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Chemistry

D-Index
50
Citations
7482
World Ranking
14545
National Ranking
812

Overview

Mathias Nilsson is affiliated with the University of Manchester in the United Kingdom. Their research primarily spans the fields of chemistry and physics and astronomy, with a strong emphasis on spectroscopy.

They have contributed extensively to the study and development of nuclear magnetic resonance (NMR) spectroscopy and its advanced techniques, as well as applications related to molecular spectroscopy and chirality, metabolomics, mass spectrometry studies, and electron spin resonance.

The main fields of study associated with their work include:

  • Chemistry
  • Physics and Astronomy

Within these areas, their subfields of research cover:

  • Spectroscopy
  • Nuclear and High Energy Physics
  • Radiology, Nuclear Medicine and Imaging
  • Molecular Biology
  • Biophysics

The topics that figure prominently in their publications are:

  • NMR spectroscopy and applications
  • Advanced NMR Techniques and Applications
  • Advanced MRI Techniques and Applications
  • Molecular spectroscopy and chirality
  • Metabolomics and Mass Spectrometry Studies
  • Electron Spin Resonance Studies
  • Advanced Neuroimaging Techniques and Applications

Mathias Nilsson has published extensively in several scientific journals. Their most frequent publication venues include:

  • Analytical Chemistry
  • Chemical Communications
  • Magnetic Resonance in Chemistry
  • Angewandte Chemie International Edition
  • Angewandte Chemie

Recent papers authored by or co-authored with Nilsson cover topics in advanced NMR methods and spectroscopy. Notable publications include:

  • Single-Scan Selective Excitation of Individual NMR Signals in Overlapping Multiplets, 2020, Angewandte Chemie International Edition
  • Single-scan ultra-selective 1D total correlation spectroscopy, 2021, Chemical Communications
  • Giving Pure Shift NMR Spectroscopy a RESTUltrahigh-Resolution Mixture Analysis, 2022, Analytical Chemistry
  • Broadband measurement of true transverse relaxation rates in systems with coupled protons: application to the study of conformational exchange, 2021, Chemical Science
  • Ultra-selective 1D clean in-phase correlation spectroscopy, 2023, Chemical Communications

Their collaborations include frequent co-authors such as Gareth A. Morris, Ralph W. Adams, Laura Castañar, P. Király, and Marshall J. Smith, indicating active participation in multi-author scientific projects and networks.

Best Publications

  • Ultrahigh-Resolution NMR Spectroscopy

    Mohammadali Foroozandeh;Ralph W Adams;Nicola J Meharry;Damien Jeannerat

  • Spin echo NMR spectra without J modulation

    Juan A. Aguilar;Mathias Nilsson;Geoffrey Bodenhausen;Geoffrey Bodenhausen;Gareth A. Morris

  • Pure Shift 1H NMR: A Resolution of the Resolution Problem?†

    Juan A. Aguilar;Stephen Faulkner;Mathias Nilsson;Gareth A. Morris

  • Quantitative Interpretation of Diffusion‐Ordered NMR Spectra: Can We Rationalize Small Molecule Diffusion Coefficients?

    Robert Evans;Zhaoxia Deng;Alexandria K. Rogerson;Andy S. McLachlan

  • The DOSY Toolbox: a new tool for processing PFG NMR diffusion data.

    Mathias Nilsson

  • Pure shift proton DOSY: diffusion-ordered 1H spectra without multiplet structure.

    Mathias Nilsson;Gareth A. Morris

  • Improving the Interpretation of Small Molecule Diffusion Coefficients.

    Robert Evans;Guilherme Dal Poggetto;Mathias Nilsson;Gareth A. Morris

  • Simultaneously Enhancing Spectral Resolution and Sensitivity in Heteronuclear Correlation NMR Spectroscopy

    Liladhar Paudel;Ralph W Adams;Peter Kiraly;Peter Kiraly;Juan A Aguilar;Juan A Aguilar

  • Perfecting WATERGATE: clean proton NMR spectra from aqueous solution

    Ralph W. Adams;Chloe M. Holroyd;Juan A. Aguilar;Mathias Nilsson;Mathias Nilsson

  • Biexponential Fitting of Diffusion-Ordered NMR Data: Practicalities and Limitations

    Mathias Nilsson;Mark A. Connell;and Adrian L. Davis;Gareth A. Morris

  • Simple Proton Spectra from Complex Spin Systems: Pure Shift NMR Spectroscopy Using BIRD

    Juan A. Aguilar;Mathias Nilsson;Gareth A. Morris

  • Ultrahigh-Resolution Total Correlation NMR Spectroscopy

    Mohammadali Foroozandeh;Ralph W. Adams;Mathias Nilsson;Gareth A. Morris

  • Improving the accuracy of pulsed field gradient NMR diffusion experiments: Correction for gradient non-uniformity.

    Mark A. Connell;Paul J. Bowyer;P. Adam Bone;Adrian L. Davis

  • Structure-revealing data fusion.

    Evrim Acar;Evangelos E Papalexakis;Gözde Gürdeniz;Morten A Rasmussen

  • High-resolution NMR and diffusion-ordered spectroscopy of port wine.

    Mathias Nilsson;Iola F. Duarte;Cla Ä Udia Almeida;Ivonne Delgadillo

  • Content of Nutrients and Lignans in Roller Milled Fractions of Rye

    Mathias Nilsson;Per Åman;Helena Härkönen;Göran Hallmans

  • Speedy component resolution: an improved tool for processing diffusion-ordered spectroscopy data.

    Mathias Nilsson;Gareth A. Morris

  • True Chemical Shift Correlation Maps: A TOCSY Experiment with Pure Shifts in Both Dimensions

    Gareth A. Morris;Juan A. Aguilar;Robert Evans;Stephan Haiber

  • Production and properties of agar from the invasive marine alga, Gracilaria vermiculophylla (Gracilariales, Rhodophyta)

    R. D. Villanueva;R. D. Villanueva;A. M. M. Sousa;M. P. Gonçalves;M. Nilsson;M. Nilsson

  • Decoupling Two‐Dimensional NMR Spectroscopy in Both Dimensions: Pure Shift NOESY and COSY

    Juan A. Aguilar;Adam A. Colbourne;Julia Cassani;Mathias Nilsson

Frequent Co-Authors

Gareth A. Morris
Gareth A. Morris University of Manchester
Per Åman
Per Åman Swedish University of Agricultural Sciences
Andrew L. Phillips
Andrew L. Phillips Rothamsted Research
Sebastian Meier
Sebastian Meier Technical University of Denmark
Ana M. Gil
Ana M. Gil University of Aveiro
Ivonne Delgadillo
Ivonne Delgadillo University of Aveiro
Dušan Uhrín
Dušan Uhrín University of Edinburgh
Alan M. Kenwright
Alan M. Kenwright Durham University
Knud Erik Bach Knudsen
Knud Erik Bach Knudsen Aarhus University
Roger Andersson
Roger Andersson Swedish University of Agricultural Sciences

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