Publication Beamlines Strategic Pillar
Dolgova, N. V.; Hackett, M. J.; MacDonald, T. C.; Nehzati, S.; James, A. K. et al. (2016). Distribution of selenium in zebrafish larvae after exposure to organic and inorganic selenium forms. Metallomics 8(3) , 305-312. 10.1039/c5mt00279f. CLS-APS Health
Dolgova, Natalia V.; Yu, Corey; Cvitkovic, John P.; Hodak, Miroslav; Nienaber, Kurt H. et al. (2017). Binding of Copper and Cisplatin to Atox1 Is Mediated by Glutathione through the Formation of Metal–Sulfur Clusters. Biochemistry 56(24) , 3129-3141. 10.1021/acs.biochem.7b00293. CLS-APS Materials
Dogan Paktunc, Michael C. Moncur, S. Jean Birks, John J. Gibson, Yi Yi (2015). Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics and gas Predicting the mobilization of dissolved metals, organics. Canada: Integrated Water Management, Alberta Innovates – Technology Futures, CANMET Mining and Mineral Scie . http://www.geoconvention.com/archives/2015/258_GC2015_Predicting_the_mobilization_of_dissolved_metals.pdf. CLS-APS
Ding, Yang; Chen, Cheng-Chien; Zeng, Qiaoshi; Kim, Heung-Sik; Han, Myung Joon et al. (2014). Novel High-Pressure Monoclinic Metallic Phase ofV2O3. Physical Review Letters 112(5) . 10.1103/physrevlett.112.056401. CLS-APS Materials
Dey, Sonal; Hossain, Mohammad D.; Mayanovic, Robert A.; Wirth, Richard; Gordon, Robert A. et al. (2016). Novel highly ordered core–shell nanoparticles. Journal of Materials Science 52(4) , 2066-2076. 10.1007/s10853-016-0495-2. CLS-APS Materials
de Jong, Mathijs; Meijerink, Andries; Gordon, Robert A.; Barandiarán, Zoila; Seijo, Luis et al. (2014). Is Bi2+Responsible for the Red-Orange Emission of Bismuth-Doped SrB4O7?. Journal of Physical Chemistry C 118(18) , 9696-9705. 10.1021/jp502996t. CLS-APS Materials
Cutler, J. N.; Chen, N.; Jiang, D. T.; Demopoulos, G. P.; Jia, Y. et al. (2003). The nature of arsenic in uranium mill tailings by X-ray absorption spectroscopy. Journal de Physique IV (Proceedings) 107, 337-340. 10.1051/jp4:20030310. CLS-APS Environment
Croy, Jason R.; Park, Joong Sun; Dogan, Fulya; Johnson, Christopher S.; Key, Baris et al. (2014). First-Cycle Evolution of Local Structure in Electrochemically Activated Li2MnO3. Chemistry of Materials 26(24) , 7091-7098. 10.1021/cm5039792. CLS-APS Materials
Coussy, Samuel; Paktunc, Dogan; Rose, Jérôme; Benzaazoua, Mostafa (2012). Arsenic speciation in cemented paste backfills and synthetic calcium–silicate–hydrates. Minerals Engineering 39, 51-61. 10.1016/j.mineng.2012.05.016. CLS-APS, HXMA Environment
Clar, Justin G.; Li, Xuan; Impellitteri, Christopher A.; Bennett-Stamper, Christina; Luxton, Todd P. et al. (2016). Copper Nanoparticle Induced Cytotoxicity to Nitrifying Bacteria in Wastewater Treatment: A Mechanistic Copper Speciation Study by X-ray Absorption Spectroscopy. Environmental Science and Technology 50(17) , 9105-9113. 10.1021/acs.est.6b01910. CLS-APS Environment
Christensen, Stephen L.; MacDonald, Mark A.; Chatt, Amares; Zhang, Peng; Qian, Huifeng et al. (2012). Dopant Location, Local Structure, and Electronic Properties of Au24Pt(SR)18 Nanoclusters. Journal of Physical Chemistry C 116(51) , 26932-26937. 10.1021/jp310183x. CLS-APS, SGM Materials
Christensen, Stephen L.; Chatt, Amares; Zhang, Peng (2013). Peptide-Directed Preparation and X-ray Structural Study of Au Nanoparticles on Titanium Surfaces. Langmuir 29(15) , 4894-4900. 10.1021/la4003466. CLS-APS, HXMA Materials
Christensen, Stephen L.; Chatt, Amares; Zhang, Peng (2012). Biomolecule-Coated Metal Nanoparticles on Titanium. Langmuir 28(5) , 2979-2985. 10.1021/la204398q. CLS-APS, SGM, SXRMB Materials
Choudhury, S.; Swanston, T.; Varney, T. L.; Cooper, D. M. L.; George, G. N. et al. (2016). Confocal x‐ray Fluorescence Imaging Facilitates High‐Resolution Elemental Mapping in Fragile Archaeological Bone. Archaeometry 58(S1) , 207-217. 10.1111/arcm.12232. CLS-APS Materials
Choudhury, Sanjukta; Thomas, Jith K.; Sylvain, Nicole J.; Ponomarenko, Olena; Gordon, Robert A. et al. (2015). Selenium Preferentially Accumulates in the Eye Lens Following Embryonic Exposure: A Confocal X-ray Fluorescence Imaging Study. Environmental Science and Technology 49(4) , 2255-2261. 10.1021/es503848s. CLS-APS Environment