World's Best Scientists 2026 revealed!

D-Index & Metrics

Chemistry

D-Index
49
Citations
7017
World Ranking
14992
National Ranking
3819

Overview

Alexander I. Popov is a researcher affiliated with Michigan State University in the United States. Their academic work spans multiple areas, primarily within mathematics and materials science, with a focused interest in electronic, optical, and magnetic materials as well as condensed matter physics and algebraic number theory.

The scientist's research covers a diverse range of topics, including multiferroics and related materials, advanced condensed matter physics, analytic number theory, seismic waves and analysis, algebraic geometry and number theory, polynomial and algebraic computation, and mathematical dynamics and fractals.

Alexander I. Popov has contributed to several recent publications. Notable papers include:

  • Unusual magnetoelectric effect in paramagnetic rare-earth langasite, 2020, published in npj Quantum Materials
  • Probabilistic Galois Theory in Function Fields, 2023, published in arXiv (Cornell University)
  • Probabilistic Galois theory in function fields, 2024, published in Finite Fields and Their Applications
  • Single-Ion Magnetostriction in Gd2O3-CeO2 Solid Solutions, 2022, published in Advanced Functional Materials
  • Warm-Start Variational Quantum Policy Iteration, 2024, published in arXiv (Cornell University)

The scientist's collaborative work includes frequent coauthors such as А. К. Звездин, Alexei Entin, Lukas Weymann, Lorenz Bergen, and Thomas Kain.

Alexander I. Popov's research outputs have appeared predominantly in venues including arXiv (Cornell University), npj Quantum Materials, Finite Fields and Their Applications, and Advanced Functional Materials. Their work reflects a combination of theoretical and applied studies intersecting advanced physics and mathematical disciplines.

Best Publications

  • Studies on the Chemistry of Halogen and of Polyhalides. XIII. Voltammetry of Iodine Species in Acetonitrile

    Alexander I. Popov;David H. Geske

  • Spectroscopic studies of ionic solvation. X. Study of the solvation of sodium ions in nonaqueous solvents by sodium-23 nuclear magnetic resonance

    Ronald H. Erlich;Alexander I. Popov

  • Multinuclear NMR study of dibenzo-30-crown-10 complexes with sodium, potassium, and cesium ions in nonaqueous solvents

    Mojtaba Shamsipur;Alexander I. Popov

  • Studies on the Chemistry of Halogens and of Polyhalides. V. Spectrophotometric Study of Polyhalogen Complexes in Acetonitrile and in Ethylene Dichloride

    Alexander I. Popov;Robert F. Swensen

  • Lithium-7 nuclear magnetic resonance and calorimetric study of lithium crown complexes in various solvents

    Alfred J. Smetana;Alexander I. Popov

  • NMR and infrared studies of the complexation reaction of 18-crown-6 with some organic solvents

    Pamela A. Mosier-Boss;Alexander I. Popov

  • Spectroscopic studies of ionic solvation. XVI. Lithium-7 and chlorine-35 nuclear magnetic resonance studies in various solvents

    Yves M. Cahen;Paul R. Handy;Eric T. Roach;Alexander I. Popov

  • Solvation studies of sodium and lithium ions by sodium-23 and lithium-7 nuclear magnetic resonance

    Ronald H. Erlich;Eric Roach;Alexander I. Popov

  • Nuclear magnetic resonance studies of some sodium ion complexes with crown ethers and [2]-cryptands in various solvents

    Jy Dale Lin;Alexander I. Popov

  • Sodium-23, cesium-133 and thallium-205 NMR study of sodium, cesium and thallium complexes with large crown ethers in nonaqueous solutions

    Mojtaba Shamsipur;Gholamhossein Rounaghi;Alexander I. Popov

  • Spectroscopic studies of ionic solvation. XIV. Sodium-23 nuclear magnetic resonance and electrical conductance study of contact ion pairs in nonaqueous solvents

    Mark S. Greenberg;Richard L. Bodner;Alexander I. Popov

  • Multinuclear NMR studies of alkali ions in nonaqueous solvents

    Alexander I. Popov

  • Cesium-133 nuclear magnetic resonance study of complexation by cryptand C222 in various solvents: evidence for exclusive and inclusive complexes

    Elizabeth Mei;Alexander I. Popov;James L. Dye

  • Complexation of the cesium cation by macrocyclic polyethers in various solvents. A cesium-133 nuclear magnetic resonance study of the thermodynamics and kinetics of exchange

    Elizabeth Mei;Alexander I. Popov;James L. Dye

  • Study of the interaction of lithium ion with pentamethylenetetrazole by lithium-7 NMR

    Eric T. Roach;Paul R. Handy;Alexander I. Popov

  • Spectroscopic studies of ionic solvation. XI. Sodium magnetic resonance in basic solvents

    Michel Herlem;Alexander I. Popov

  • Spectroscopic studies of ionic solvation. VIII. Alkali metal salts in acetone solutions

    Alexander I. Popov;Ming Keong Wong;William J. McKinney

  • The Stability of the Tetramethylammonium Polyiodides in Ethylene Chloride1

    Robert E. Buckles;James P. Yuk;Alexander I. Popov

  • Spectroscopic studies of ionic solvation—XVII. Studies of preferential solvation of the sodium ion in nonaqueous mixed solvents by sodium-23 nuclear magnetic resonance

    M.S. Greenberg;A.I. Popov

  • Spectroscopic studies of alkali metal ions and ammonium ions in 2-pyrrolidones

    John L. Wuepper;Alexander I. Popov

Frequent Co-Authors

James L. Dye
James L. Dye Michigan State University
Willis B. Person
Willis B. Person University of Florida
Mojtaba Shamsipur
Mojtaba Shamsipur Razi University
Joseph A. Caruso
Joseph A. Caruso Wayne State University
Jean-Marie Lehn
Jean-Marie Lehn University of Strasbourg
Alexander Tulinsky
Alexander Tulinsky Michigan State University

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Studying Chemistry in the USA opens doors to diverse career paths beyond the traditional lab setting. One popular route is entering pharmaceutical sales, where understanding chemistry fundamentals can significantly boost your success. If you're curious about how much do pharmaceutical sales reps make, this career offers competitive salaries combined with opportunities for growth.

For those interested in healthcare, becoming a pharmacist is a rewarding option. It requires dedication and preparation, so knowing how long does it take to become a pharmacist can help you plan your educational journey effectively.

Alternatively, if forensic science appeals to you, there are many forensic degree online options that provide flexibility while preparing you for roles in criminal investigations and lab analysis.

Careers like autopsy technicians also benefit from a strong chemistry background. Understanding how much do autopsy techs make can give insight into the financial rewards of this specialized field within forensic pathology.

Best Scientists Citing Alexander I. Popov

Trending Scientists