Publication Beamlines Strategic Pillar
Toplak, Marko; Read, Stuart T.; Sandt, Christophe; Borondics, Ferenc (2021). Quasar: Easy Machine Learning for Biospectroscopy. Cells 10(9) , 2300. 10.3390/cells10092300. MID-IR Health
Tu, Kaiyang; Morhart, Tyler A.; Read, Stuart T.; Rosendahl, Scott M.; Burgess, Ian J. et al. (2021). Probing Heterogeneity in Attenuated Total Reflection Surface-Enhanced Infrared Absorption Spectroscopy (ATR-SEIRAS) Response with Synchrotron Infrared Microspectroscopy. Applied Spectroscopy 75(9) , 000370282110058. 10.1177/00037028211005817. MID-IR, SYLMAND Materials
Xin, Xiaying; Huang, Guohe; Halstead, David; Gaetz, Katelyn; Benmerrouche, Leila et al. (2021). The Optimization of Canola Crop Production through Wheat Residue Management within a Western Canadian Context—A Case Study of Saint-Front, Saskatchewan. Sustainability (Switzerland) 13(18) , 10459. 10.3390/su131810459. MID-IR, VESPERS Environment
Xin, Xiaying; Huang, Guohe; Zhang, Baiyu; Zhou, Yang (2021). Trophic transfer potential of nTiO2, nZnO, and triclosan in an algae-algae eating fish food chain. Aquatic Toxicology 235, 105824. 10.1016/j.aquatox.2021.105824. MID-IR Agriculture
Yin, Jianan; Huang, Guohe; An, Chunjiang; Zhang, Peng; Xin, Xiaying et al. (2021). Exploration of nanocellulose washing agent for the green remediation of phenanthrene-contaminated soil. Journal of Hazardous Materials 403, 123861. 10.1016/j.jhazmat.2020.123861. MID-IR, VESPERS Environment
Yoshinaka, Akio; Desgreniers, Serge; Hu, Anguang (2021). Nitroethane at high density: an experimental and computational vibrational study. Physical Chemistry Chemical Physics 23(15) , 9325-9336. 10.1039/d0cp06557a. MID-IR Materials
Chen, Xiujuan; Huang, Gordon; Li, Yongping; An, Chunjiang; Feng, Renfei et al. (2020). Functional PVDF ultrafiltration membrane for Tetrabromobisphenol-A (TBBPA) removal with high water recovery. Water Research 181, 115952. 10.1016/j.watres.2020.115952. MID-IR, VESPERS Environment
Feng, Xin; Liu, Na; Zhang, Huihua; Yu, Peiqiang (2020). Chemical Imaging of the Microstructure of Chickpea Seed Tissue within a Cellular Dimension Using Synchrotron Infrared Microspectroscopy: A Preliminary Study. Journal of Agricultural and Food Chemistry 68(41) , 11586-11593. 10.1021/acs.jafc.0c04446. MID-IR Agriculture
Goff, Kira L.; Ellis, Thomas H.; Wilson, Kenneth E. (2020). Synchrotron FTIR spectromicroscopy as a tool for studying populations and individual living cells of green algae. Analyst 145(24) . 10.1039/d0an01386b. MID-IR Agriculture
Helwig, Kate; Monaghan, Meaghan; Poulin, Jennifer; Henderson, Eric J.; Moriarty, Maeve et al. (2020). Rita Letendre’s Oil Paintings from the 1960s: The Effect of Artist’s Materials on Degradation Phenomena. Studies in Conservation 66(2) , 1-15. 10.1080/00393630.2020.1773055. MID-IR Materials
Karunakaran, Chithra; Vijayan, Perumal; Stobbs, Jarvis; Bamrah, Ramandeep Kaur; Arganosa, Gene et al. (2020). High throughput nutritional profiling of pea seeds using Fourier transform mid-infrared spectroscopy. Food Chemistry 309, 125585. 10.1016/j.foodchem.2019.125585. MID-IR Agriculture
Lins, Erick; Read, Stuart; Unni, Bipinlal; Rosendahl, Scott M.; Burgess, Ian J. et al. (2020). Microsecond Resolved Infrared Spectroelectrochemistry Using Dual Frequency Comb IR Lasers. Analytical Chemistry 92(9) , 6241-6244. 10.1021/acs.analchem.0c00260. MID-IR Materials
Liu, Na; Zhao, Lifang; Tang, Lily; Stobbs, Jarvis; Parkin, Isobel et al. (2020). Mid‐infrared spectroscopy is a fast screening method for selecting Arabidopsis genotypes with altered leaf cuticular wax. Plant. Cell and Environment 43(3) . 10.1111/pce.13691. MID-IR Agriculture
Liu, Yunqiu; Huang, Gordon; An, Chunjiang; Chen, Xiujuan; Zhang, Peng et al. (2020). Use of Nano-TiO2 self-assembled flax fiber as a new initiative for immiscible oil/water separation. Journal of Cleaner Production 249, 119352. 10.1016/j.jclepro.2019.119352. MID-IR, VESPERS Environment
Nasr, Pedram; Corradini, Maria G.; Hill, Jarvis; Read, Stuart T.; Rosendahl, Scott M. et al. (2020). Hansen Solubility Parameters Clarify the Role of the Primary and Secondary Hydroxyl Groups on the Remarkable Self-Assembly of 1:3,2:4-Dibenzylidene Sorbitol. Journal of Physical Chemistry C 124(48) , 26455-26466. 10.1021/acs.jpcc.0c07671. MID-IR Materials