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Materials Science

D-Index
61
Citations
12659
World Ranking
6823
National Ranking
213

Overview

Ali Nazari is a researcher affiliated with Islamic Azad University, Tehran in Iran, primarily focused on engineering fields. Their work is concentrated in civil and structural engineering, mechanical engineering, materials chemistry, mechanics of materials, and building and construction.

The main topics that Ali Nazari has explored include:

  • Concrete and Cement Materials Research
  • Innovative concrete reinforcement materials
  • Magnesium Oxide Properties and Applications
  • Surface Treatment and Residual Stress
  • Recycled Aggregate Concrete Performance
  • Nonlocal and gradient elasticity in micro/nano structures
  • Concrete Properties and Behavior

Ali Nazari has contributed to multiple academic publications, with a focus on various aspects of engineering and materials science. Some recent papers include:

  • Soft layer charge modulation in nanofluidic membranes: A pathway to enhanced desalination, 2025, Desalination
  • Investigation of energy storage in parabolic rotary trough solar collectors using various porous fins with magnetic nanoparticles, 2022, Energy Sustainable Development/Energy for sustainable development
  • Retraction Note to: Artificial neural networks application to predict the compressive damage of lightweight geopolymer, 2021, Neural Computing and Applications

The scientist frequently publishes in several scholarly venues, including:

  • Neural Computing and Applications (17 publications)
  • Computational Materials Science (8 publications)
  • Composites Part B Engineering (6 publications)
  • Ceramics International (4 publications)
  • Science China Technological Sciences (4 publications)

Collaborations form another important aspect of Ali Nazari's research activity. Frequent co-authors include:

  • Shadi Riahi (18 co-authored works)
  • Gholamreza Khalaj (7 co-authored works)
  • Jamshid Aghazadeh Mohandesi (4 co-authored works)
  • Amir Ali Milani (2 co-authored works)
  • Jay Sanjayan (2 co-authored works)

Best Publications

  • Incorporating graphene oxide in cement composites: A study of transport properties

    Ahmed Abed Mohammed;Ahmed Abed Mohammed;Jay Gnananandan Sanjayan;Wenhui Duan;Ali Nazari

  • THE EFFECTS OF SIO2 NANOPARTICLES ON PHYSICAL AND MECHANICAL PROPERTIES OF HIGH STRENGTH COMPACTING CONCRETE

    Ali Nazari;Shadi Riahi

  • Effect of Polypropylene Fibre Addition on Properties of Geopolymers Made by 3D Printing for Digital Construction.

    Behzad Nematollahi;Praful Vijay;Jay Sanjayan;Jay Sanjayan;Ali Nazari

  • Influence of Al 2 O 3 nanoparticles on the compressive strength and workability of blended concrete

    Ali Nazari;Shadi Riahi;Shirin Riahi;Seyedeh Fatemeh Shamekhi

  • The effect of different Na2O and K2O ratios of alkali activator on compressive strength of fly ash based-geopolymer

    Hsiao Yun Leong;Dominic Ek Leong Ong;Jay G. Sanjayan;Ali Nazari

  • Modified 3D printed powder to cement-based material and mechanical properties of cement scaffold used in 3D printing

    Pshtiwan Shakor;Jay Sanjayan;Ali Nazari;Shami Nejadi

  • Properties of geopolymer with seeded fly ash and rice husk bark ash

    Ali Nazari;Ali Bagheri;Shadi Riahi

  • Mechanical properties of layered geopolymer structures applicable in concrete 3D-printing

    Sarah Al-Qutaifi;Ali Nazari;Ali Bagheri

  • The effect of TiO2 nanoparticles on water permeability and thermal and mechanical properties of high strength self-compacting concrete

    Ali Nazari;Shadi Riahi

  • Physical and mechanical properties of lightweight aerated geopolymer

    Jay G. Sanjayan;Ali Nazari;Lei Chen;Giang Hoang Nguyen

  • Effects of Fe2O3 Nanoparticles on Water Permeability and Strength Assessments of High Strength Self-Compacting Concrete

    Ali Khoshakhlagh;Ali Nazari;Gholamreza Khalaj

  • Al2O3 nanoparticles in concrete and different curing media

    Ali Nazari;Shadi Riahi

  • Microstructural, thermal, physical and mechanical behavior of the self compacting concrete containing SiO2 nanoparticles

    Ali Nazari;Shadi Riahi

  • Splitting tensile strength of concrete using ground granulated blast furnace slag and SiO2 nanoparticles as binder

    Ali Nazari;Shadi Riahi

  • IMPROVEMENT COMPRESSIVE STRENGTH OF CONCRETE IN DIFFERENT CURING MEDIA BY AL2O3 NANOPARTICLES

    Ali Nazari;Shadi Riahi

  • Alkaline fused phosphate mine tailings for geopolymer mortar synthesis: Thermal stability, mechanical and microstructural properties

    S. Moukannaa;A. Nazari;A. Bagheri;M. Loutou

  • Graphene oxide impact on hardened cement expressed in enhanced freeze-thaw resistance

    A. Mohammed;J. G. Sanjayan;W. H. Duan;A. Nazari

  • TiO2 nanoparticles effects on physical, thermal and mechanical properties of self compacting concrete with ground granulated blast furnace slag as binder

    Ali Nazari;Shadi Riahi

  • Nanotechnology in Eco-Efficient Construction. Materials, Processes and Applications

    F Pacheco-Torgal;M.V. Diamanti;A. Nazari;Claes-Göran Granqvist

  • The effects of TiO2 nanoparticles on physical, thermal and mechanical properties of concrete using ground granulated blast furnace slag as binder

    Ali Nazari;Shadi Riahi

  • Nano TiO2 photo-catalyst and sodium hypophosphite for cross-linking cotton with poly carboxylic acids under UV and high temperature

    A. Nazari;M. Montazer;A. Rashidi;M. Yazdanshenas

  • Nanotechnology in Eco-Efficient Construction

    F Pacheco-Torgal;M Diamanti;A Nazari;Claes Göran Granqvist

Frequent Co-Authors

Jay G. Sanjayan
Jay G. Sanjayan Swinburne University of Technology
Wenhui Duan
Wenhui Duan Monash University
Fernando Pacheco-Torgal
Fernando Pacheco-Torgal University of Minho
Claes-Göran Granqvist
Claes-Göran Granqvist Uppsala University
Serji N. Amirkhanian
Serji N. Amirkhanian University of Alabama
Kakarla Raghava Reddy
Kakarla Raghava Reddy University of Sydney
Amir Hossein Kokabi
Amir Hossein Kokabi Sharif University of Technology
Majid Montazer
Majid Montazer Amirkabir University of Technology
Mohammad Jahazi
Mohammad Jahazi École de Technologie Supérieure

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