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Chemistry

D-Index
59
Citations
15051
World Ranking
10030
National Ranking
2793

Overview

Jason P. Dworkin is affiliated with the Goddard Space Flight Center in the United States. Their research spans several interconnected fields within physics and astronomy and environmental science, focusing extensively on planetary and astrochemical investigations.

Their primary fields of study include:

  • Physics and Astronomy
  • Environmental Science

Within these areas, the subfields they contribute to most frequently are:

  • Astronomy and Astrophysics
  • Ecology
  • Spectroscopy
  • Molecular Biology
  • Aerospace Engineering

Jason P. Dworkin's work revolves significantly around topics such as:

  • Astro and Planetary Science
  • Isotope Analysis in Ecology
  • Planetary Science and Exploration
  • Origins and Evolution of Life
  • Mass Spectrometry Techniques and Applications
  • Space Science and Extraterrestrial Life
  • Astrophysics and Star Formation Studies

The scientist has published extensively in several key scientific venues, including:

  • Meteoritics and Planetary Science
  • Astrobiology
  • Nature Communications
  • Nature Astronomy
  • Geochimica et Cosmochimica Acta

Recent notable papers authored by Jason P. Dworkin include:

  • "Asteroid (101955) Bennu in the laboratory: Properties of the sample collected by OSIRIS-REx", 2024, Meteoritics and Planetary Science
  • "Soluble organic molecules in samples of the carbonaceous asteroid (162173) Ryugu", 2023, Science
  • "Identifying the wide diversity of extraterrestrial purine and pyrimidine nucleobases in carbonaceous meteorites", 2022, Nature Communications
  • "Bright carbonate veins on asteroid (101955) Bennu: Implications for aqueous alteration history", 2020, Science
  • "Abundant extraterrestrial amino acids in the primitive CM carbonaceous chondrite Asuka 12236", 2020, Meteoritics and Planetary Science

Throughout their career, they have collaborated frequently with several researchers, including:

  • D. P. Glavin
  • Jamie E. Elsila
  • José C. Aponte
  • Hannah L. McLain
  • D. S. Lauretta

Best Publications

  • Comet 81P/Wild 2 under a microscope.

    Don Brownlee;Peter Tsou;Jérôme Aléon;Conel M O'd Alexander

  • Racemic amino acids from the ultraviolet photolysis of interstellar ice analogues

    Max P. Bernstein;Max P. Bernstein;Jason P. Dworkin;Jason P. Dworkin;Scott A. Sandford;George W. Cooper

  • Organics captured from comet 81P/Wild 2 by the Stardust spacecraft.

    Scott A. Sandford;Jérôme Aléon;Conel M. O. 'D. Alexander;Tohru Araki

  • Carbonaceous meteorites contain a wide range of extraterrestrial nucleobases

    Michael P. Callahan;Karen E. Smith;H. James Cleaves;Josef Ruzicka

  • Cometary Glycine Detected in Samples Returned by Stardust

    Jamie E. Elsila;Daniel P. Glavin;Jason P. Dworkin

  • Volatile and organic compositions of sedimentary rocks in Yellowknife Bay, Gale crater, Mars.

    Douglas W. Ming;P. D. Archer;D. P. Glavin;J. L. Eigenbrode

  • Extraterrestrial nucleobases in the Murchison meteorite

    Zita Martins;Oliver Botta;Oliver Botta;Marilyn L. Fogel;Mark A. Sephton

  • Evidence for perchlorates and the origin of chlorinated hydrocarbons detected by SAM at the Rocknest aeolian deposit in Gale Crater

    Daniel P. Glavin;Caroline Freissinet;Kristen E. Miller;Jennifer L. Eigenbrode

  • Understanding prebiotic chemistry through the analysis of extraterrestrial amino acids and nucleobases in meteorites

    Aaron S. Burton;Jennifer C. Stern;Jamie E. Elsila;Daniel P. Glavin

  • Enrichment of the amino acid L-isovaline by aqueous alteration on CI and CM meteorite parent bodies.

    Daniel P. Glavin;Jason P. Dworkin

  • Primordial synthesis of amines and amino acids in a 1958 Miller H2S-rich spark discharge experiment

    Eric T. Parker;Henderson J. Cleaves;Jason P. Dworkin;Daniel P. Glavin

  • The first cell membranes.

    David Deamer;Jason P. Dworkin;Scott A. Sandford;Max P. Bernstein

  • Self-assembling amphiphilic molecules: Synthesis in simulated interstellar/precometary ices.

    Jason P. Dworkin;David W. Deamer;Scott A. Sandford;Louis J. Allamandola

  • The Effects of Parent Body Processes on Amino Acids in Carbonaceous Chondrites

    Daniel P. Glavin;Michael P. Callahan;Jason P. Dworkin;Jamie E. Elsila

  • The Search for Chiral Asymmetry as a Potential Biosignature in our Solar System.

    Daniel P Glavin;Aaron S Burton;Jamie E Elsila;José C Aponte;José C Aponte

  • Mechanisms of Amino Acid Formation in Interstellar Ice Analogs

    Jamie E. Elsila;Jamie E. Elsila;Jason P. Dworkin;Max P. Bernstein;Mildred P. Martin;Mildred P. Martin

  • Radar-Enabled Recovery of the Sutter’s Mill Meteorite, a Carbonaceous Chondrite Regolith Breccia

    Peter Jenniskens;Peter Jenniskens;Marc D. Fries;Qing-Zhu Yin;Michael Zolensky

  • Extraterrestrial ribose and other sugars in primitive meteorites.

    Yoshihiro Furukawa;Yoshito Chikaraishi;Yoshito Chikaraishi;Naohiko Ohkouchi;Nanako O. Ogawa

  • Origin and Evolution of Prebiotic Organic Matter As Inferred from the Tagish Lake Meteorite

    Christopher D. K. Herd;Alexandra Blinova;Danielle N. Simkus;Yongsong Huang

  • The Photostability of Amino Acids in Space

    P. Ehrenfreund;M. P. Bernstein;M. P. Bernstein;J. P. Dworkin;J. P. Dworkin;S. A. Sandford

  • Amino acid analyses of Antarctic CM2 meteorites using liquid chromatography‐time of flight‐mass spectrometry

    Daniel P. Glavin;Jason P. Dworkin;Andrew Aubrey;Oliver Botta

Frequent Co-Authors

Daniel P. Glavin
Daniel P. Glavin Goddard Space Flight Center
Dante S. Lauretta
Dante S. Lauretta University of Arizona
Paul R. Mahaffy
Paul R. Mahaffy Goddard Space Flight Center
Harold C. Connolly
Harold C. Connolly Rowan University
Louis J. Allamandola
Louis J. Allamandola Ames Research Center
Andrew Steele
Andrew Steele Carnegie Institution for Science
Jeffrey L. Bada
Jeffrey L. Bada University of California, San Diego
Richard N. Zare
Richard N. Zare Stanford University
Rafael Navarro-González
Rafael Navarro-González National Autonomous University of Mexico

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