Persch, E.; Bryson, S.; Pai, E.F.; Krauth-Siegel, R.L.; Diederich, F. et al. (2014). Crystal structure of Trypanothione Reductase from Trypanosoma brucei in complex with inhibitor EP127 (5-{5-[1-(PYRROLIDIN-1-YL)CYCLOHEXYL]-1,3-THIAZOL-2-YL}-1H-INDOLE). Protein Data Bank: 4nev. |
CMCF-ID |
PDB Deposition |
Health |
Perera, N.M.S.D. (2012). Effect of Intermolecular Interactions on the Carbon 1s Near Edge X-ray Absorption Fine Structure (NEXAFS) Spectroscopy of n-Alkanes. Canada, SK: University of Saskatchewan. . |
SM |
Masters Thesis |
|
Pereira, G.; Lachenwitzer, A.; Li, Y. R.; Kasrai, M.; Bancroft, G. M. et al. (2007). Chemical and mechanical analysis of tribofilms formed from fully formulated oils Part 2 – Films on Al–Si alloy (A383). Tribology - Materials. Surfaces and Interfaces 1(2) , 105-112. 10.1179/175158407x231303. |
VLS-PGM |
Peer-Reviewed Article |
Materials |
Pereira, G.; Lachenwitzer, A.; Kasrai, M.; Bancroft, G. M.; Norton, P. R. et al. (2007). Chemical and mechanical analysis of tribofilms from fully formulated oils Part 1 – Films on 52100 steel. Tribology - Materials. Surfaces and Interfaces 1(1) , 48-61. 10.1179/175158407x189293. |
SGM |
Peer-Reviewed Article |
Materials |
Peng, Mingfa; Li, Yang; Gao, Jing; Zhang, Duo; Jiang, Zheng et al. (2011). Electronic Structure and Photoluminescence Origin of Single-Crystalline Germanium Oxide Nanowires with Green Light Emission. Journal of Physical Chemistry C 115(23) , 11420-11426. 10.1021/jp201884y. |
SGM |
Peer-Reviewed Article |
|
Peng Liu (2016). Stabilization of Mercury in River Water and Sediment Using Biochars. Supervisor: Carol Ptacek and David Blowes. Waterloo: University of Waterloo. https://uwspace.uwaterloo.ca/handle/10012/11081. |
CLS-APS, SXRMB |
Doctoral Thesis |
|
Peng Liu (2016). Stabilization of Mercury in River Water and Sediment Using Biochars. Supervisor: Carol Ptacek and David Blowes. Waterloo: University of Waterloo. https://uwspace.uwaterloo.ca/handle/10012/11081. |
CLS-APS, SXRMB |
Doctoral Thesis |
|
Penfield, J.; Worrall, L.J.; Strynadka, N.C.; Eltis, L.D. (2014). Crystal structure of 3-ketosteroid-9-alpha-hydroxylase 5 (KshA5) from R. rhodochrous in complex with FE2/S2 (INORGANIC) CLUSTER. Protein Data Bank: 4qdc. |
CMCF-BM |
PDB Deposition |
Agriculture |
Penfield, J.; Worrall, L.J.; Strynadka, N.C.; Eltis, L.D. (2014). Crystal structure of 3-ketosteroid-9-alpha-hydroxylase 5 (KshA5) from R. rhodochrous in complex with 1,4-30Q-CoA. Protein Data Bank: 4qdd. |
CMCF-BM |
PDB Deposition |
Agriculture |
Penfield, J.; Worrall, L.J.; Strynadka, N.C.; Eltis, L.D. (2014). Crystal structure of 3-ketosteroid-9-alpha-hydroxylase (KshA) from M. tuberculosis in complex with 4-androstene-3,17-dione. Protein Data Bank: 4qck. |
CMCF-BM |
PDB Deposition |
Agriculture |
Penfield; J.S.; Worrall; L.J.; Strynadka et al. (2014). Crystal structure of apo KshA5 and KshA1 in complex with 1,4-30Q-CoA from R. rhodochrous. Protein Data Bank: 4qdf. |
CMCF-BM |
PDB Deposition |
Agriculture |
Penfield, Jonathan S.; Worrall, Liam J.; Strynadka, Natalie C.; Eltis, Lindsay D. (2014). Substrate Specificities and Conformational Flexibility of 3-Ketosteroid 9α-Hydroxylases. Journal of Biological Chemistry 289(37) , 25523-25536. 10.1074/jbc.m114.575886. [PDB: 4qck, 4qdc, 4qdd, 4qdf] |
CMCF-BM |
Peer-Reviewed Article |
Health |
Penfield, Jonathan (2013). The substrate specificity and conformational flexibility of ketosteroid hydroxylases. Supervisor: Eltis, Lindsay. British Columbia, Canada: University of British Columbia. http://hdl.handle.net/2429/45138. |
CMCF-ID |
Masters Thesis |
Materials |
Pendyala, Venkat Ramana Rao; Jacobs, Gary; Ma, Wenping; Sparks, Dennis E.; Shafer, Wilson D. et al. (2016). Fischer–Tropsch Synthesis: XANES Investigation of Hydrogen Chloride Poisoned Iron and Cobalt-Based Catalysts at the K-Edges of Cl, Fe, and Co. Catalysis Letters 146(10) , 1858-1866. 10.1007/s10562-016-1820-8. |
SXRMB |
Peer-Reviewed Article |
|
Pendyala, Venkat Ramana Rao; Jacobs, Gary; Gnanamani, Muthu Kumaran; Hu, Yongfeng; MacLennan, Aimee et al. (2015). Selectivity control of Cu promoted iron-based Fischer-Tropsch catalyst by tuning the oxidation state of Cu to mimic K. Applied Catalysis A: General 495, 45-53. 10.1016/j.apcata.2015.01.027. |
SXRMB |
Peer-Reviewed Article |
|