Alwani, Saniya Shiraz (2015). AMINO ACID FUNCTIONALIZED NANODIAMONDS AS GENE DELIVERY VECTORS: SYNTHESIS, PHYSICOCHEMICAL CHARACTERIZATION AND CELLULAR INTERACTION STUDIES. SK, Canada: University of Saskatchewan. . |
SM |
Masters Thesis |
|
Amador, Fernando J.; Kimlicka, Lynn; Stathopulos, Peter B.; Gasmi-Seabrook, Geneviève M.C.; MacLennan, David H. et al. (2013). Type 2 Ryanodine Receptor Domain A Contains a Unique and Dynamic α-Helix That Transitions to a β-Strand in a Mutant Linked with a Heritable Cardiomyopathy. Journal of Molecular Biology 425(21) , 4034-4046. 10.1016/j.jmb.2013.08.015. [PDB: 4kei, 4kej, 4kek] |
CMCF-ID |
Peer-Reviewed Article |
Health |
Amano, Y. (2018). Crystal structure of JAK3 in complex with peficitinib. Protein Data Bank: 6aak. |
CMCF-ID |
PDB Deposition |
Health |
Amaya, M.F.; Li, Z.; Li, Y.; Kozieradzki, I.; Edwards, A.M. et al. (2009). Crystal Structural of CBX5 Chromo Shadow Domain. Protein Data Bank: 3i3c. |
CMCF-ID |
PDB Deposition |
Agriculture |
Amaya, M.F.; Ravichandran, M.; Loppnau, P.; Kozieradzki, I.; Edwards, A.M. et al. (2009). Crystal structure of the complex of human chromobox homolog 2 (CBX2) and H3K27 peptide. Protein Data Bank: 3h91. |
CMCF-ID |
PDB Deposition |
Health |
Amaya, M.F.; Ravichandran, M.; Loppnau, P.; Kozieradzki, I.; Edwards, A.M. et al. (2009). Crystal structure of human chromobox homolog 8 (CBX8) with H3K9 peptide. Protein Data Bank: 3i91. |
CMCF-ID |
PDB Deposition |
Health |
Ambilwade; Dakshata (2016). Structural characterization of components of the flagellar export apparatus from the H. pylori. Supervisor: Moore, Stanley. Saskatchewan, Canada: University of Saskatchewan. http://hdl.handle.net/10388/7480. |
CMCF-BM, CMCF-ID |
Masters Thesis |
Health |
Amelung, Wulf; Tang, Ni; Siebers, Nina; Aehnelt, Michaela; Eusterhues, Karin et al. (2023). Architecture of soil microaggregates: Advanced methodologies to explore properties and functions. Journal of Plant Nutrition and Soil Science . 10.1002/jpln.202300149. |
SXRMB |
Peer-Reviewed Article |
Environment |
AMI ATUL SHAH (2018). NATURE INSPIRED TECHNOLOGY: A NEW PROCESS FOR SILICIFICATION BASED ON MARINE SPONGES. Supervisor: Aswath, Pranesh; Varanasi, Venu; Motta, Antonella; Meletis, Efstathios “Stathis” I.; Yum, Kyung Suk; Tibbals, Harry. Texas, United States: THE UNIVERSITY OF TEXAS AT ARLINGTON. . |
SGM, SXRMB, VLS-PGM |
Doctoral Thesis |
Agriculture |
Amin, M. Ruhul; de Boer, T.; Becker, Peter; Hertrampf, Jan; Niewa, Rainer et al. (2019). Bandgap and Electronic Structure Determination of Oxygen-Containing Ammonothermal InN: Experiment and Theory. Journal of Physical Chemistry C 123(14) , 8943-8950. 10.1021/acs.jpcc.8b12369. |
REIXS, VLS-PGM |
Peer-Reviewed Article |
Materials |
Amin, M. Ruhul; Elzer, Eugenia; Schnick, Wolfgang; Moewes, Alexander (2021). Unraveling the Energy Levels of Eu2+ Ions in MBe20N14:Eu2+ (M = Sr, Ba) Phosphors. Journal of Physical Chemistry C 125(22) , 11828-11837. 10.1021/acs.jpcc.1c01085. |
REIXS, VLS-PGM |
Peer-Reviewed Article |
Materials |
Amin, Muhammad Ruhul; Strobel, Philipp; Qamar, Amir; Giftthaler, Tobias; Schnick, Wolfgang et al. (2020). Understanding of Luminescence Properties Using Direct Measurements on Eu
2+
‐Doped Wide Bandgap Phosphors. Advanced Optical Materials 8(16) , 2000504. 10.1002/adom.202000504. |
REIXS, VLS-PGM |
Peer-Reviewed Article |
Environment |
Amin, Muhammad Ruhul; Strobel, Philipp; Schnick, Wolfgang; Schmidt, Peter J.; Moewes, Alexander et al. (2022). Energy levels of Eu2+ states in the next-generation LED-phosphor SrLi2Al2O2N2:Eu2+. Journal of Materials Chemistry C 10(26) , 9740-9747. 10.1039/d2tc01372j. |
REIXS, VLS-PGM |
Peer-Reviewed Article |
Materials |
Amor, Matthieu; Faivre, Damien; Chevrier, Daniel M. (2021). Crystal-chemical and biological controls of trace and minor element incorporation into magnetite nanocrystals. Patent Number: 10.26434/chemrxiv-2021-j7qj2. |
CLS-APS |
Conference Proceeding |
Materials |
Amor, Matthieu; Mosselmans, J. Frederick W.; Scoppola, Ernesto; Li, Chenghao; Faivre, Damien et al. (2023). Crystal–Chemical and Biological Controls of Elemental Incorporation into Magnetite Nanocrystals. ACS Nano 17(2) , 927-939. 10.1021/acsnano.2c05469. |
CLS-APS |
Peer-Reviewed Article |
Materials |