D-Index & Metrics Best Publications

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
Chemistry D-index 77 Citations 16,944 307 World Ranking 2415 National Ranking 192

Research.com Recognitions

Awards & Achievements

1983 - Fellow of American Physical Society (APS) Citation For distinguished contributions to the laser spectroscopy of molecules and ions

1965 - Fellow of Alfred P. Sloan Foundation

Overview

What is he best known for?

The fields of study he is best known for:

  • Quantum mechanics
  • Electron
  • Molecule

Edward W. Schlag mainly investigates Atomic physics, Ionization, Atmospheric-pressure laser ionization, Photoionization and Mass spectrometry. His Atomic physics study incorporates themes from Molecule, Excitation and Ionization energy. The Ionization study combines topics in areas such as Dissociation and X-ray photoelectron spectroscopy.

Edward W. Schlag has researched Atmospheric-pressure laser ionization in several fields, including Ion source and Infrared multiphoton dissociation. In Photoionization, Edward W. Schlag works on issues like Spectroscopy, which are connected to Resonance, Spectral line, Analytical chemistry, Photon and Polarization. His work on Hybrid mass spectrometer as part of general Mass spectrometry research is often related to Direct observation, thus linking different fields of science.

His most cited work include:

  • Potential Energy Surface for the Benzene Dimer. Results of ab Initio CCSD(T) Calculations Show Two Nearly Isoenergetic Structures: T-Shaped and Parallel-Displaced (449 citations)
  • Potential Energy Surface of the Benzene Dimer: Ab Initio Theoretical Study (324 citations)
  • Two-colour photoionization resonance spectroscopy of NO: Complete separation of rotational levels of NO+ at the ionization threshold (295 citations)

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

Edward W. Schlag focuses on Atomic physics, Ionization, Analytical chemistry, Molecule and Ion. His research integrates issues of Spectral line, Spectroscopy, Photoionization and Excitation in his study of Atomic physics. Edward W. Schlag works on Analytical chemistry which deals in particular with Mass spectrometry.

The various areas that Edward W. Schlag examines in his Molecule study include Chemical physics, Photochemistry and Isotope. His Ion study integrates concerns from other disciplines, such as Electron, Dissociation, Kinetic energy and Cluster. His work in Excited state tackles topics such as Benzene which are related to areas like Ab initio quantum chemistry methods and Physical chemistry.

He most often published in these fields:

  • Atomic physics (49.11%)
  • Ionization (23.21%)
  • Analytical chemistry (20.54%)

What were the highlights of his more recent work (between 1998-2019)?

  • Atomic physics (49.11%)
  • Ionization (23.21%)
  • Rydberg formula (8.04%)

In recent papers he was focusing on the following fields of study:

Edward W. Schlag mainly focuses on Atomic physics, Ionization, Rydberg formula, Photoionization and Ion. His study in Atomic physics is interdisciplinary in nature, drawing from both Mass spectrum, Spectroscopy, Resonance, Molecule and Laser. Edward W. Schlag has included themes like Chemical physics, Photochemistry, Dissociation and Binding energy in his Molecule study.

The study incorporates disciplines such as Spectral line, Excited state and Analytical chemistry in addition to Ionization. His Rydberg formula study combines topics from a wide range of disciplines, such as Autoionization, Atomic system, Xenon and Excitation. His Photoionization research incorporates elements of Spectrometer, Coulomb and Mass spectrometry.

Between 1998 and 2019, his most popular works were:

  • Structure and vibrational dynamics of the benzene dimer (119 citations)
  • Distal charge transport in peptides (77 citations)
  • Charge conductivity in peptides: dynamic simulations of a bifunctional model supporting experimental data. (57 citations)

In his most recent research, the most cited papers focused on:

  • Quantum mechanics
  • Electron
  • Molecule

Edward W. Schlag spends much of his time researching Computational chemistry, Charge, Chemical physics, Ionization and Molecule. His work carried out in the field of Computational chemistry brings together such families of science as Bifunctional, Master equation, Quantum and Benzene. His Chemical physics research incorporates themes from Ion, Hamiltonian and Dissociation.

His studies deal with areas such as Excited state and Photon as well as Ionization. As a part of the same scientific family, Edward W. Schlag mostly works in the field of Excited state, focusing on Spectrometer and, on occasion, Atomic physics. As part of one scientific family, Edward W. Schlag deals mainly with the area of Atomic physics, narrowing it down to issues related to the Ab initio quantum chemistry methods, and often Ab initio.

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

Potential Energy Surface for the Benzene Dimer. Results of ab Initio CCSD(T) Calculations Show Two Nearly Isoenergetic Structures: T-Shaped and Parallel-Displaced

Pavel Hobza;Heinrich L. Selzle and;Edward W. Schlag.
The Journal of Physical Chemistry (1996)

828 Citations

Potential Energy Surface of the Benzene Dimer: Ab Initio Theoretical Study

Pavel Hobza;Heinrich L. Selzle;Edward W. Schlag.
Journal of the American Chemical Society (1994)

604 Citations

Structure and Properties of Benzene-Containing Molecular Clusters - Nonempirical Ab-Initio Calculations and Experiments

Pavel Hobza;Heinrich L. Selzle;Edward W. Schlag.
Chemical Reviews (1994)

481 Citations

Anti-Hydrogen Bond in the Benzene Dimer and Other Carbon Proton Donor Complexes

Pavel Hobza;Vladimír Špirko;Heinrich L. Selzle;Edward W. Schlag.
Journal of Physical Chemistry A (1998)

467 Citations

The ionization energy of nitric oxide

Georg Reiser;Wieland Habenicht;Klaus Müller-Dethlefs;Edward W. Schlag.
Chemical Physics Letters (1988)

409 Citations

Two-colour photoionization resonance spectroscopy of NO: Complete separation of rotational levels of NO+ at the ionization threshold

Klaus Müller-Dethlefs;Michael Sander;Edward W. Schlag.
Chemical Physics Letters (1984)

357 Citations

Anion spectroscopy of uracil, thymine and the amino-oxo and amino-hydroxy tautomers of cytosine and their water clusters

J. Schiedt;R. Weinkauf;D.M. Neumark;E.W. Schlag.
Chemical Physics (1998)

311 Citations

Visible and UV multiphoton ionization and fragmentation of polyatomic molecules

U. Boesl;H. J. Neusser;E. W. Schlag.
Journal of Chemical Physics (1980)

287 Citations

A Novel Method Capable of Resolving Rotational Ionic States by the Detection of Threshold Photoelectrons with a Resolution of 1.2 cm -1

Klaus Müller-Dethlefs;Michael Sander;Edward W. Schlag.
Zeitschrift für Naturforschung A (1984)

284 Citations

Highly Efficient Charge Transfer in Peptide Cations in the Gas Phase: Threshold Effects and Mechanism

R. Weinkauf;P. Schanen;A. Metsala;E. W. Schlag.
The Journal of Physical Chemistry (1996)

245 Citations

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