Publication Beamlines Strategic Pillar
Pluvinage, B.; Boraston, A.B. (2017). Crystal structure of BuGH86wt. Protein Data Bank: 5ta1. CMCF-ID Health
Pluvinage, B.; Boraston, A.B. (2017). Crystal structure of BuGH16Bwt. Protein Data Bank: 5t9x. CMCF-ID Health
Pluvinage, B.; Boraston, A.B.; Abbott, W.D. (2017). Crystal structure of BuGH86E322Q in complex with neoagarooctaose. Protein Data Bank: 5ta0. CMCF-ID Health
Pluvinage, B.; Boraston, A.B.; Abbott, W.D. (2017). Crystal structure of BuGH2Cwt. Protein Data Bank: 5t9a. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with zinc - Mn wavelength. Protein Data Bank: 5uyf. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with zinc - Fe wavelength. Protein Data Bank: 5uye. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with zinc - Zn wavelength. Protein Data Bank: 5uyd. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with manganese - Mn wavelength. Protein Data Bank: 5uyc. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with manganese - Fe wavelength. Protein Data Bank: 5uyb. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with manganese - Zn wavelength. Protein Data Bank: 5uya. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with iron - Mn wavelength. Protein Data Bank: 5uy5. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with iron - Fe wavelength. Protein Data Bank: 5uy4. CMCF-ID Health
Radka, C.D.; DeLucas, L.J.; Aller, S.G. (2017). YfeA from M9 minimal media supplemented with iron - Zn wavelength. Protein Data Bank: 5uy0. CMCF-ID Health
Bailey, Alexandra Susann (2017). Characterization of arsenic-hosting solid phases in Giant mine tailings and tailings dust. Queen’s University. https://www.proquest.com/openview/3c5e348718905d01274fa7e3b0631d8c/1?pq-origsite=gscholar&cbl=18750. CLS-APS Environment
Radkova, Anezka Borcinova (2017). The influence of secondary mineral phase crystallization on antimony and arsenic mobility in mine drainage. Queen's University. https://qspace.library.queensu.ca/items/c4720a6c-c36c-475e-b00e-3612f58882c8. CLS-APS Environment