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Materials Science

D-Index
86
Citations
34911
World Ranking
2028
National Ranking
615

Research.com Recognitions

  • 2020 - Member of the National Academy of Engineering For contributions to the science and nanotechnology of concrete for sustainable construction and durable structures.

Overview

Paulo J.M. Monteiro is affiliated with the University of California, Berkeley in the United States. Their research spans several fields within engineering, with primary focus areas including aerospace engineering and electrical and electronic engineering. The scientist's work also extends into earth-surface processes, ecology, evolution, behavior and systematics, and archaeology.

The main topics covered by Paulo J.M. Monteiro include:

  • Advanced Antenna and Metasurface Technologies
  • Antenna Design and Analysis
  • Microwave and Dielectric Measurement Techniques
  • Building materials and conservation
  • Water management and technologies
  • Maritime and Coastal Archaeology

Monteiro has contributed to academic literature through publications in the following venues:

  • TENCON 2022 - 2022 IEEE Region 10 Conference (TENCON)
  • Preprints.org
  • SSRN Electronic Journal

Recent papers authored or co-authored by Monteiro include:

  • Effects of Iron (III) Oxide-Enhanced Building Materials on RF Communications, 2022, TENCON 2022 - 2022 IEEE Region 10 Conference (TENCON)
  • Investigation of Material Loading on an Evolved Antecedent Hexagonal CSRR-Loaded Electrically Small Antenna, 2023, Preprints.org
  • Influence of using seawater on the properties of Roman concrete, 2025, SSRN Electronic Journal

The scientist frequently collaborates with other researchers. Frequent co-authors include:

  • Yee Loon Sum
  • Boon-Hee Soong
  • Joel Ng
  • Jake Peng Sean Ng
  • Monique Palavro Lunardi

In 2020, Paulo J.M. Monteiro received recognition as a Member of the National Academy of Engineering for contributions made to the science and nanotechnology of concrete for sustainable construction and durable structures.

Best Publications

  • Concrete: Microstructure, Properties, and Materials

    P. K. Mehta;Paulo Monteiro

  • Advances in understanding hydration of Portland cement

    Karen L. Scrivener;Patrick Juilland;Paulo J.M. Monteiro

  • The evolution of strength and crystalline phases for alkali-activated ground blast furnace slag and fly ash-based geopolymers

    Jae Eun Oh;Paulo J.M. Monteiro;Ssang Sun Jun;Sejin Choi

  • Readily implementable techniques can cut annual CO 2 emissions from the production of concrete by over 20

    Sabbie A Miller;Arpad Horvath;Paulo J M Monteiro

  • Mechanical properties, durability, and life-cycle assessment of self-consolidating concrete mixtures made with blended portland cements containing fly ash and limestone powder

    Kemal Celik;Cagla Meral;Cagla Meral;A. Petek Gursel;P. Kumar Mehta

  • Poroelastic model for concrete exposed to freezing temperatures

    Olivier Coussy;Paulo J.M. Monteiro

  • High-volume natural volcanic pozzolan and limestone powder as partial replacements for portland cement in self-compacting and sustainable concrete

    K. Celik;M.D. Jackson;M. Mancio;C. Meral

  • Nanostructure of calcium silicate hydrates in cements.

    L. B. Skinner;S. R. Chae;C. J. Benmore;H. R. Wenk

  • Concrete: A three phase material

    A. Ulrik Nilsen;Paulo J.M. Monteiro

  • Time to failure for concrete exposed to severe sulfate attack

    Paulo J.M. Monteiro;Kimberly E. Kurtis

  • Calcium sulfoaluminate (Ye'elimite) hydration in the presence of gypsum, calcite, and vaterite

    Craig W. Hargis;Antonio Telesca;Paulo J.M. Monteiro

  • A hydration study of various calcium sulfoaluminate cements

    A. Telesca;M. Marroccoli;M.L. Pace;M. Tomasulo

  • Electrical Resistance Tomography Imaging of Concrete

    Kimmo Karhunen;Aku Seppänen;Anssi Lehikoinen;Paulo J.M. Monteiro

  • An inverse method to determine the elastic properties of the interphase between the aggregate and the cement paste

    Z. Hashin;P.J.M. Monteiro

  • INHOMOGENEOUS INTERFACIAL TRANSITION ZONE MODEL FOR THE BULK MODULUS OF MORTAR

    Melanie P Lutz;Paulo J.M Monteiro;Robert W Zimmerman

  • Development of ultra-lightweight cement composites with low thermal conductivity and high specific strength for energy efficient buildings

    Yunpeng Wu;Jun-Yan Wang;Paulo J.M. Monteiro;Min-Hong Zhang

  • The alkali-silica reaction, part I: Use of the double-layer theory to explain the behavior of reaction-product gels

    Monica Prezzi;Paulo J. M. Monteiro;Garrison Sposito

  • A soft X-ray microscope investigation into the effects of calcium chloride on tricalcium silicate hydration

    Maria G Juenger;P. J M Monteiro;E. M. Gartner;G. P. Denbeaux

  • Early age hydration of calcium sulfoaluminate (synthetic ye'elimite, ) in the presence of gypsum and varying amounts of calcium hydroxide

    Craig W. Hargis;Ana Paula Kirchheim;Paulo J.M. Monteiro;Ellis M. Gartner

  • Microstructural analysis of recycled concrete using X-ray microtomography

    M.B. Leite;M.B. Leite;P.J.M. Monteiro

  • The aggregate-mortar interface

    P.J.M. Monteiro;J.C. Maso;J.P. Ollivier

Frequent Co-Authors

Hans-Rudolf Wenk
Hans-Rudolf Wenk University of California, Berkeley
Simon M. Clark
Simon M. Clark Macquarie University
Kimberly E. Kurtis
Kimberly E. Kurtis Georgia Institute of Technology
Garrison Sposito
Garrison Sposito University of California, Berkeley
Arpad Horvath
Arpad Horvath University of California, Berkeley
Peter Fischer
Peter Fischer Lawrence Berkeley National Laboratory
Kejin Wang
Kejin Wang Iowa State University
Yunsheng Zhang
Yunsheng Zhang Southeast University
Roya Maboudian
Roya Maboudian University of California, Berkeley
Chris J. Benmore
Chris J. Benmore Argonne National Laboratory

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