D-Index & Metrics Best Publications
Hamlin M. Jennings

Hamlin M. Jennings

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Materials Science D-index 75 Citations 20,615 203 World Ranking 1886 National Ranking 617

Overview

What is he best known for?

The fields of study Hamlin M. Jennings is best known for:

  • Ion
  • Equivalent circuit
  • Neutron scattering

His Cement investigation overlaps with other disciplines such as Calcium silicate hydrate and Portland cement. In his research, Hamlin M. Jennings undertakes multidisciplinary study on Portland cement and Cement. His Shear (geology) research extends to the thematically linked field of Composite material. Hamlin M. Jennings performs integrative Organic chemistry and Polymer science research in his work. His work blends Polymer science and Organic chemistry studies together. Mineralogy and Calcite are commonly linked in his work. His study ties his expertise on Mineralogy together with the subject of Calcite. His Chemical engineering study frequently draws connections between adjacent fields such as Colloid. Colloid is closely attributed to Chemical engineering in his work.

His most cited work include:

  • None (260 citations)
  • On reactions between silicon and nitrogen (183 citations)
  • Colloid model of C−S−H and implications to the problem of creep and shrinkage (175 citations)

What are the main themes of his work throughout his whole career to date

His Cement studies intersect with other disciplines such as Portland cement and Calcium silicate hydrate. In his works, Hamlin M. Jennings undertakes multidisciplinary study on Calcium silicate hydrate and Cement. Composite material is closely attributed to Shrinkage in his study. His research combines Silicate and Chemical engineering. The study of Silicate is intertwined with the study of Chemical engineering in a number of ways. His research combines Phase (matter) and Organic chemistry. His Phase (matter) study frequently intersects with other fields, such as Organic chemistry. Hamlin M. Jennings integrates many fields, such as Microstructure and Metallurgy, in his works. He integrates Metallurgy with Microstructure in his research.

Hamlin M. Jennings most often published in these fields:

  • Composite material (90.00%)
  • Cement (68.00%)
  • Mineralogy (42.00%)

What were the highlights of his more recent work (between 2001-2011)?

  • Composite material (100.00%)
  • Cement (80.00%)
  • Chemical engineering (60.00%)

In recent works Hamlin M. Jennings was focusing on the following fields of study:

His Chemical engineering study frequently draws connections between adjacent fields such as Colloid and Silicate. Many of his studies on Colloid apply to Chemical engineering as well. His work on Porosity expands to the thematically related Composite material. In his works, he conducts interdisciplinary research on Cement and Calcium silicate hydrate. His work blends Calcium silicate hydrate and Cement studies together. Hamlin M. Jennings combines Creep and Viscoelasticity in his research. Hamlin M. Jennings performs integrative study on Viscoelasticity and Creep in his works. He combines Surface roughness and Surface finish in his studies. He applies his multidisciplinary studies on Surface finish and Surface roughness in his research.

Between 2001 and 2011, his most popular works were:

  • Colloid model of C−S−H and implications to the problem of creep and shrinkage (175 citations)
  • Effect of Age on Diffusion in Hydrated Alite Cement (33 citations)
  • Colloid model of C-S-H and implications to the problem of creep and shrinkage (20 citations)

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

A model for the microstructure of calcium silicate hydrate in cement paste

Hamlin M. Jennings.
Cement and Concrete Research (2000)

1006 Citations

Composition and density of nanoscale calcium–silicate–hydrate in cement

Andrew J. Allen;Jeffrey J. Thomas;Hamlin M. Jennings.
Nature Materials (2007)

968 Citations

Refinements to colloid model of C-S-H in cement: CM-II

Hamlin M. Jennings.
Cement and Concrete Research (2008)

896 Citations

Solubility and structure of calcium silicate hydrate

Jeffrey J. Chen;Jeffrey J. Thomas;Hal F.W. Taylor;Hamlin M. Jennings.
Cement and Concrete Research (2004)

844 Citations

A model for two types of calcium silicate hydrate in the microstructure of Portland cement pastes

Paul D Tennis;Hamlin M Jennings.
Cement and Concrete Research (2000)

672 Citations

Influence of Nucleation Seeding on the Hydration Mechanisms of Tricalcium Silicate and Cement

Jeffrey J. Thomas;Hamlin M. Jennings;Jeffrey J. Chen.
Journal of Physical Chemistry C (2009)

670 Citations

Impedance Spectroscopy of Hydrating Cement‐Based Materials: Measurement, Interpretation, and Application

Bruce J. Christensen;Bruce J. Christensen;R. Tate Coverdale;R. Tate Coverdale;Rudolf A. Olson;Rudolf A. Olson;Steven J. Ford;Steven J. Ford.
Journal of the American Ceramic Society (1994)

491 Citations

A multi-technique investigation of the nanoporosity of cement paste

Hamlin M. Jennings;Jeffrey J. Thomas;Julia S. Gevrenov;Georgios Constantinides.
Cement and Concrete Research (2007)

443 Citations

Pore solution chemistry of alkali-activated ground granulated blast-furnace slag

Sujin Song;Hamlin M Jennings.
Cement and Concrete Research (1999)

405 Citations

Hydration of alkali-activated ground granulated blast furnace slag

S. Song;D. Sohn;H. M. Jennings;Thomas O Mason.
Journal of Materials Science (2000)

346 Citations

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