Shadpour Mallakpour mainly focuses on Polymer chemistry, Organic chemistry, Thermogravimetric analysis, Condensation polymer and Polymer. Shadpour Mallakpour studies Imide, a branch of Polymer chemistry. His Imide study combines topics from a wide range of disciplines, such as Dicarboxylic acid and Polyamide.
His Thermogravimetric analysis research includes elements of Fourier transform infrared spectroscopy, Transmission electron microscopy, Vinyl alcohol and Thermal stability. His Condensation polymer study incorporates themes from Pyridine and Monomer. Shadpour Mallakpour studied Polymer and Nanotechnology that intersect with Oxide and Nano-.
His scientific interests lie mostly in Polymer chemistry, Organic chemistry, Nanocomposite, Thermogravimetric analysis and Polymer. His research integrates issues of Monomer, Polymerization and Condensation polymer in his study of Polymer chemistry. His Condensation polymer study combines topics in areas such as Pyridine, Inherent viscosity and Amide.
His Nanocomposite research is multidisciplinary, incorporating elements of Nanoparticle, Vinyl alcohol and Surface modification. Shadpour Mallakpour has researched Thermogravimetric analysis in several fields, including Fourier transform infrared spectroscopy, Transmission electron microscopy, Thermal stability and Nuclear chemistry. His Imide research incorporates elements of Diamine, Thionyl chloride and Specific rotation.
His main research concerns Nanocomposite, Chemical engineering, Polymer, Thermal stability and Thermogravimetric analysis. His study in Nanocomposite is interdisciplinary in nature, drawing from both Surface modification, Nanoparticle, Vinyl alcohol and Polymer chemistry. His Chemical engineering research is multidisciplinary, incorporating perspectives in Adsorption and Vinyl chloride.
His Polymer research also works with subjects such as
Shadpour Mallakpour spends much of his time researching Nanocomposite, Chemical engineering, Adsorption, Thermal stability and Thermogravimetric analysis. His Nanocomposite research includes elements of Nanoparticle, Contact angle, Polymer chemistry and Vinyl alcohol, Polymer. His Polymer chemistry research includes themes of Matrix, Dispersion and Copper.
His work carried out in the field of Chemical engineering brings together such families of science as Methylene blue and Sorption. Thermal stability is a primary field of his research addressed under Organic chemistry. Shadpour Mallakpour interconnects Fourier transform infrared spectroscopy, Casting, Composite material and Vinyl chloride in the investigation of issues within Thermogravimetric analysis.
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A high sensitive biosensor based on FePt/CNTs nanocomposite /N-(4-hydroxyphenyl)-3,5-dinitrobenzamide modified carbon paste electrode for simultaneous determination of glutathione and piroxicam
Hassan Karimi-Maleh;Fahimeh Tahernejad-Javazmi;Ali A. Ensafi;Reza Moradi.
Biosensors and Bioelectronics (2014)
A review of current coupling agents for modification of metal oxide nanoparticles
Shadpour Mallakpour;Maryam Madani.
Progress in Organic Coatings (2015)
Surface functionalization of carbon nanotubes: fabrication and applications
Shadpour Mallakpour;Samaneh Soltanian.
RSC Advances (2016)
Efficient preparation of hybrid nanocomposite coatings based on poly(vinyl alcohol) and silane coupling agent modified TiO2 nanoparticles
Shadpour Mallakpour;Abdolvahid Barati.
Progress in Organic Coatings (2011)
Carbon nanotube–metal oxide nanocomposites: Fabrication, properties and applications
Shadpour Mallakpour;Elham Khadem.
Chemical Engineering Journal (2016)
Recent development in the synthesis of polymer nanocomposites based on nano-alumina
Shadpour Mallakpour;Elham Khadem.
Progress in Polymer Science (2015)
Simultaneous determination of N-acetylcysteine and acetaminophen by voltammetric method using N-(3,4-dihydroxyphenethyl)-3,5-dinitrobenzamide modified multiwall carbon nanotubes paste electrode
Ali A. Ensafi;Hassan Karimi-Maleh;S. Mallakpour;M. Hatami.
Sensors and Actuators B-chemical (2011)
Covalently functionalized graphene sheets with biocompatible natural amino acids
Shadpour Mallakpour;Amir Abdolmaleki;Sedigheh Borandeh.
Applied Surface Science (2014)
Highly sensitive voltammetric sensor based on catechol-derivative-multiwall carbon nanotubes for the catalytic determination of captopril in patient human urine samples
A.A. Ensafi;H. Karimi-Maleh;S. Mallakpour;B. Rezaei.
Colloids and Surfaces B: Biointerfaces (2011)
New developments in polymer science and technology using combination of ionic liquids and microwave irradiation
Shadpour Mallakpour;Zahra Rafiee.
Progress in Polymer Science (2011)
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