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Group 6 transition metal dichalcogenide nanomaterials: synthesis, applications and future perspectives
, Article Nanoscale Horizons ; Volume 3, Issue 2 , 2018 , Pages 90-204 ; 20556756 (ISSN) ; Sarikhani, N ; Zirak, M ; Zhang, H ; Zhang, H. L ; Zaker Moshfegh, A. R ; Sharif University of Technology
Royal Society of Chemistry
2018
Abstract
Group 6 transition metal dichalcogenides (G6-TMDs), most notably MoS2, MoSe2, MoTe2, WS2 and WSe2, constitute an important class of materials with a layered crystal structure. Various types of G6-TMD nanomaterials, such as nanosheets, nanotubes and quantum dot nano-objects and flower-like nanostructures, have been synthesized. High thermodynamic stability under ambient conditions, even in atomically thin form, made nanosheets of these inorganic semiconductors a valuable asset in the existing library of two-dimensional (2D) materials, along with the well-known semimetallic graphene and insulating hexagonal boron nitride. G6-TMDs generally possess an appropriate bandgap (1-2 eV) which is...
Mole: Efficient Crash Reproduction in Android Applications with Enforcing Necessary UI Events
, Article IEEE Transactions on Software Engineering ; Volume 50, Issue 8 , 2024 , Pages 2200-2218 ; 00985589 (ISSN) ; Huang, H ; Amini, M ; Zhang, C ; Sharif University of Technology
2024
Abstract
To improve the quality of Android apps, developers use automated debugging and testing solutions to determine whether the previously found crashes are reproducible. However, existing GUI fuzzing solutions for Android apps struggle to reproduce crashes efficiently based solely on a crash stack trace. This trace provides the location in the app where the crash occurs. GUI fuzzing solutions currently in use rely on heuristics to generate UI events. Unfortunately, these events often do not align with the investigation of an app's UI event space to reach a specific location of code. Hence, they generate numerous events unrelated to the crash, leading to an event explosion. To address this issue,...
Homozygous mutations in C14orf39/SIX6OS1 cause non-obstructive azoospermia and premature ovarian insufficiency in humans
, Article American Journal of Human Genetics ; Volume 108, Issue 2 , 2021 , Pages 324-336 ; 00029297 (ISSN) ; Jiao, Y ; Khan, R ; Jiang, X ; Javed, A. R ; Ali, A ; Zhang, H ; Zhou, J ; Naeem, M ; Murtaza, G ; Li, Y ; Yang, G ; Zaman, Q ; Zubair, M ; Guan, H ; Zhang, X ; Ma, H ; Jiang, H ; Ali, H ; Dil, S ; Shah, W ; Ahmad, N ; Zhang, Y ; Shi, Q ; Sharif University of Technology
Cell Press
2021
Abstract
Human infertility is a multifactorial disease that affects 8%–12% of reproductive-aged couples worldwide. However, the genetic causes of human infertility are still poorly understood. Synaptonemal complex (SC) is a conserved tripartite structure that holds homologous chromosomes together and plays an indispensable role in the meiotic progression. Here, we identified three homozygous mutations in the SC coding gene C14orf39/SIX6OS1 in infertile individuals from different ethnic populations by whole-exome sequencing (WES). These mutations include a frameshift mutation (c.204_205del [p.His68Glnfs∗2]) from a consanguineous Pakistani family with two males suffering from non-obstructive...
Continuous-Time relationship prediction in dynamic heterogeneous information networks
, Article ACM Transactions on Knowledge Discovery from Data ; Volume 13, Issue 4 , 2019 ; 15564681 (ISSN) ; Bazargani, S ; Zhang, J ; Rabiee, H. R ; Sharif University of Technology
Association for Computing Machinery
2019
Abstract
Online social networks, World Wide Web, media, and technological networks, and other types of so-called information networks are ubiquitous nowadays. These information networks are inherently heterogeneous and dynamic. They are heterogeneous as they consist of multi-Typed objects and relations, and they are dynamic as they are constantly evolving over time. One of the challenging issues in such heterogeneous and dynamic environments is to forecast those relationships in the network that will appear in the future. In this article, we try to solve the problem of continuous-Time relationship prediction in dynamic and heterogeneous information networks. This implies predicting the time it takes...
Machine learning-assisted investigation of anisotropic elasticity in metallic alloys
, Article Materials Today Communications ; Volume 40 , 2024 ; 23524928 (ISSN) ; Alkhazaleh, H. A ; Samavatian, M ; Samavatian, V ; Sharif University of Technology
2024
Abstract
This study aims to develop a machine learning (ML)-based method for predicting the elasticity tensor of anisotropic metallic alloys with 21 independent constants. In this respect, the elastic moduli of a batch of additive-manufactured specimens with various orientations, determined by Tait–Bryan angles, are utilized as input data, while the anisotropic elastic tensor are targeted for prediction. Our primary findings indicate the efficacy of the radial basis function neural network (RBFNN) as a robust ML model for elasticity tensor prediction. Notably, the model demonstrates slightly higher efficiency in predicting elasticity tensor components aligned with principal axes compared to...
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...
Analytical and parametric analysis of thermoelastic damping in circular cylindrical nanoshells by capturing small-scale effect on both structure and heat conduction
, Article Archives of Civil and Mechanical Engineering ; Volume 22, Issue 1 , 2022 ; 16449665 (ISSN) ; Cai, Y ; Bao, L ; Fan, R ; Zhang, H ; Wang, H ; Borjalilou, V ; Sharif University of Technology
Springer Science and Business Media Deutschland GmbH
2022
Abstract
This article intends to examine thermoelastic damping (TED) in circular cylindrical nanoshells by considering small-scale effect on both structural and thermal areas. To fulfill this aim, governing equations are extracted with the aid of nonlocal elasticity theory and dual-phase-lag (DPL) heat conduction model. Circular cylindrical shell is also modeled on the basis of Donnell–Mushtari–Vlasov (DMV) equations for thin shells. By inserting asymmetric simple harmonic oscillations of nanoshell into motion, compatibility and heat conduction equations, the size-dependent thermoelastic frequency equation is obtained. By solving this equation and deriving the frequency of nanoshell affected by...
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...
Investigation of PD signal propagation characteristics in XLPE cables
, Article 2004 International Conference on Power System Technology, POWERCON 2004, 21 November 2004 through 24 November 2004 ; Volume 2 , 2004 , Pages 1863-1868 ; 0780386108 (ISBN); 9780780386105 (ISBN) ; Blackburn, T. R ; Phung, B. T ; Zhang, H ; Sharif University of Technology
2004
Abstract
Online monitoring of HV XLPE cables is a major interest for utilities. Due to severe and rapid risk of life of this type of cable with occurrence of partial discharges, studies are carried out for detection and location of PD. However there is a lack of models that can help to accurately detect the partial discharge and its location in installed cables, due to the relatively long length and the load condition of cable. Detection and location of any partial discharge signal requires: A verified knowledge of phenomena which contributes to P.D. propagation and its deformation, measured data of P.D. type signal propagation on different cable test setups, accurate frequency dependent cable model...
Effect of low back pain on the kinetics and kinematics of the lumbar spine - a combined in vivo and in silico investigation
, Article Journal of Biomechanics ; Volume 164 , 2024 ; 00219290 (ISSN) ; Arjmand, N ; Zhang, T ; Pumberger, M ; Schmidt, H ; Sharif University of Technology
Elsevier
2024
Abstract
Lifting is a significant risk factor for low back pain (LBP). Different biomechanical factors including spinal loads, kinematics, and muscle electromyography (EMG) activities have previously been investigated during lifting activities in LBP patients and asymptomatic individuals to identify their association with LBP. However, the findings were contradictory and inconclusive. Accurate and subject-specific prediction of spinal loads is crucial for understanding, diagnosing, planning tailored treatments, and preventing recurrent pain in LBP patients. Therefore, the present study aimed to estimate the L5-S1 compressive and resultant shear loads in 19 healthy and 17 non-specific chronic LBP...
Investigation of high frequency signal propagation characteristics on HV XLPE cables
, Article 7th International Power Engineering Conference, IPEC2005, Singapore, 29 November 2005 through 2 December 2005 ; Volume 2005 , 2005 ; 9810544693 (ISBN); 9789810544690 (ISBN) ; Blackburn, T. R ; Phung, B. T ; Vakilian, M ; Naderi, M.S ; Zhang, H ; Sharif University of Technology
2005
Abstract
The insulation lifetime of power cables is determined by several factors. One of the more important of these is the occurrence of partial discharge (PD) at the dielectric. The ability to detect and locate a PD source is limited by attenuation of the high frequency PD pulses as they propagate through the cable. Therefore it is necessary to understand the high frequency response of such cables. Further, to enable reconstruction of PD signals as emitted a viable high frequency model for simulation is needed. This paper presents results of measurements of PD calibration pulse and high frequency sinusoid propagation in HV XLPE cables. In addition to the tests a cable model was developed using the...
Enhancing the antioxidant and anti-inflammatory potentials of mulberry-derived postbiotics through submerged fermentation with B. subtilis H4 and B. amyloliquefaciens LFB112
, Article Food Bioscience ; Volume 60 , 2024 ; 22124292 (ISSN) ; Tong, Y ; Zhang, J ; Wang, J ; Guo, H ; Cheng, Q ; Zhou, Y ; Ahmad, B ; Wei, X ; Si, D ; Zhang, R ; Sharif University of Technology
2024
Abstract
Mulberry-derived postbiotics (MDP) have been scientifically proven to possess beneficial properties for human health, making them potential nutraceuticals. This study aims to enhance the antioxidant and anti-inflammatory effect of MDP via submerged fermentation with Bacillus subtilis H4 (H4) and Bacillus amyloliquefaciens LFB112 (LFB112) bacterial strains. Our results demonstrated compelling evidence that the combination of two strains with the optimized time (24 h), inoculum size (8%), and substrate size (10%) significantly increased the 2,2-diphenyl-1-picrylhydrazyl (DPPH) scavenging activities. When compared to the non-fermented mulberry (NFM), the MDP with the above-optimized conditions...
On the controllability of phase formation in rapid solidification of high entropy alloys
, Article Journal of Alloys and Compounds ; Volume 748 , 2018 , Pages 679-686 ; 09258388 (ISSN) ; Aitken, Z. H ; Tavakoli, R ; Zhang, Y. W ; Sharif University of Technology
Elsevier Ltd
2018
Abstract
The demonstration of high entropy alloys (HEAs), or more generally multi-principal-element alloys (MPEAs), which display a greater resistance to softening at elevated temperatures and embrittlement at cryogenic temperatures, has offered an accessible alternative alloying process for materials scientists and engineers. Although solidification is a fundamental process in synthesis of alloys which strongly affects their microstructure and properties, a firm understanding of this process in HEAs is scarce. Here, using molecular dynamics (MD) simulations, we study the rapid solidification of the multi-principal-element CoFeNiPd alloy as a prototypical single-phase HEA. Our simulations reveal an...
Investigation uncovered the impact of anions on CO2 absorption by low viscous ether functionalized pyridinium ionic liquids
, Article Journal of Molecular Liquids ; Volume 336 , August , 2021 ; 01677322 (ISSN) ; Dong, H ; Zeng, S ; Umair Ahmad, M ; Khurum Shehzad, F ; Wu, H ; Zhang, Y ; Sharif University of Technology
Elsevier B. V
2021
Abstract
Ionic liquids, which are designable and nonvolatile, have become a hot topic in the field of CO2 separation from industrial gases. In order to utilize the nonvolatile and low heat capacity of ionic liquids, it is necessary to solve the problem of high viscosity of pure ionic liquids. In the present study, ether functionalized pyridinium ion [E1Py]+ with good biodegradability and low viscosity was selected as cation. Ions containing cyano groups were used as anions, such as thiocyanate ion [SCN]-, dicyanamide ion [N(CN)2]-, tricyanomethanide ion [C(CN)3]-. Three ionic liquids with low viscosity were synthesized and characterized by 1HNMR, 13CNMR and FTIR. The physiochemical properties of...
Effect of whisker alignment on microstructure, mechanical and thermal properties of Mg-SiCw/Cu composite fabricated by a combination of casting and severe plastic deformation (SPD)
, Article Journal of Magnesium and Alloys ; Volume 11, Issue 3 , 2023 , Pages 966-980 ; 22139567 (ISSN) ; Tayyebi, M ; Tayebi, M ; Yarigarravesh, M ; Liu, S ; Zhang, H ; Sharif University of Technology
KeAi Communications Co
2023
Abstract
In this research, microstructure evaluation, mechanical properties and thermal conductivity of the Mg-SiCw/Cu composite with laminar structure were investigated. For this purpose, SiC whiskers were added to magnesium alloy by using stir-casting, then the Mg-SiCw composite was bonded to copper layers by warm accumulative roll bonding (ARB). Based on the results of optical microscopy (OM) and scanning electron microscopy (SEM), SiC whiskers were well distributed in the magnesium matrix and they were aligned parallelly when the composites were plastically deformed at higher rolling passes. Furthermore, all layers remained continuous with localized necking sites. Also, no intermetallic compounds...
Enhancing active vibration control performances in a smart rotary sandwich thick nanostructure conveying viscous fluid flow by a PD controller
, Article Waves in Random and Complex Media ; Volume 34, Issue 3 , 2024 , Pages 1835-1858 ; 17455030 (ISSN) ; Wang, Z ; Tazeddinova, D ; Ebrahimi, F ; Habibi, M ; Safarpour, H ; Sharif University of Technology
2024
Abstract
This is the first research on the smart control and frequency analysis of a cylindrical sandwich nanoshell in the framework of the numerical-based generalized differential quadrature method (2D-GDQM). The current sandwich smart nanostructure is made of a honeycomb core and piezoelectric face sheets as sensor and actuator (PFSA). For modeling the size-dependent nanoshell, nonlocal stress-strain gradient theory (NSGT) is presented. Also, this nanostructure is under conveying viscous fluid, and the related force is calculated by the modified formulation of Navier–Stokes. Also, the current structure rotates around its axial direction. The stresses and strains are obtained using the higher-order...
Permeability mapping of gelatin methacryloyl hydrogels
, Article Acta Biomaterialia ; Volume 77 , 2018 , Pages 38-47 ; 17427061 (ISSN) ; Goodarzi Hosseinabadi, H ; Cecen, B ; Hassan, S ; Shrike Zhang, Y ; Sharif University of Technology
2018
Abstract
We report the development of an efficient, customized spherical indentation-based testing method to systematically estimate the hydraulic permeability of gelatin methacryloyl (GelMA) hydrogels fabricated in a wide range of mass concentrations and photocrosslinking conditions. Numerical simulations and Biot's theory of poroelasticity were implemented to calibrate our experimental data. We correlated elastic moduli and permeability coefficients with different GelMA concentrations and crosslinking densities. Our model could also predict drug release rates from the GelMA hydrogels and diffusion of biomolecules into the three-dimensional GelMA hydrogels. The results potentially provide a design...
CL-MLSP: The design of a detection mechanism for sinkhole attacks in smart cities
, Article Microprocessors and Microsystems ; Volume 90 , 2022 ; 01419331 (ISSN) ; Javadpour, A ; Ja'fari, F ; Pinto, P ; Ahmadi, H ; Zhang, W ; Sharif University of Technology
Elsevier B.V
2022
Abstract
This research aims to represent a novel approach to detect malicious nodes in Ad-hoc On-demand Distance Vector (AODV) within the next-generation smart cities. Smart city applications have a critical role in improving public services quality, and security is their main weakness. Hence, a systematic multidimensional approach is required for data storage and security. Routing attacks, especially sinkholes, can direct the network data to an attacker and can also disrupt the network equipment. Communications need to be with integrity, confidentiality, and authentication. So, the smart city and urban Internet of Things (IoT) network, must be secure, and the data exchanged across the network must...
Effect of welding current and speed on solidification cracking susceptibility in gas tungsten arc fillet welding of dissimilar aluminum alloys: Coupling a weld simulation and a cracking criterion
, Article Journal of Materials Research and Technology ; Volume 30 , 2024 , Pages 4777-4785 ; 22387854 (ISSN) ; Movahedi, M ; Na, S. J ; Zhang, L. J ; Kokabi, A. H ; Sharif University of Technology
2024
Abstract
In order to study the effect of welding current and speed on the solidification cracking susceptibility of weld, gas tungsten arc welding of a fillet weld with a cold filler wire was simulated. Simulation was conducted for dissimilar welding of Al–Cu–Mg to Al–Mg–Si aluminum alloys with an Al–Mg filler metal at the welding current range of 145–175 A and welding speed of 18–24 cm/min. The outcomes of simulations, namely temperature gradient, velocity of isotherms, and weld chemical composition obtained for various welding currents and speeds, were used as inputs for a solidification cracking model. The results showed that the dimensions of the weld profile obtained from the simulation...
Dynamic information of the time-dependent tobullian biomolecular structure using a high-accuracy size-dependent theory
, Article Journal of Biomolecular Structure and Dynamics ; 2020 ; Shamsodin, M ; Wang, H ; NoormohammadiArani, O ; Mashood Khan, A ; Habibi, M ; Al Furjan, M. S. H ; Sharif University of Technology
Taylor and Francis Ltd
2020
Abstract
As the most rigid cytoskeletal filaments, tubulin–labeled microtubules bear compressive forces in living cells, balancing the tensile forces within the cytoskeleton to maintain the cell shape. The current structure is often under several environmental conditions as well as various dynamic or static loads that can decrease the stability of the viscoelastic tubulin–labeled microtubules. For this issue, the dynamic stability analysis of size-dependent viscoelastic tubulin–labeled microtubules using modified strain gradient theory by considering the exact three-length scale parameter. Viscoelastic properties are modeled using Kelvin-Voight model to study the time-dependent tubulin–labeled...