Professor of Physical & Computational Surface Chemistry

Our research is focussed upon the application of first-principles theory and ultra-high-vacuum single-crystal experiments to problems in surface chemistry and catalysis. We make use of fibre-optic low-energy electron diffraction (FO-LEED) to obtain structural information, reflection absorption infra-red spectroscopy (RAIRS) to obtain vibrational information, single-crystal adsorption calorimetry (SCAC) to obtain energetic information, supersonic molecular beams (SMB) to obtain kinetic information, and low- temperature scanning tunnelling microscopy (LT-STM) to obtain morphological, topographic and electronic information about surfaces and the molecules that adsorb, diffuse and react upon them. Density functional theory (DFT) provides a framework within which to calculate comparable data, which aids in the interpretation of our experimental work.

Our work is concentrated within four main research themes:

  • complex interadsorbate interactions; 
  • nanoscale surface phenomena; 
  • chiral surface systems;
  • and tuning reactivity and catalysis.

Individual research projects are chosen to reflect these themes, lending coherence to a diverse range of topical studies. Thus, by way of example, our work on the adsorption of alanine on Cu{531} addresses issues relating to the formation of complex hydrogen-bonded adsorbate networks, whilst also shedding light on the interaction of chiral molecules with an intrinsically chiral metal surface; moreover, certain adsorbates can cause this unstable surface to break up into nanoscale facets, whose catalytic properties will differ markedly from those of the notionally ideal surface. Tackling these interlinked aspects of surface science requires a flexible approach, making use of multiple experimental techniques complemented by a rigorously benchmarked theoretical methodology.

Professor Jenkins discusses his research

Publications

Single-crystal adsorption calorimetry and density functional theory of CO chemisorption on fcc Co{110}.
K Liao, V Fiorin, DSD Gunn, SJ Jenkins, DA King
Phys Chem Chem Phys
(2013)
15
Left foot, right foot, other foot: Glycine and alanine on Cu{311}
DC Madden, I Temprano, M Sacchi, SM Driver, DA King, SJ Jenkins
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY
(2013)
245
Mode-specificity and transition state-specific energy redistribution in the chemisorption of CH4 on Ni{100}.
M Sacchi, DJ Wales, SJ Jenkins
Physical Chemistry Chemical Physics
(2012)
14
Nitrogen adsorption and desorption at iron pyrite FeS2{100} surfaces.
T Liu, I Temprano, SJ Jenkins, DA King, SM Driver
Physical chemistry chemical physics : PCCP
(2012)
14
Bond-selective energy redistribution in the chemisorption of CH 3D and CD 3H on Pt{110}-(1×2): A first-principles molecular dynamics study
M Sacchi, DJ Wales, SJ Jenkins
Computational and Theoretical Chemistry
(2012)
990
The importance of attractive three-point interaction in enantioselective surface chemistry: Stereospecific adsorption of serine on the intrinsically chiral Cu{531} surface
T Eralp, A Ievins, A Shavorskiy, SJ Jenkins, G Held
J Am Chem Soc
(2012)
134
Microcalorimetry of oxygen adsorption on fcc Co{110}.
K Liao, V Fiorin, SJ Jenkins, DA King
Physical chemistry chemical physics : PCCP
(2012)
14
The interaction of iron pyrite with oxygen, nitrogen and nitrogen oxides: a first-principles study.
M Sacchi, MCE Galbraith, SJ Jenkins
Phys Chem Chem Phys
(2012)
14
Atomic structure of the GaAs(001)-beta 2(2 x 4) surface
GP Srivastava, SJ Jenkins
Surface Review and Letters
(2012)
5
Atomic Structure of a Monolayer of Ge on Si(001)(2 × 1)
SJ Jenkins, GP Srivastava
Surface Review and Letters
(2012)
05

Telephone number

01223 336502

Email address