    , M.Sc. Thesis Sharif University of Technology Mohammadpour, Mojtaba (Author) ; Abbaspour, Madjid (Supervisor)
    Abstract
    The increasing growth of marine tourism has strengthened the activities related to this industry. One of the most profitable of these activities is recreational submarines. A traction recreational submarine is an idea in this field, in order to reduce costs, the propulsion force is removed and the submarine is towed by the mother ship. The most important reason for using the traction system and removing the independent drive is to prevent vibration and noise caused by the rotation of the propeller to prevent the escape of aquatic animals and to create a beautiful view from under the sea to watch underwater wonders. Searching for safety and saving people's lives in emergency situations is an... 

    Self-Powered humidity sensors based on sns2nanosheets

    , Article ACS Applied Nano Materials ; Volume 5, Issue 11 , 2022 , Pages 17123-17132 ; 25740970 (ISSN) Shooshtari, L ; Rafiefard, N ; Barzegar, M ; Fardindoost, S ; Irajizad, A ; Mohammadpour, R ; Sharif University of Technology
    American Chemical Society  2022
    Abstract
    With the advent of the Internet of Things (IoT), the development of self-powered sensors has received much attention. Introducing triboelectric nanogenerators (TENGs) as a power source that converts mechanical movement into electrical signals has been admired recently. Moreover, the monitoring of humidity has become enormously essential in several technological contexts from environment monitoring to biomedical applications, thus joining these two subjects provides a huge benefit in achieving self-powered humidity sensors. Here, in this research, facile, low-priced and self-powered humidity sensors are fabricated utilizing transition-metal dichalcogenides (TMD) nanosheets. Semi-vertical SnS2... 

    Solution synthesis of CuSbS2 nanocrystals: a new approach to control shape and size

    , Article Journal of Alloys and Compounds ; Volume 736 , 2018 , Pages 190-201 ; 09258388 (ISSN) Moosakhani, S ; Sabbagh Alvani, A. A ; Mohammadpour, R ; Ge, Y ; Hannula, S. P ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    Chalcostibite copper antimony sulfide (CuSbS2) micro- and nanoparticles with a different shape and size have been prepared by a new approach to hot injection route. In this method, sulfur in oleylamine (OLA) is employed as a sulfonating agent providing a simple route to control the shape and size of the particles, which enables the optimization of CuSbS2 for a variety of applications. The sulfur to metallic precursor ratio appears to be one of the most effective parameters along with the temperature and time for controlling the size and morphology of the particles. The growth mechanism study shows in addition to the CuSbS2 phase the presence of not previously observed intermediate phases... 

    Room temperature and high response ethanol sensor based on two dimensional hybrid nanostructures of WS2/GONRs

    , Article Scientific Reports ; Volume 10, Issue 1 , 2020 Ahmadvand, H ; Iraji zad, A ; Mohammadpour, R ; Hosseini Shokouh, S. H ; Asadian, E ; Sharif University of Technology
    Nature Research  2020
    Abstract
    Here in this research, room temperature ethanol and humidity sensors were prepared based on two dimensional (2D) hybrid nanostructures of tungsten di-sulfide (WS2) nanosheets and graphene oxide nanoribbons (GONRs) as GOWS. The characterization results based on scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (ESD), Raman spectroscopy and X-ray diffraction (XRD) analysis confirmed the hybrid formations. Ethanol sensing of drop-casted GOWS films on SiO2 substrate indicated increasing in gas response up to 5 and 55 times higher compared to pristine GONRs and WS2 films respectively. The sensing performance of GOWS hybrid nanostructures was investigated in different...