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Chemistry

D-Index
55
Citations
13237
World Ranking
11995
National Ranking
274

Overview

Stephen J. Blanksby is affiliated with the Queensland University of Technology in Australia. Their research spans multiple disciplines primarily centered on chemistry and biochemistry, genetics, and molecular biology.

The main fields of study for this scientist include:

  • Chemistry
  • Biochemistry, Genetics and Molecular Biology

Their work further delves into specialized subfields such as:

  • Spectroscopy
  • Molecular Biology
  • Cancer Research
  • Organic Chemistry
  • Biochemistry

Research topics explored by Stephen J. Blanksby include:

  • Mass Spectrometry Techniques and Applications
  • Metabolomics and Mass Spectrometry Studies
  • Analytical Chemistry and Chromatography
  • Cancer, Lipids, and Metabolism
  • Lipid metabolism and biosynthesis
  • Advanced Chemical Physics Studies
  • Advanced Proteomics Techniques and Applications

They have published extensively in several scientific journals, with frequent appearances in:

  • Journal of the American Society for Mass Spectrometry
  • International Journal of Mass Spectrometry
  • Analytical Chemistry
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Angewandte Chemie International Edition

Some of the recent papers authored or co-authored by Stephen J. Blanksby include:

  • Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer, 2020, Cancer & Metabolism
  • Apocryphal FADS2 activity promotes fatty acid diversification in cancer, 2021, Cell Reports
  • Mass Spectrometry Imaging of Lipids with Isomer Resolution Using High-Pressure Ozone-Induced Dissociation, 2021, Analytical Chemistry
  • Mass spectrometry as a tool to advance polymer science, 2020, Nature Reviews Chemistry
  • Ozone-enabled fatty acid discovery reveals unexpected diversity in the human lipidome, 2023, Nature Communications

The scientist has collaborated frequently with other researchers, notably:

  • Berwyck L. J. Poad
  • David L. Marshall
  • Reuben S. E. Young
  • Adam J. Trevitt
  • Shane R. Ellis

Best Publications

  • Bond Dissociation Energies of Organic Molecules

    Stephen J Blanksby;G Barney Ellison

  • Advances in Mass Spectrometry for Lipidomics

    Stephen J. Blanksby;Todd W. Mitchell

  • Ozone-induced dissociation : Elucidation of double bond position within mass-selected lipid ions

    M.C. Thomas;T.W. Mitchell;D.G. Harman;J.M. Deeley

  • Mechanisms of glycerol dehydration.

    Mark R Nimlos;Stephen J Blanksby;Xianghong Qian;Michael E Himmel

  • Elucidation of double bond position in unsaturated lipids by ozone electrospray ionization mass spectrometry

    Michael C. Thomas;Todd W. Mitchell;David G. Harman;Jane M. Deeley

  • Mass spectrometry imaging with isomeric resolution enabled by ozone-induced dissociation

    Martin R. L. Paine;Berwyck L. J. Poad;Gert B. Eijkel;David L. Marshall

  • Negative-Ion Photoelectron Spectroscopy, Gas-Phase Acidity, and Thermochemistry of the Peroxyl Radicals CH3OO and CH3CH2OO

    Stephen J. Blanksby;T. M. Ramond;G. E. Davico;Mark R. Nimlos

  • Ozonolysis of phospholipid double bonds during electrospray ionization: a new tool for structure determination.

    Michael C. Thomas;Todd W. Mitchell;Stephen J. Blanksby

  • Switching radical stability by pH-induced orbital conversion

    Ganna Gryn'Ova;David L. Marshall;Stephen J. Blanksby;Michelle L. Coote

  • Differentiation of complex lipid isomers by radical-directed dissociation mass spectrometry.

    Huong T. Pham;Tony Ly;Adam J. Trevitt;Todd W. Mitchell

  • A comparison of patient matched meibum and tear lipidomes.

    Simon H J Brown;Carolina M E Kunnen;Eva Duchoslav;Naveen K Dolla

  • Human lens lipids differ markedly from those of commonly used experimental animals

    Jane M. Deeley;Todd W. Mitchell;Xiaojia Wei;John Korth

  • Ozone-induced dissociation on a modified tandem linear ion-trap: Observations of different reactivity for isomeric lipids

    Berwyck L. J. Poad;Huong T. Pham;Michael C. Thomas;Jessica R. Nealon

  • Structural characterization of glycerophospholipids by combinations of ozone- and collision-induced dissociation mass spectrometry: the next step towards “top-down” lipidomics

    Huong T. Pham;Alan T. Maccarone;Michael C. Thomas;J. Larry Campbell

  • Analysis of unsaturated lipids by ozone-induced dissociation.

    Simon H.J. Brown;Todd W. Mitchell;Stephen J. Blanksby

  • Online Ozonolysis Combined with Ion Mobility-Mass Spectrometry Provides a New Platform for Lipid Isomer Analyses

    Berwyck L.J. Poad;Xueyun Zheng;Todd W Mitchell;Richard D. Smith

  • Identification of double bond position in lipids : From GC to OzID

    T. W. Mitchell;H. Pham;M. C. Thomas;Stephen J. Blanksby

  • Ethylenedione : An intrinsically short-lived molecule

    D. Schroder;C. Heinemann;H. Schwarz;J. N. Harvey

  • Characterization of acyl chain position in unsaturated phosphatidylcholines using differential mobility-mass spectrometry

    Alan T. Maccarone;Jackson Duldig;Todd W. Mitchell;Stephen J. Blanksby

  • Therapy-induced lipid uptake and remodeling underpin ferroptosis hypersensitivity in prostate cancer

    Kaylyn D. Tousignant;Anja Rockstroh;Berwyck L. J. Poad;Ali Talebi

  • Surface analysis of lipids by mass spectrometry: more than just imaging.

    Shane R. Ellis;Simon H. Brown;Marc in het Panhuis;Stephen J. Blanksby

Frequent Co-Authors

John H. Bowie
John H. Bowie University of Adelaide
Roger J. W. Truscott
Roger J. W. Truscott University of Wollongong
Gabriel da Silva
Gabriel da Silva University of Melbourne
Mark D. P. Willcox
Mark D. P. Willcox University of New South Wales
Helmut Schwarz
Helmut Schwarz Technical University of Berlin
Scott A. McLuckey
Scott A. McLuckey Purdue University West Lafayette
Richard A. J. O'Hair
Richard A. J. O'Hair University of Melbourne
Christopher Barner-Kowollik
Christopher Barner-Kowollik Queensland University of Technology
Michelle L. Coote
Michelle L. Coote Flinders University
Scott A. Rice
Scott A. Rice Nanyang Technological University

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