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Chemistry

D-Index
57
Citations
11308
World Ranking
11109
National Ranking
807

Research.com Recognitions

  • 2018 - Fellow of the Combustion Institute for exceptional research on the fundamentals and application of laser optical methods to combustion
  • 2007 - OSA Fellows For the development and application of linear and nonlinear light scattering techniques for studying fluids and flow and for combustion diagnostics.

Overview

Alfred Leipertz is affiliated with the University of Erlangen-Nuremberg in Germany. Their research spans several main fields including Engineering, Environmental Science, and Earth and Planetary Sciences. Within these fields, Leipertz has worked on subfields such as Computational Mechanics, Global and Planetary Change, and Atmospheric Science.

The scientist's research focuses on topics that include Combustion and flame dynamics, Atmospheric and Environmental Gas Dynamics, and Atmospheric chemistry and aerosols. These areas reflect an interdisciplinary approach combining engineering principles with environmental and atmospheric studies.

Leipertz's recent publication record includes the paper titled "CH and NO planar laser-induced fluorescence and Rayleigh-scattering in turbulent flames using a multimode optical parametric oscillator", published in 2020 in the journal Applied Optics. This publication has contributed to the fields of combustion diagnostics and laser optical methods, accumulating a number of citations since its release.

Frequent collaborators in their work include Joseph D. Miller, Johannes W. Tröger, Sascha R. Engel, Thomas Seeger, and Terrence R. Meyer. These coauthors suggest a collaborative research environment focused on optical diagnostics and combustion science.

Alfred Leipertz has published primarily in the journal Applied Optics, evidence of their engagement within the optics research community and related applications in combustion and environmental science.

Recognition for their contributions includes two notable fellowships. Leipertz was named a Fellow of the Combustion Institute in 2018 for work concerning laser optical methods in combustion. Earlier, in 2007, they were recognized as an OSA Fellow for developments and applications of linear and nonlinear light scattering techniques used to study fluids, flow, and combustion diagnostics.

  • Main fields of study: Engineering, Environmental Science, Earth and Planetary Sciences
  • Subfields of study: Computational Mechanics, Global and Planetary Change, Atmospheric Science
  • Main topics: Combustion and flame dynamics, Atmospheric and Environmental Gas Dynamics, Atmospheric chemistry and aerosols
  • Recent paper: CH and NO planar laser-induced fluorescence and Rayleigh-scattering in turbulent flames using a multimode optical parametric oscillator (2020, Applied Optics)
  • Frequent co-authors: Joseph D. Miller, Johannes W. Tröger, Sascha R. Engel, Thomas Seeger, Terrence R. Meyer
  • Frequent publication venue: Applied Optics
  • Awards: Fellow of the Combustion Institute (2018), OSA Fellows (2007)

Best Publications

  • Density, Refractive Index, Interfacial Tension, and Viscosity of Ionic Liquids [EMIM][EtSO4], [EMIM][NTf2], [EMIM][N(CN)2], and [OMA][NTf2] in Dependence on Temperature at Atmospheric Pressure

    Andreas P Fröba;Heiko Kremer;Alfred Leipertz

  • Experimental vibrational study of imidazolium-based ionic liquids: Raman and infrared spectra of 1-ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide and 1-ethyl-3-methylimidazolium ethylsulfate.

    Johannes Kiefer;Juergen Fries;Alfred Leipertz

  • The role of the C2 position in interionic interactions of imidazolium based ionic liquids: a vibrational and NMR spectroscopic study

    Kristina Noack;Peter S. Schulz;Natalia Paape;Johannes Kiefer

  • Performance characteristics of soot primary particle size measurements by time-resolved laser-induced incandescence

    Stefan Will;Stephan Schraml;Katharina Bader;Alfred Leipertz

  • Thermal Conductivity of Ionic Liquids: Measurement and Prediction

    A. P. Fröba;M. H. Rausch;K. Krzeminski;D. Assenbaum

  • Density, Surface Tension, and Kinematic Viscosity of Hydrofluoroethers HFE-7000, HFE-7100, HFE-7200, HFE-7300, and HFE-7500

    Michael H. Rausch;Lorenz Kretschmer;Stefan Will;Alfred Leipertz

  • Design and characterization of a Raman-scattering-based sensor system for temporally resolved gas analysis and its application in a gas turbine power plant

    Johannes Kiefer;T. Seeger;S. Steuer;S. Schorsch

  • Development of an algebraic reaction rate closure for the numerical calculation of turbulent premixed methane, ethylene, and propane/air flames for pressures up to 1.0 MPa

    S.P. Reddy Muppala;Naresh K. Aluri;Friedrich Dinkelacker;Alfred Leipertz

  • Soot temperature measurements and implications for time-resolved laser-induced incandescence (TIRE-LII)

    Stephan Schraml;Stefan Dankers;Katharina Bader;Stefan Will

  • Interactions of phase equilibria, jet fluid dynamics and mass transfer during supercritical antisolvent micronization

    E. Reverchon;E. Torino;S. Dowy;A. Braeuer

  • Viscosity, Interfacial Tension, Density, and Refractive Index of Ionic Liquids [EMIM][MeSO3], [EMIM][MeOHPO2], [EMIM][OcSO4], and [BBIM][NTf2] in Dependence on Temperature at Atmospheric Pressure†

    Benjamin Hasse;Julia Lehmann;Daniel Assenbaum;Peter Wasserscheid

  • Pressure influence on the flame front curvature of turbulent premixed flames: comparison between experiment and theory

    A. Soika;F. Dinkelacker;A. Leipertz

  • Two-dimensional temperature determination in sooting flames by filtered Rayleigh scattering

    D. Hoffman;K.-U. Münch;A. Leipertz

  • Experimental comparison of single-shot broadband vibrational and dual-broadband pure rotational coherent anti-Stokes Raman scattering in hot air.

    Thomas Seeger;Alfred Leipertz

  • Structure of evaporating single- and multicomponent fuel sprays for 2nd generation gasoline direct injection

    L. Zigan;I. Schmitz;A. Flügel;M. Wensing

  • Structure of locally quenched highly turbulent lean premixed Flames

    F. Dinkelacker;A. Soika;D. Most;D. Hofmann

  • The influence of pressure on the control of premixed turbulent flames using an electric field

    A. Sakhrieh;G. Lins;F. Dinkelacker;T. Hammer

  • Measurement of the resolved flame structure of turbulent premixed flames with constant reynolds number and varied stoichiometry

    Armin Soika;Friedrich Dinkelacker;Alfred Leipertz

  • Accurate determination of liquid viscosity and surface tension using surface light scattering (SLS): Toluene under saturation conditions between 260 and 380 K

    A. P. Fröba;A. Leipertz

  • Concentration-dependent hydrogen-bonding effects on the dimethyl sulfoxide vibrational structure in the presence of water, methanol, and ethanol.

    Kristina Noack;Johannes Kiefer;Alfred Leipertz

  • Dropwise condensation of steam on ion implanted titanium surfaces

    M.H. Rausch;A. Leipertz;A.P. Fröba

  • Viscosity, Interfacial Tension, Self-Diffusion Coefficient, Density, and Refractive Index of the Ionic Liquid 1-Ethyl-3-methylimidazolium Tetracyanoborate as a Function of Temperature at Atmospheric Pressure

    Thomas Koller;Michael H. Rausch;Peter S. Schulz;Markus Berger

Frequent Co-Authors

Andreas P. Fröba
Andreas P. Fröba University of Erlangen-Nuremberg
Johannes Kiefer
Johannes Kiefer University of Bremen
Frank Beyrau
Frank Beyrau Otto-von-Guericke University Magdeburg
Peter Wasserscheid
Peter Wasserscheid University of Erlangen-Nuremberg
Zhongshan Li
Zhongshan Li Lund University
Wolfgang Peukert
Wolfgang Peukert University of Erlangen-Nuremberg
Terrence R. Meyer
Terrence R. Meyer Purdue University West Lafayette
Ernesto Reverchon
Ernesto Reverchon University of Salerno
Wolfgang Polifke
Wolfgang Polifke Technical University of Munich
Bo Li
Bo Li Hong Kong University of Science and Technology

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