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Seyed Hamed Aboutalebi

University of Wollongong · AU
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Area of research
Electronic, Optical and Magnetic Materials · Materials Chemistry
Research interest
Research interests include Materials science, Graphene, Oxide, Nanotechnology, Supercapacitor, and Capacitance.
h-index
citations
2,546
works
24
NIH funding
primary concept
email

Recent publications

Silicon as a ubiquitous contaminant in graphene derivatives with significant impact on device performance
Nature Communications 2018cited by 65position: middledoi
Tubular TiO<sub>2</sub> Nanostructures: Toward Safer Microsupercapacitors
Advanced Materials Technologies 2017cited by 12position: middledoi
Superflexibility of graphene oxide
Proceedings of the National Academy of Sciences 2016cited by 156position: middledoi
Processable 2D materials beyond graphene: MoS<sub>2</sub>liquid crystals and fibres
Nanoscale 2016cited by 59position: middledoi
High‐Performance Multifunctional Graphene‐PLGA Fibers: Toward Biomimetic and Conducting 3D Scaffolds
Advanced Functional Materials 2016cited by 51position: middledoi
Self-Assembled Multifunctional Hybrids: Toward Developing High-Performance Graphene-Based Architectures for Energy Storage Devices
ACS Central Science 2015cited by 74position: middledoi
Liquid‐Crystal‐Mediated Self‐Assembly of Porous α‐Fe<sub>2</sub>O<sub>3</sub> Nanorods on PEDOT:PSS‐Functionalized Graphene as a Flexible Ternary Architecture for Capacitive Energy Storage
Particle & Particle Systems Characterization 2015cited by 25position: middledoi
Disorder engineering of undoped TiO<sub>2</sub>nanotube arrays for highly efficient solar-driven oxygen evolution
Physical Chemistry Chemical Physics 2015cited by 25position: middledoi
Improvements in the Dispersion of Nanosilver in a MgB<sub>2</sub> Matrix through a Graphene Oxide Net
The Journal of Physical Chemistry C 2015cited by 8position: middledoi
High-Performance Multifunctional Graphene Yarns: Toward Wearable All-Carbon Energy Storage Textiles
ACS Nano 2014cited by 375position: firstdoi
Graphene oxide dispersions: tuning rheology to enable fabrication
Materials Horizons 2014cited by 365position: middledoi
Liquid Crystalline Graphene Oxide/PEDOT:PSS Self-Assembled 3D Architecture for Binder-Free Supercapacitor Electrodes
Frontiers in Energy Research 2014cited by 60position: middledoi
Design of self‐assembled TiO<sub>2</sub> architectures: Towards hybrid nanotubular interfaces
physica status solidi (a) 2014cited by 4position: middledoi
Scalable One‐Step Wet‐Spinning of Graphene Fibers and Yarns from Liquid Crystalline Dispersions of Graphene Oxide: Towards Multifunctional Textiles
Advanced Functional Materials 2013cited by 429position: middledoi
Organic Solvent-Based Graphene Oxide Liquid Crystals: A Facile Route toward the Next Generation of Self-Assembled Layer-by-Layer Multifunctional 3D Architectures
ACS Nano 2013cited by 245position: middledoi
Formation and processability of liquid crystalline dispersions of graphene oxide
Materials Horizons 2013cited by 142position: middledoi
In situ engineering of urchin-like reduced graphene oxide–Mn<sub>2</sub>O<sub>3</sub>–Mn<sub>3</sub>O<sub>4</sub>nanostructures for supercapacitors
RSC Advances 2013cited by 48position: middledoi
Aqueous Colloidal Stability Evaluated by Zeta Potential Measurement and Resultant <scp> <scp>TiO</scp> </scp> <sub>2</sub> for Superior Photovoltaic Performance
Journal of the American Ceramic Society 2013cited by 42position: middledoi
Surface engineering of self-assembled TiO2 nanotube arrays: A practical route towards energy storage applications
Journal of Alloys and Compounds 2013cited by 28position: middledoi
Liquid Crystalline Dispersions of Graphene‐Oxide‐Based Hybrids: A Practical Approach towards the Next Generation of 3D Isotropic Architectures for Energy Storage Applications
Particle & Particle Systems Characterization 2013cited by 22position: middledoi
A significant improvement in both low- and high-field performance of MgB2 superconductors through graphene oxide doping
Scripta Materialia 2013cited by 20position: middledoi
Graphene Oxide: Scalable One‐Step Wet‐Spinning of Graphene Fibers and Yarns from Liquid Crystalline Dispersions of Graphene Oxide: Towards Multifunctional Textiles (Adv. Funct. Mater. 43/2013)
Advanced Functional Materials 2013cited by 10position: middledoi
Enhancement of the electrochemical capacitance of TiO2 nanotube arrays through controlled phase transformation of anatase to rutile
Physical Chemistry Chemical Physics 2012cited by 150position: middledoi
Enhanced Hydrogen Storage in Graphene Oxide‐MWCNTs Composite at Room Temperature
Advanced Energy Materials 2012cited by 131position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Konstantin Konstantinov · University of Wollongong17 papers (2012–2017)Rouhollah Jalili · UNSW Sydney11 papers (2013–2018)Gordon G. Wallace · University of Wollongong11 papers (2013–2018)Huan Liu · Wannan Medical College10 papers (2012–2017)Shi Xue Dou · University of Technology Sydney7 papers (2013–2015)Dorna Esrafilzadeh · UNSW Sydney7 papers (2013–2018)Joselito M. Razal · Jiangsu University6 papers (2013–2016)Alfred T. Chidembo · University of Wollongong6 papers (2012–2014)Sima Aminorroaya Yamini · University of Wollongong5 papers (2012–2016)Simon E. Moulton · Discovery Centre4 papers (2013–2016)Maryam Salari · University of Wollongong4 papers (2012–2015)Jun Chen · Donghua University3 papers (2013–2014)Roderick Shepherd · Tamworth Hospital3 papers (2013–2014)Andrew I. Minett · IP Australia3 papers (2013–2014)Peter C. Innis · University of Wollongong3 papers (2014–2014)Dean Cardillo · University of Wollongong3 papers (2014–2015)Xun Xu · Jiangsu University2 papers (2013–2015)Md. Monirul Islam · Princeton University2 papers (2015–2015)Maryam Salari · Harvard University2 papers (2014–2017)I. P. Nevirkovets · University of Wollongong2 papers (2012–2012)
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