Mike Ashfold

Mike Ashfold

University of Bristol

H-index: 77

Europe-United Kingdom

About Mike Ashfold

Mike Ashfold, With an exceptional h-index of 77 and a recent h-index of 33 (since 2020), a distinguished researcher at University of Bristol, specializes in the field of molecular photochemistry and photophysics, diamond chemical vapour deposition.

His recent articles reflect a diverse array of research interests and contributions to the field:

MeV Electron Diffractive Imaging of Competing Ring-Opening and Photodissociation

Time-resolved imaging of UV photodynamics and XUV-induced charge transfer in structural isomers of iodopropane

Probing Norrish Type-I Reactions of Cyclic Ketones via Femtosecond X-Ray Absorption and X-Ray Photoelectron Spectroscopy

Unraveling the Rich Fragmentation Dynamics Associated with S–H Bond Fission Following Photoexcitation of H2S at Wavelengths ∼129.1 nm

The role of momentum partitioning in covariance ion imaging analysis

Valence shell electronically excited states of norbornadiene and quadricyclane

Monitoring the evolution of relative product populations at early times during a photochemical reaction

Ultrafast electronic relaxation pathways of the molecular photoswitch quadricyclane

Mike Ashfold Information

University

Position

Professor of Physical Chemistry

Citations(all)

23215

Citations(since 2020)

5129

Cited By

19555

hIndex(all)

77

hIndex(since 2020)

33

i10Index(all)

382

i10Index(since 2020)

139

Email

University Profile Page

Google Scholar

Mike Ashfold Skills & Research Interests

molecular photochemistry and photophysics

diamond chemical vapour deposition

Top articles of Mike Ashfold

Time-resolved imaging of UV photodynamics and XUV-induced charge transfer in structural isomers of iodopropane

Bulletin of the American Physical Society

2024/6/6

Probing Norrish Type-I Reactions of Cyclic Ketones via Femtosecond X-Ray Absorption and X-Ray Photoelectron Spectroscopy

Bulletin of the American Physical Society

2024/6/5

Unraveling the Rich Fragmentation Dynamics Associated with S–H Bond Fission Following Photoexcitation of H2S at Wavelengths ∼129.1 nm

The Journal of Physical Chemistry A

2024/4/23

Valence shell electronically excited states of norbornadiene and quadricyclane

The Journal of Chemical Physics

2024/2/14

Towards Increased Crop Yields with Molecular Heater Technology

2023/11/10

Colin Western (1957-2021)

Journal of Molecular Spectroscopy

2023/11/10

Exploring the vacuum ultraviolet photochemistry of astrochemically important triatomic molecules

2023/8

Two-dimensional modeling of diamond growth by microwave plasma activated chemical vapor deposition: Effects of pressure, absorbed power and the beneficial role of nitrogen on …

Diamond and Related Materials

2023/8/1

High-resolution absorption spectroscopy of room-temperature and jet-cooled ammonia between 59,000 and 93,000 cm− 1

Journal of Molecular Spectroscopy

2023/7/1

Vacuum ultraviolet photodissociation of sulfur dioxide and its implications for oxygen production in the early Earth's atmosphere

Chemical Science

2023

Molecular photodissociation dynamics revealed by Coulomb explosion imaging

Physical Chemistry Chemical Physics

2023/6/2

The vibronic state dependent predissociation of H 2 S: determination of all fragmentation processes

Chemical Science

2023

Electronic absorption spectroscopy and photochemistry of Criegee intermediates

2023/1

Richard Newland Dixon. 25 December 1930—25 May 2021

2022/12

See List of Professors in Mike Ashfold University(University of Bristol)