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Materials Science

D-Index
48
Citations
6183
World Ranking
10963
National Ranking
2571

Overview

Dinesh R. Katti is affiliated with North Dakota State University in the United States. Their research spans multiple disciplines primarily within engineering and medicine, focusing on areas that intersect material science, biomedical applications, and soil mechanics.

The main fields of study include:

  • Engineering
  • Medicine

Within these fields, Dinesh R. Katti has contributed extensively to several subfields:

  • Civil and Structural Engineering
  • Biomedical Engineering
  • Biomaterials
  • Oncology
  • Surgery

Their research explores a variety of specific topics, which encompass:

  • Bone Tissue Engineering Materials
  • Soil and Unsaturated Flow
  • Cellular Mechanics and Interactions
  • Grouting, Rheology, and Soil Mechanics
  • Bone health and treatments
  • Orthopaedic implants and arthroplasty
  • Clay minerals and soil interactions

Dinesh R. Katti has authored multiple papers across a range of scientific journals. Some notable recent publications are:

  • Composite nanoclay-hydroxyapatite-polymer fiber scaffolds for bone tissue engineering manufactured using pressurized gyration (2020, Composites Science and Technology)
  • Nanoclays in medicine: a new frontier of an ancient medical practice (2022, Materials Advances)
  • Molecular mechanics of the swelling clay tactoid under compression, tension and shear (2020, Applied Clay Science)
  • Modeling the Behavior of Organic Kerogen in the Proximity of Calcite Mineral by Molecular Dynamics Simulations (2020, Energy & Fuels)
  • Perfusion bioreactor enabled fluid-derived shear stress conditions for novel bone metastatic prostate cancer testbed (2021, Biofabrication)

Their frequent coauthors include:

  • Kalpana S. Katti
  • Sharad V. Jaswandkar
  • Hina Faisal
  • Haneesh Jasuja
  • Krishna Kundu

Publications by Dinesh R. Katti have appeared predominantly in these venues:

  • JOM
  • Scientific Reports
  • Biofabrication
  • Langmuir
  • Materialia

Best Publications

  • Synthesis and characterization of a novel chitosan/montmorillonite/hydroxyapatite nanocomposite for bone tissue engineering

    Kalpana S Katti;Dinesh R Katti;Rajalaxmi Dash

  • Platelet interlocks are the key to toughness and strength in nacre

    Kalpana S. Katti;Dinesh R. Katti;Shashindra M. Pradhan;Arundhati Bhosle

  • Molecular dynamics simulation of hydroxyapatite : polyacrylic acid interfaces

    Rahul Bhowmik;Kalpana S. Katti;Dinesh Katti

  • Molecular interactions in intercalated organically modified clay and clay–polycaprolactam nanocomposites: Experiments and modeling

    Kalpana S. Katti;Debashis Sikdar;Dinesh R. Katti;Pijush Ghosh

  • Why is nacre so tough and strong

    Kalpana S. Katti;Dinesh R. Katti

  • 3D finite element modeling of mechanical response in nacre-based hybrid nanocomposites

    D.R Katti;K.S Katti;J.M Sopp;M Sarikaya

  • Mechanics of molecular collagen is influenced by hydroxyapatite in natural bone

    Rahul Bhowmik;Kalpana S. Katti;Dinesh R. Katti

  • Nanomechanical properties of nacre

    Kalpana S. Katti;Bedabibhas Mohanty;Dinesh R. Katti

  • MODELING THE RESPONSE OF PYROPHYLLITE INTERLAYER TO APPLIED STRESS USING STEERED MOLECULAR DYNAMICS

    Dinesh R. Katti;Steven R. Schmidt;Pijush Ghosh;Kalpana S. Katti

  • Evolution of Mechanical Response of Sodium Montmorillonite Interlayer with Increasing Hydration by Molecular Dynamics

    Steven R. Schmidt;Dinesh R. Katti;Pijush Ghosh;Kalpana S. Katti

  • An in situ FTIR step-scan photoacoustic investigation of kerogen and minerals in oil shale.

    Kristin N. Alstadt;Dinesh R. Katti;Kalpana S. Katti

  • Engineering Physical Properties of Asphalt Binders through Nanoclay-asphalt Interactions

    Magdy Abdelrahman;Dinesh R. Katti;Amir Ghavibazoo;Him Bandhu Upadhyay

  • Modeling microarchitecture and mechanical behavior of nacre using 3D finite element techniques Part I Elastic properties

    Dinesh R. Katti;Kalpana S. Katti

  • Mechanical properties of the sodium montmorillonite interlayer intercalated with amino acids.

    Dinesh R. Katti;Pijush Ghosh;Steven Schmidt;Kalpana S. Katti

  • Nanoclay Based Composite Scaffolds for Bone Tissue Engineering Applications

    Avinash H. Ambre;Kalpana S. Katti;Dinesh R. Katti

  • Altered phase model for polymer clay nanocomposites.

    Debashis Sikdar;Shashindra M Pradhan;Dinesh Ramanath Katti;Kalpana S Katti

  • Use of unnatural amino acids for design of novel organomodified clays as components of nanocomposite biomaterials.

    Kalpana S. Katti;Avinash H. Ambre;Nicholas Peterka;Dinesh R. Katti

  • Influence of swelling on the microstructure of expansive clays

    Dinesh R Katti;Vijayakumar Shanmugasundaram

  • Insight into molecular interactions between constituents in polymer clay nanocomposites

    Debashis Sikdar;Dinesh R. Katti;Kalpana S. Katti;Rahul Bhowmik

  • Mineral proximity influences mechanical response of proteins in biological mineral-protein hybrid systems.

    Pijush Ghosh;Dinesh R. Katti;Kalpana S. Katti

  • Biomineralized hydroxyapatite nanoclay composite scaffolds with polycaprolactone for stem cell-based bone tissue engineering

    Avinash H. Ambre;Dinesh R. Katti;Kalpana S. Katti

Frequent Co-Authors

Kalpana S. Katti
Kalpana S. Katti North Dakota State University
Mehmet Sarikaya
Mehmet Sarikaya University of Washington
Subhash C. Chauhan
Subhash C. Chauhan The University of Texas Rio Grande Valley
Meena Jaggi
Meena Jaggi University of Tennessee Health Science Center
Hendrik Heinz
Hendrik Heinz University of Colorado Boulder
Mohan Edirisinghe
Mohan Edirisinghe University College London
Sanjay R. Mishra
Sanjay R. Mishra University of Memphis
Malcolm L. Snead
Malcolm L. Snead University of Southern California

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