Radford, Chase (2022). INFLUENCE OF MORPHOLOGY AND SOLID-STATE STRUCTURE ON NON-FULLERENE ORGANIC SOLAR CELL PERFORMANCE. Supervisor: Kelly, Tim. Saskatchewan, Canada: University of Saskatchewan. https://harvest.usask.ca/items/6abbd260-e2a8-4ec0-bac5-2ab16887f307. |
BXDS-WLE |
Doctoral Thesis |
Materials |
Seongdae Kang (2024). Development of naphthalene diimide-based n-type small-molecule organic mixed ionic-electronic conductor for the organic electrochemical transistor. Supervisor: Gupta, Manisha. Edmonton, Alberta, Canada: Univeristy of Alberta. https://doi.org/10.7939/r3-7v8s-1g63. |
BXDS-WLE |
Doctoral Thesis |
Materials |
Tran, Phuong Minh (2020). Investigating the Relationship between Structure and Magnetic Ground States of 5d Double Perovskites. Supervisor: Woodward, Patrick. Ohio, USA: Ohio State University. http://rave.ohiolink.edu/etdc/view?acc_num=osu1577937896742109. |
BXDS-WLE |
Doctoral Thesis |
Materials |
Cheng, H. Y.; Chien, W C.; Kuo, I. T.; Yang, C. H.; Chou, Y. C. et al. (2021). Optimizing AsSeGe Chalcogenides by Dopants for Extremely Low IOFF, High Endurance and Low Vth Drift 3D Crosspoint Memory. . 10.1109/iedm19574.2021.9720704. |
BXDS-WLE |
Conference Proceeding |
Materials |
Cheng, H. Y.; Grun, A.; Chien, W C.; Yeh, C. W.; Ray, A. et al. (2022). New Phase-Change Materials by Atomic-Level Engineering the Dopants for Extremely Low Vth Drift at 85 °C and High Endurance 3D Crosspoint Memory : IBM/Macronix PCRAM Joint Project. . 10.1109/iedm45625.2022.10019562. |
BXDS-WLE |
Conference Proceeding |
Materials |
Cheng, H. Y.; Liu, Z. L.; Majumdar, A.; Grun, A.; Ray, A. et al. (2024). State-Independent Low Resistance Drift SiSbTe Phase Change Memory for Analog In-Memory Computing Applications. . , 1-2 10.1109/vlsitechnologyandcir46783.2024.10631376. |
BXDS-WLE |
Conference Proceeding |
Materials |
Caumette, Guilhem; Koch, Iris; Moriarty, Maeve; Reimer, Kenneth J. (2012). Arsenic distribution and speciation in Daphnia pulex. Science of the Total Environment 432, 243-250. 10.1016/j.scitotenv.2012.05.050. |
CLS-APS |
Peer-Reviewed Article |
|
Chevrier, Daniel M.; MacDonald, Mark A.; Chatt, Amares; Zhang, Peng; Wu, Zhikun et al. (2012). Sensitivity of Structural and Electronic Properties of Gold–Thiolate Nanoclusters to the Atomic Composition: A Comparative X-ray Study of Au19(SR)13 and Au25(SR)18. Journal of Physical Chemistry C 116(47) , 25137-25142. 10.1021/jp309283y. |
CLS-APS, HXMA, SGM |
Peer-Reviewed Article |
|
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 |
Peer-Reviewed Article |
|
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 |
Peer-Reviewed Article |
|
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 |
Peer-Reviewed Article |
|
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 |
Peer-Reviewed Article |
|
Duchesne, Paul N.; Zhang, Peng (2012). Local structure of fluorescent platinum nanoclusters. Nanoscale 4(14) , 4199. 10.1039/c2nr30500c. |
CLS-APS |
Peer-Reviewed Article |
|
Gaultois, Michael W.; Grosvenor, Andrew P. (2012). XANES and XPS investigations of the local structure and final-state effects in amorphous metal silicates: (ZrO2)x(TiO2)y(SiO2)1−x−y. Physical Chemistry Chemical Physics 14(1) , 205-217. 10.1039/c1cp22717c. |
CLS-APS, SGM, VLS-PGM |
Peer-Reviewed Article |
|
Gaultois, Michael W.; Grosvenor, Andrew P. (2011). XANES and XPS investigations of (TiO2)x(SiO2)1−x: the contribution of final-state relaxation to shifts in absorption and binding energies. Journal of Materials Chemistry 21(6) , 1829. 10.1039/c0jm03464a. |
CLS-APS, SGM, VLS-PGM |
Peer-Reviewed Article |
|