1 |
The spatial distribution patterns of condensed phase post-blast explosive residues formed during detonation Abdul-Karim N, Blackman CS, Gill PP, Karu K Journal of Hazardous Materials, 316, 204, 2016 |
2 |
Atmospheric pressure chemical vapour deposition of vanadium arsenide thin films via the reaction of VCl4 or VOCl3 with (BuAsH2)-Bu-t Thomas T, Blackman CS, Parkin IP, Carmalt CJ Thin Solid Films, 537, 171, 2013 |
3 |
Atmospheric pressure chemical vapour deposition of thermochromic tungsten doped vanadium dioxide thin films for use in architectural glazing Blackman CS, Piccirillo C, Binions R, Parkin IP Thin Solid Films, 517(16), 4565, 2009 |
4 |
Atmospheric pressure chemical vapour deposition of vanadium diselenide thin films Boscher ND, Blackman CS, Carmalt CJ, Parkin IP, Prieto AG Applied Surface Science, 253(14), 6041, 2007 |
5 |
The interaction between Otto Fuel II and aqueous hydroxylammonium perchlorate (HAP), part III: Depletion of components within the reacting liquids Bellerby JM, Blackman CS Propellants Explosives Pyrotechnics, 32(3), 222, 2007 |
6 |
Low temperature deposition of crystalline chromium phosphide films using dual-source atmospheric pressure chemical vapour deposition Blackman CS, Carmalt CJ, Manning TD, Parkin IP, Apostolico L, Molloy KC Applied Surface Science, 233(1-4), 24, 2004 |
7 |
The interaction between Otto Fuel II and aqueous hydroxylammonium perchlorate (HAP), Part I: Initial observations and time-to-event measurements Bellerby JM, Blackman CS Propellants Explosives Pyrotechnics, 29(5), 262, 2004 |
8 |
The interaction between Otto fuel II and aqueous hydroxylammonium perchlorate (HAP), part II: Gas evolution and changes in HAP solution acidity Bellerby JM, Blackman CS Propellants Explosives Pyrotechnics, 29(6), 354, 2004 |
9 |
Dual-source chemical vapour deposition of titanium(III) phosphide from titanium tetrachloride and tristrimethylsilylphosphine Blackman CS, Carmalt CJ, O'Neill SA, Parkin IP, Apostolico L, Moloy KC Applied Surface Science, 211(1-4), 2, 2003 |