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CMP
Credit: Jack Hobhouse

David Keen

Visiting Professor

Sub department

  • Condensed Matter Physics

Research groups

  • X-ray and neutron scattering
david.keen@physics.ox.ac.uk
Telephone: 01865 (2)72310
Clarendon Laboratory, room 106
  • About
  • Publications

Identification of the Elusive Hydronium Ion Exchanging Roles with a Proton in an Enzyme at Lower pH Values

Angewandte Chemie International Edition Wiley 50:33 (2011) 7520-7523

Authors:

Andrey Y Kovalevsky, BL Hanson, SA Mason, T Yoshida, SZ Fisher, M Mustyakimov, VT Forsyth, MP Blakeley, DA Keen, Paul Langan
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Predictors and economic burden of serious workplace falls in health care

Occupational Medicine Oxford University Press (OUP) 61:4 (2011) 234-240

Authors:

H Alamgir, K Ngan, S Drebit, H Guiyun Li, D Keen
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Vibrational Origin of the Thermal Stability in the High-Performance Piezoelectric Material GaAsO4

Journal of the American Chemical Society American Chemical Society (ACS) 133:20 (2011) 8048-8056

Authors:

O Cambon, GM Bhalerao, D Bourgogne, J Haines, P Hermet, DA Keen, MG Tucker
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Thermal amorphization of zeolitic imidazolate frameworks.

Angew Chem Int Ed Engl 50:13 (2011) 3067-3071

Authors:

Thomas D Bennett, David A Keen, Jin-Chong Tan, Emma R Barney, Andrew L Goodwin, Anthony K Cheetham
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Diffraction study of pressure-amorphized ZrW2O8 using in situ and recovered samples

Physical Review B - Condensed Matter and Materials Physics 83:6 (2011)

Authors:

DA Keen, AL Goodwin, MG Tucker, JA Hriljac, TD Bennett, MT Dove, AK Kleppe, AP Jephcoat, M Brunelli

Abstract:

High-energy x-ray diffraction data from a series of amorphous ZrW 2O8 samples, recovered from a number of different pressures, have been measured and compared with similar data collected from a sample contained within a diamond anvil cell and measured in situ at high pressure. Samples at lower pressures are a mix of crystalline and amorphous phases, whereas those above 7 GPa (both recovered and in situ) appear to be completely amorphous. Although there are only very small changes in the diffraction data from the pure phase samples recovered from different pressures, larger changes are observed in situ as a function of pressure. However, the same structural model can be used to describe all data, albeit using different densities. This strongly suggests that the amorphous phase is undergoing nonreconstructive compression in this pressure range, without fundamental modification of the underlying topology. © 2011 American Physical Society.
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