Research project

B Hayden - EPSRC Advanced Material Capital Equipment

Project overview

X-ray diffraction is the main technique by which scientists and engineers study the structures of crystalline materials, however some sample types are often neglected due to the requirement for specialised instrumentation and expertise. This proposal provides advanced equipment to apply diffraction and related methods to a series of lesser-studied sample types of great importance in technology and in understanding environmental processes. These include thin layers of material on surfaces, where information about atomic separations, particle sizes, crystal orientation and changes in the size of the lattice due to interactions with the underlying material can be obtained. This will be critical to the understanding of a range of functional materials with applications in energy conversion and storage, electronics, optoelectronics and engineering. It will also be possible to study very small regions of a material, this is important in examination of single components or regions of a sample where variations are important in understanding properties. Sample types include minerals, where the structure of individual grains will contribute to knowledge of interactions with the environment, and single components of grids of material designed to have specific interactions with light.

Staff

Lead researchers

Collaborating research institutes, centres and groups

Research outputs

Laurynas Dagys, Barbara H Ripka, Markus Leutzsch, Gamal Moustafa, James Eills, Johannes FP Colell & Malcolm H. Levitt, 2020, Magnetic Resonance, 1-21
DOI:
Type: article
Maria De Lourdes Gonzalez Juarez, Eduardo Flores, Marisol Martin-Gonzalez , Iris S. Nandhakumar & Darren Bradshaw, 2020, Journal of Materials Chemistry A, 8(26), 13197-13206
DOI:
Type: article
John Lampkin, He Li, Liam Furness, Rinaldo Raccichini & Nuria Garcia-Araez, 2020, ChemSusChem, 13(13), 3514-3523
DOI:
Type: article
Ewen K. Campbell, E.S. Reedy, J. Rademacher, Richard J. Whitby & Gabriela Hoffman, 2020, Astrophysical Journal, 897(1), 1-5
DOI:
Type: article
Katarina Cicvarić, Lingcong Meng, Daniel W. Newbrook, Ruomeng Huang, Sheng Ye, Wenjian Zhang, Andrew L. Hector, Gillian Reid, Philip N. Bartlett & C.H. Kees De Groot, 2020, ACS Omega, 5(24), 14679-14688
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Type: article
Daniel W Newbrook , Stephen P. Richards, Victoria Greenacre, Andrew L. Hector, William Levason, Gillian Reid, Cornelis De Groot & Ruomeng Huang, 2020, ACS Applied Energy Materials, 3(6), 5840-5846
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Type: article
Hang Cheng, Nuria Garcia-Araez & Andrew L. Hector, 2020, ACS Applied Energy Materials, 3(5), 4286-4294
DOI:
Type: article