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Materials Science

D-Index
69
Citations
15098
World Ranking
4710
National Ranking
186

Overview

Robert G. Hill is affiliated with Queen Mary University of London in the United Kingdom. Their research primarily focuses on Dentistry and Engineering, with notable subfields including Orthodontics, Biomedical Engineering, Oral Surgery, Surgery, and Materials Chemistry.

The scientist's work covers a range of topics such as Dental materials and restorations, Bone Tissue Engineering Materials, Dental Erosion and Treatment, Dental Implant Techniques and Outcomes, Facial Trauma and Fracture Management, Endodontics and Root Canal Treatments, and Dental Health and Care Utilization.

Recent publications include:

  • Trends and perspectives on the commercialization of bioactive glasses, 2023, Acta Biomaterialia
  • The use of bioactive glass (BAG) in dental composites: A critical review, 2021, Dental Materials
  • Glass ionomer polyalkenoate cements and related materials: past, present and future, 2022, BDJ
  • Remineralising fluorine containing bioactive glass composites, 2021, Dental Materials
  • Building a circular economy around poly(D/L-γ-glutamic acid)- a smart microbial biopolymer, 2022, Biotechnology Advances

Frequent co-authors with whom Robert G. Hill has collaborated include:

  • Saroash Shahid
  • Aylin Baysan
  • David Gillam
  • Mona Aly Abbassy
  • Xiaohui Chen

The scientist's work is frequently published in venues such as Dental Materials, Scientific Reports, Journal of Dentistry, Journal of Functional Biomaterials, and bioRxiv (Cold Spring Harbor Laboratory).

Best Publications

  • The effects of strontium-substituted bioactive glasses on osteoblasts and osteoclasts in vitro

    Eileen Gentleman;Yann C. Fredholm;Gavin Jell;Nasrin Lotfibakhshaiesh

  • Fluoride-containing bioactive glasses: Effect of glass design and structure on degradation, pH and apatite formation in simulated body fluid

    Delia S. Brauer;Natalia Karpukhina;Matthew D. O’Donnell;Robert V. Law

  • Bioactive Glasses: Sprouting Angiogenesis in Tissue Engineering

    Saeid Kargozar;Francesco Baino;Sepideh Hamzehlou;Sepideh Hamzehlou;Robert G. Hill

  • Structural analysis of bioactive glasses

    I. Elgayar;A.E. Aliev;A.R. Boccaccini;R.G. Hill

  • Influence of magnesia on the structure and properties of bioactive glasses

    S.J. Watts;R.G. Hill;R.G. Hill;M.D. O’Donnell;R.V. Law

  • An alternative view of the degradation of bioglass

    R. Hill

  • Structural analysis of a series of strontium-substituted apatites.

    M.D. O’Donnell;Y. Fredholm;A. de Rouffignac;R.G. Hill

  • Influence of strontium and the importance of glass chemistry and structure when designing bioactive glasses for bone regeneration.

    M.D. O’Donnell;R.G. Hill

  • High phosphate content significantly increases apatite formation of fluoride-containing bioactive glasses

    Mohammed Mneimne;Robert G. Hill;Andrew J. Bushby;Delia S. Brauer

  • Predicting the bioactivity of glasses using the network connectivity or split network models

    Robert G. Hill;Delia S. Brauer

  • Influence of sodium oxide content on bioactive glass properties

    K. E. Wallace;R. G. Hill;J. T. Pembroke;C. J. Brown

  • Influence of strontium for calcium substitution in bioactive glasses on degradation, ion release and apatite formation

    Yann C. Fredholm;Natalia Karpukhina;Delia S. Brauer;Julian R. Jones

  • Strontium containing bioactive glasses: Glass structure and physical properties

    Yann C. Fredholm;Natalia Karpukhina;Robert V. Law;Robert G. Hill

  • Comparison of two heat-pressed all-ceramic dental materials.

    Catherine M Gorman;W E McDevitt;Robert G Hill

  • Structure of fluoride-containing bioactive glasses

    Delia S. Brauer;Natalia Karpukhina;Robert V. Law;Robert G. Hill;Robert G. Hill

  • Strontium- and cobalt-substituted bioactive glasses seeded with human umbilical cord perivascular cells to promote bone regeneration via enhanced osteogenic and angiogenic activities

    Saeid Kargozar;Nasrin Lotfibakhshaiesh;Jafar Ai;Masoud Mozafari

  • Melt-derived bioactive glass scaffolds produced by a gel-cast foaming technique

    Zoe Y. Wu;Robert G. Hill;Sheng Yue;Donovan Nightingale

  • Strontium-substituted bioactive glasses in vitro osteogenic and antibacterial effects.

    Jie Liu;Simon C.F. Rawlinson;Robert G. Hill;Farida Fortune

  • Effect of P2O5 content in two series of soda lime phosphosilicate glasses on structure and properties – Part I: NMR

    M.D. O’Donnell;S.J. Watts;R.V. Law;R.G. Hill

  • Characterization of the structure of calcium alumino-silicate and calcium fluoro-alumino-silicate glasses by magic angle spinning nuclear magnetic resonance (MAS-NMR)

    Artemis Stamboulis;Robert G. Hill;Robert V. Law

Frequent Co-Authors

Robert V. Law
Robert V. Law Imperial College London
David Wood
David Wood University of Leeds
Molly M. Stevens
Molly M. Stevens University of Oxford
Julian R. Jones
Julian R. Jones Imperial College London
Masoud Mozafari
Masoud Mozafari University of Oulu
Francesco Baino
Francesco Baino Polytechnic University of Turin
Aldo R. Boccaccini
Aldo R. Boccaccini University of Erlangen-Nuremberg
Stuart Hampshire
Stuart Hampshire University of Limerick
Xavier Querol
Xavier Querol Spanish National Research Council

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