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Chemistry

D-Index
73
Citations
17334
World Ranking
5028
National Ranking
290

Overview

Michael Towrie is affiliated with the Rutherford Appleton Laboratory in the United Kingdom. Their research primarily focuses on materials science, with a significant emphasis on materials chemistry. Their interdisciplinary approach also spans molecular biology, organic chemistry, atomic and molecular physics, and optics, as well as inorganic chemistry.

Their work covers a range of scientific topics, notably crystallization and solubility studies, and the application of X-ray diffraction in crystallography. They also explore spectroscopy and quantum chemical studies, DNA and nucleic acid chemistry, catalytic C-H functionalization methods, as well as spectroscopy techniques in biomedical and chemical research. Another area of interest includes advanced biosensing and bioanalysis techniques.

Towrie has contributed numerous publications to several scientific venues. The most frequent include The Cambridge Structural Database, where they have published 45 times, Chemical Science with 7 publications, the Journal of the American Chemical Society with 5, Chemistry - A European Journal and Physical Chemistry Chemical Physics with 4 each.

Frequent collaborators in their research include Igor V. Sazanovich, Ian P. Clark, Jason M. Lynam, Ian J. S. Fairlamb, and Jonathan B. Eastwood. These partnerships reflect ongoing collaborative efforts across various projects.

Notable recent papers by Towrie include:

  • Insight into the effects of confined hydrocarbon species on the lifetime of methanol conversion catalysts, 2020, Nature Materials
  • Nanosecond heme-to-heme electron transfer rates in a multiheme cytochrome nanowire reported by a spectrally unique His/Met-ligated heme, 2021, Proceedings of the National Academy of Sciences
  • Direct Observation of the Microscopic Reverse of the Ubiquitous Concerted Metalation Deprotonation Step in C-H Bond Activation Catalysis, 2021, Journal of the American Chemical Society
  • Manganese-Mediated C-H Bond Activation of Fluorinated Aromatics and the ortho-Fluorine Effect: Kinetic Analysis by In Situ Infrared Spectroscopic Analysis and Time-Resolved Methods, 2022, ACS Catalysis
  • 2D-Infrared Spectroscopy of Proteins in Water: Using the Solvent Thermal Response as an Internal Standard, 2020, Analytical Chemistry

Best Publications

  • In situ X-ray imaging of defect and molten pool dynamics in laser additive manufacturing

    Chu Lun Alex Leung;Sebastian Marussi;Robert C. Atwood;Michael Towrie

  • Subsurface Probing in Diffusely Scattering Media Using Spatially Offset Raman Spectroscopy

    P. Matousek;I. P. Clark;E. R. C. Draper;M. D. Morris

  • Tryptophan-Accelerated Electron Flow Through Proteins

    Crystal Shih;Anna Katrine Museth;Malin Abrahamsson;Ana Maria Blanco-Rodriguez

  • The effect of powder oxidation on defect formation in laser additive manufacturing

    Chu Lun Alex Leung;Chu Lun Alex Leung;Sebastian Marussi;Sebastian Marussi;Michael Towrie;Robert C. Atwood

  • Efficient Rejection of Fluorescence from Raman Spectra Using Picosecond Kerr Gating

    P. Matousek;M. Towrie;A. Stanley;A. W. Parker

  • Femtosecond time-resolved UV-visible absorption spectroscopy of trans-azobenzene: dependence on excitation wavelength

    I.K. Lednev;T.-Q. Ye;P. Matousek;M. Towrie

  • Ultrafast measurements of excited state intramolecular proton transfer (ESIPT) in room temperature solutions of 3-hydroxyflavone and derivatives

    Simon Ameer-Beg;Stuart M. Ormson;Robert G. Brown;Pavel Matousek

  • Numerical simulations of subsurface probing in diffusely scattering media using spatially offset Raman spectroscopy.

    P Matousek;M D Morris;N Everall;I P Clark

  • ULTRA: A Unique Instrument for Time-Resolved Spectroscopy.

    Gregory M. Greetham;Pierre Burgos;Qian Cao;Ian P. Clark

  • Observation of excited-state proton transfer in green fluorescent protein using ultrafast vibrational spectroscopy.

    Deborah Stoner-Ma;Andrew A. Jaye;Pavel Matousek;Michael Towrie

  • Fluorescence suppression in resonance Raman spectroscopy using a high-performance picosecond Kerr gate

    P. Matousek;M. Towrie;C. Ma;Wai Ming Kwok

  • Toward control of electron transfer in donor-acceptor molecules by bond-specific infrared excitation.

    Milan Delor;Paul A. Scattergood;Igor V. Sazanovich;Igor V. Sazanovich;Anthony W. Parker

  • Ultrafast Excited-State Dynamics of Rhenium(I) Photosensitizers [Re(Cl)(CO)(3)(N,N)] and [Re(imidazole)(CO)(3)(N,N)](+): Diimine Effects

    Amal El Nahhas;Cristina Consani;Ana Maria Blanco-Rodriguez;Kyle M. Lancaster

  • Development of a broadband picosecond infrared spectrometer and its incorporation into an existing ultrafast time-resolved resonance raman, UV/visible, and fluorescence spectroscopic apparatus

    Michael Towrie;David C. Grills;Joanne Dyer;Julia A. Weinstein

  • Direct observation of ultrafast long-range charge separation at polymer-fullerene heterojunctions.

    Françoise Provencher;Nicolas Bérubé;Anthony W. Parker;Gregory M. Greetham

  • Novel Assessment of Bone Using Time‐Resolved Transcutaneous Raman Spectroscopy

    Edward R C Draper;Michael D Morris;Nancy P Camacho;Pavel Matousek

  • Picosecond Time-Resolved Raman Spectroscopy of Solids: Capabilities and Limitations for Fluorescence Rejection and the Influence of Diffuse Reflectance

    Neil Everall;Thomas Hahn;Pavel Matousek;Anthony W. Parker

  • Probing the reactivity of photoinitiators for free radical polymerization: time-resolved infrared spectroscopic study of benzoyl radicals.

    Christopher S Colley;David C Grills;Nicholas A Besley;Steffen Jockusch

  • Ultrafast Charge Separation in a Photoreactive Rhenium-Appended Porphyrin Assembly Monitored by Picosecond Transient Infrared Spectroscopy

    Anders Gabrielsson;František Hartl;Hong Zhang;John R. Lindsay Smith

  • On the mechanism of vibrational control of light-induced charge transfer in donor–bridge–acceptor assemblies

    Milan Delor;Theo Keane;Paul A. Scattergood;Igor V. Sazanovich

  • Fluorescence background suppression in Raman spectroscopy using combined Kerr gated and shifted excitation Raman difference techniques

    P. Matousek;M. Towrie;A. W. Parker

Frequent Co-Authors

Anthony W. Parker
Anthony W. Parker Rutherford Appleton Laboratory
Pavel Matousek
Pavel Matousek Rutherford Appleton Laboratory
Michael W. George
Michael W. George University of Nottingham
John Kelly
John Kelly University College London
Antonín Vlček
Antonín Vlček Czech Academy of Sciences
Peter J. Tonge
Peter J. Tonge Stony Brook University
Stephen R. Meech
Stephen R. Meech University of East Anglia
Wai Ming Kwok
Wai Ming Kwok Hong Kong Polytechnic University
Stanislav Záliš
Stanislav Záliš Czech Academy of Sciences
Thorfinnur Gunnlaugsson
Thorfinnur Gunnlaugsson Trinity College Dublin

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