Literature with Benchtop NMR

Zhang, J.; Maschmeyer, T.; Shapiro, B.; Paudel, S. B.; Leclerc, M. C.; Hein, J. E. ‘Applying Quantum Mechanics to Deconvolute Benchtop 1H NMR Reaction Data’ React Chem Eng 2024 https://doi.org/10.1039/d3re00583f.

Andriyani, D. D.; Kadir, L. A.; Indriyani, N. P.; Permana, Y. Glycerol Carbonate Synthesis via Zn(OBu)2/AlCl2(OBu) Initiated-Glycerolysis of Urea. Chemistry of Inorganic Materials 2024, 2, 100040. https://doi.org/10.1016/j.cinorg.2024.100040.

Adeboye, S.; Adebamiro, O.; Arigbede, O.; Irorevbo, H.; Ajayi, A.; Akintayo, E.; Ajanaku, K.; Basak, P.; Narayan, R.; Siyanbola, T. ‘Development of Functional Graphene Oxide-Urethane Coating Systems from Ricinus Communis Seed Oil’ Ind Crops Prod 2024, 214. https://doi.org/10.1021/acs.analchem.3c05233.

Nantogma, S.; Chowdhury, M. R. H.; Kabir, M. S. H.; Adelabu, I.; Joshi, S. M.; Samoilenko, A.; de Maissin, H.; Schmidt, A. B.; Nikolaou, P.; Chekmenev, Y. A.; Salnikov, O. G.; Chukanov, N. V.; Koptyug, I. V.; Goodson, B. M.; Chekmenev, E. Y. ‘MATRESHCA: Microtesla Apparatus for Transfer of Resonance Enhancement of Spin Hyperpolarization via Chemical Exchange and Addition’ Anal. Chem. 2024, 96, 4171–4179.

Chen, P.; Zhuang, S. Chen, W.; Chen, Z.; Li, R.; Chen, T.; Jiang, T.; Fu, X. ‘Facile identification of fluorosurfactant category in aqueous film-forming foam concentrates via optimized 19F NMR’ Magnetic Resonance Letters https://doi.org/10.1016/j.mrl.2023.12.005

 

Daulay, A.; Astuti, W; Mufakhir, F. R.; Prasetia, H.; Samada, L. H. ‘Hakim Samada Chitosan grafted alginate and polyvinylpyrrolidone as the binder for porous silicon nanoparticles from coal fly ash in lithium-ion batter’ Journal of Electroanalytical Chemistry 2024, 1, 117984. https://doi.org/10.1016/j.jelechem.2023.117984

 

Giebelhaus, R. T.; Tarazona Carrillo, K.; Nam, S. L.; de la Mata, A. P.; Araneda, J. F.; Hui, P.; Ma, J.; Harynuk, J. J. ‘Detection of common adulterants in olive oils by bench top 60 MHz 1H NMR with partial least squares regression’ J. Food Compos. Anal. 2023, 122, 105465-105470.

 

Araneda, J. F.; Weerasekera, H. A.; Luk, S. B.; Leclerc, M. C.; Riegel, S. D.; ‘Determination of copolymer compositions in polyhydroxyalkanoates using 1H benchtop nuclear magnetic resonance spectroscopy’ Anal. Methods 2023, 15, 3476-3482.

 

Bornemann-Pfeiffer, M.; Meyer, K.; Lademann, J.; Kraume, M.; Maiwald, M. ‘Contributions towards variable temperature shielding for compact NMR instruments’ https://doi-org.ezproxy.lib.ucalgary.ca/10.1002/mrc.5379

 

Min, S.; Baek, J.; Kim, J.; Jeong, H. J.; Chung, J.; Jeong, K. ‘Water-Compatible and Recyclable Heterogeneous SABRE Catalyst for NMR Signal Amplification’ JACS Au 2023, 3, 2912−2917.

 

Ariyasingha, N. M; Samoilenko, A.; Birchall, J. R.; Chowdhury, Md. H. C; Salnikov, O. G.; Kovtunova, L. M.; Bukhtiyarov, V. I.; Zhu, D. C.; Qian, C.; Bradley, M.; Gelovani, J. G.; Koptyug, I. V.; Goodson, B. M.; Chekmenev, E. Y. ‘Ultra-Low-Cost Disposable Hand-Held Clinical-Scale Propane Gas Hyperpolarizer for Pulmonary Magnetic Resonance Imaging Sensing’ ACS Sens. 2023, 8, 3845–3854.

 

Kabir, S. H.; Joshi, S. M.; Samoilenko, A.; Adelabu, I.; Nantogma, S.; Gelovani, J. G.; Goodson, B. M.; Chekmenev, E. Y. ‘Nitrogen-15 and Fluorine-19 Relaxation Dynamics and Spin-Relayed SABRE-SHEATH Hyperpolarization of Fluoro‑[15N3]metronidazole’ J. Phys. Chem. A 2023, 127, 5018−5029.

 

Araneda, J. F.; Riegel, S. D.; Leclerc, M. C. ‘Benchtop nuclear magnetic resonance performance evaluation according to ASTM E691–22 on a population of instruments: Molar substitution determination in hydroxypropyl betadex as a case study for use in quality control environments’ https://doi.org/10.1002/mrc.5351

 

Chen, R.; Singh, P.; Su, S.; Kocalar, S.; Wang, X.; Mandava, N.; Venkatesan, S.; Ferguson, A.; Rao, A.; Le, E.; Rojas, C.; Njoo, E. ‘Benchtop 19F Nuclear Magnetic Resonance (NMR) Spectroscopy Provides Mechanistic Insight into the Biginelli Condensation toward the Chemical Synthesis of Novel Trifluorinated Dihydro- and Tetrahydropyrimidinones as Antiproliferative Agents’ ACS Omega 2023, 8, 10545–10554.

 

Ellis, E.; Djordjevic, I.; Ali, M. N. B. M.; Steele, T. W. J.; ‘Carbene-Based Bioadhesive Blended with Amine, Thiol, and Acrylate Liquid Additives’ ACS Appl. Polym. Mater. 2023, 5, 1440.

 

de Carvalho, C. P.; da Silva, A. J. R.; Lima, R. C.; Eberlin, M. N. ‘Mass spectrometry Molecular Fingerprinting of Mineral and Synthetic Lubricant Oils’ J Mass Spectrom. doi:10.1002/jms.4906

 

Saputra, L.; Arifin; Gustini, N.; Sinambela, N.; Indriyani, N. P.; Sakti, A. W.; Arrozi, U. S. F. A.; Martoprawiro, M. A.; Patah, A.; Permana, Y. ‘Nitrile modulated-Ni(0) phosphines in trans-selective phenylpropenoids isomerization: An allylic route by a regular η1-N(end-on) or an alkyl route via a flipped-nitrile?’ Mol. Catal. 2022, 533, 112768

 

Nantogma, S.; Eriksson, S. L.; Adelabu, I.; Mandzhieva, L.; Browning, A.; TomHon, P.; Warren, W. S.; Theis, T.; Goodson, B. M.; Chekmenev, E. Y.  Interplay of Near-Zero-Field Dephasing, Rephasing, and Relaxation Dynamics and [1-13C] Pyruvate Polarization Transfer Efficiency in Pulsed SABRE-SHEATH J. Phys. Chem. A 2022, 126, 9114.

 

Nugrahani, I.; Laksana, A. N.; Uekusa, H.; Oyama, H. ‘New Organic Salt from Levofloxacin-Citric Acid: What Is the Impact on the Stability and Antibiotic Potency?’ Molecules 2022, 27, 2166.

 

Koustoulidou, S.;  Handula, M.; de Ridder, C.; Stuurman, D.; Beekman, S.; de Jong, M.; Nonnekens, J.; Seimbille, Y. ‘Synthesis and Evaluation of Two Long-Acting SSTR2 Antagonists for Radionuclide Therapy of Neuroendocrine Tumors’ Pharmaceuticals 2022, 15, 1155.

 

Hara, K.; Yamada, S.; Chikayama, E.; Kikuchi, J. ‘Parameter Visualization of Benchtop Nuclear Magnetic Resonance Spectra toward Food Process Monitoring’ Processes 2022, 10, 1264.

 

Aswathy, J., Surendra Singh, P., Sai Krishna, V., Kumar, N., Panchariya, P.C. (2022). Qualitative Analysis of Edible Oils Using Low Field 1H NMR Spectroscopy and Multivariate Statistical Methods. In: Raj, J.S., Palanisamy, R., Perikos, I., Shi, Y. (eds) Intelligent Sustainable Systems. Lecture Notes in Networks and Systems, vol 213. Springer, Singapore. DOI: 10.1007/978-981-16-2422-3_62

 

Haslinger, C.; Leutgeb, L. P.; Haas, M.; Baudis, S.; Liska, R. ‘Synthesis and Photochemical Investigation of Tetraacylgermanes’ ChemPhotoChem doi.org/10.1002/cptc.202200108

 

Araneda, J. F.; Burton, I. W.; Paleologou, M.; Riegel, S. D.; Leclerc, M. C. ‘Analysis of Lignins Using 31P Benchtop NMR Spectroscopy: Quantitative Assessment of Substructures and Comparison to High-Field NMR’ Can. J. Chem. 2022, 100, 799.

 

Agusta, K. D.; Miharja, M. F.; Sakti, A. W.; Arrozi, U. S. F.; Mukaromah, L.; Patah, A.; Hara, T.; Permana, Y. ‘Zr-MOFs–catalyzed transfer hydrogenation of furfural to furfuryl alcohol: Unveiled performance of DUT-52’ Mol. Catal.2022, 524, 112265.

 

Frinculescu, A.; Maier, A. F. G.; Shine, T.; Ramsey, J.; Araneda, J. F.; Riegel, S. D.; Frascione, A.; Abbatea, V. ‘3,4-Methylenedioxymethamphetamine quantification via benchtop 1H qNMR spectroscopy: Method validation and its application to ecstasy tablets collected at music festivals’ J. Pharm. Biomed., 2022, 214, 114728.

 

Maschmeyer, T.; Yunker, L. P. R.; Hein, J. E. ‘Quantitative and convenient real-time reaction monitoring using stopped-flow benchtop NMR’ React. Chem. Eng. 2022, 7, 1061-1072.

 

Tannousa, J. H.; Yana, Y.; De Klerka, A. ‘Impact of co-feeding cracked light products on visbreaking of vacuum residue deasphalted oil’ Fuel, 2022, 310, 122182.

 

Yamada, S.; Kurotani, A.; Chikayama, E.; Kikuchi, J. ‘Signal Deconvolution and Noise Factor Analysis Based on a Combination of Time–Frequency Analysis and Probabilistic Sparse Matrix Factorization’ Int. J. Mol. Sci. 2020, 21, 2978.

 

Stewart, N.J.; Nakano, H.; Sugai, S.; Tomohiro, M.; Kase, Y.; Uchio, Y.; Yamaguchi, T.; Matsuo, Y.; Naganuma, T.; Takeda, N.; Nishimura, I.; Hirata, H.; Hashimoto, T.; Matsumoto, S. ‘Hyperpolarized 13C Magnetic Resonance Imaging of Fumarate Metabolism by Parahydrogen-induced Polarization: A Proof-of-Concept in vivo Study’ ChemPhysChem 2021, 22, 915–923.

 

Chukanov, N. V.; Salnikov, O.G.; Trofimov, I. A.; Kabir, M. S. H.; Gelovani, J. G.; Kovtunov, K. V.; Koptyug, I. V.; Chekmenev, E. Y. ‘Synthesis and 15N NMR Signal Amplification by Reversible Exchange of [15N]Dalfampridine at Microtesla Magnetic Fields’ ChemPhysChem 2021, 22, 960 –967.

 

Thomas, G. T.; Ronda, K.; McIndoe, J. S. ‘A mechanistic investigation of the Pd-catalyzed cross-coupling between N-tosylhydrazones and aryl halides’ Dalton Trans. 2021, 50, 15533-15537.

 

Kim, Y.; Leistenschneider, D.; de Klerk, A.; Chen, W. ‘Rigorous Deasphalting, Autoxidation, and Bromination Pretreatment Methods for Oilsands Bitumen Derived Asphaltenes to Improve Carbon Fiber Production’ Energy Fuels 2021, 35, 17463–17478.

 

Puliyanda, A.; Sivaramakrishnan, K.; Li Z.; de Klerk, A.; Prasad, V. ‘Structure-Preserving Joint Non-negative Tensor Factorization to Identify Reaction Pathways Using Bayesian Networks’ J. Chem. Inf. Model. 2021, 61, 5747−5762.

 

Broumidis, E.; Jones, C. M. S.; Koyioni, M.; Kourtellaris, A.; Lloyd, G. O.; Marques-Hueso, J.; Koutentis, P. A.; Vilela, F. ‘8,8′-(Benzo[c][1,2,5]thiadiazole-4,7-diyl)bis(quinolin-4(1H)-one): a twisted photosensitizer with AIE properties’ RSC Adv. 2021, 11, 29102–29107.

 

Kras E. A.; Abozeid, S. M.; Eduardo, W.; Spernyak, J. A.; Morrow, J. R. ‘Comparison of phosphonate, hydroxypropyl and carboxylate pendants in Fe(III) macrocyclic complexes as MRI contrast agents’ J. Inorg. Biochem. 2021, 225, 111594–111602.

 

Araneda, J. F.; Baumgarte, M.; Lange, M.; Maier, A. F. G.; Riegel, S. D. ‘Identification of seven psychedelic 2,5-dimethoxy-phenylethyl-amine-based designer drugs via benchtop 1H nuclear magnetic resonance spectroscopy’ Magn. Reson. Chem. https://doi.org/10.1002/mrc.5205

 

Asik, D; Abozeid, S. M.; Turowski, S. G.; Spernyak, J. A.; Morrow, J. R. ‘Dinuclear Fe(III) Hydroxypropyl-Appended Macrocyclic Complexes as MRI Probes’ Inorg. Chem. 2021, 60, 8651–8664.

 

Joalland, B.; Nantogma, S.; Raduanul, Md.; Chowdhury, H.; Nikolaou, P.; Chekmenev, E. Y.; ‘Magnetic Shielding of Parahydrogen Hyperpolarization Experiments for the Masses’ Magn. Reson. Chem. 2021, 59, 1180–1186.

 

Link, F.; Halmenschlager, C. M.; Chauhan, G.; de Klerk, A. ‘Wax Hydrocracking over Pt/SiO2–Al2O3 at 2 MPa: Product Characterization and Its Implications for Catalysis’ Energy Fuels 2021, 35, 5252−5263.

 

Araneda, J. F.; Barbosa, T. B.; Hui, P.; Leclerc, M. C.; Ma, J.; Maier, A. F. G.; Riegel, S. D. ‘Incorporating Benchtop NMR Spectrometers in the Undergraduate Lab: Understanding Resolution and Circumventing Second-Order Effects’ J. Chem. Educ. 2021, 98, 1227-1232.

 

Ferreira, P. S.; Manthey, J. A.; Nery, M. S.; Cesar, T. B. ‘Pharmacokinetics and Biodistribution of Eriocitrin in Rats’ J. Agric. Food Chem. 2021, 69, 1796–1805.

 

Kumar, D; Sakhare, N; Das, S.; Kale, P.; Mathur, A.; Mirapurkar, S.; Muralidharan, S.; Chaudhari, P.; Mohanty, B.; Ballal, A; Patro, P. ‘Development of technetium-99m labeled ultrafine gold nanobioconjugates for targeted imaging of folate receptor positive cancers’ Nucl. Med. Biol. 2021, 93, 1-10.

 

Araneda, J. F.; Hui, P.; Riegel, S. D.; Mercado, R.; Green, C. ‘Lithium-7 qNMR as a method to quantify lithium content in brines using benchtop NMR’ Analyst 2021,146, 882-888.

 

Araneda, J. F.; Chu, T.; Leclerc, M. C.; Riegel, S. D.; Spingarn, N. ‘Quantitative analysis of cannabinoids using benchtop NMR instruments’ Anal. Methods, 2020, 12, 4853–4857.

 

Salnikov, O.G.; Chukanov, N. V.; Svyatova, A.; Trofimov, I. A.; Kabir, M. S. H.; Gelovani, J. G.; Kovtunov, K. V.; Koptyug, I. V.; Chekmenev, E. Y. ‘15N NMR Hyperpolarization of Radiosensitizing Antibiotic Nimorazole via Reversible Parahydrogen Exchange in Microtesla Magnetic Fields’ Angew. Chem. Int. Ed. 2021, 60, 2406–2413.

 

Yan, Y.; Prado, G.H.C.; de Klerk, A. 'Storage stability of products from visbreaking of oilsands bitumen' Energy Fuels 2020, 34, 9585−9598.

 

Puliyanda, A.; Sivaramakrishnan, K.; Li, Z.; de Klerk, A.; Prasad, V.'Data fusion by joint non-negative matrix factorization for hypothesizing pseudo-chemistry using Bayesian networks' React. Chem. Eng. 2020, 5, 1719–1737.

 

Birchall, J.R.; Kabir, M.S.H.; Salnikov, O.G.;Chukanov, N.V.; Svyatova, A.; Kovtunov, K.V.; Koptyug, N.V.; Gelovani, J.G.; Goodson, B.M.; Pham, W.; Chekmenev, E.Y. 'Quantifying the effects of quadrupolar sinks via 15N relaxation dynamics in metronidazoles hyperpolarized via SABRE-SHEATH' Chem. Commun. 2020, 56, 9098-9101.

Maschmeyer, T.; Prieto P.L.; Grunert, S.; Hein J. E.; ‘Exploration of continuous-flow benchtop NMR acquisition parameters and considerations for reaction monitoring’ Magn. Reson. Chem. 2020, 58,1234–1248.

 

Sassu, L.; Puligheddu S.; Puligheddu C.; Palomba, S.; Muru E.; Mattia C.; Allevi, C. ‘Application of benchtop low‐field NMR spectrometers in the refining industry: A multivariate calibration approach for rapid characterization of crude oils’ Magn. Reson. Chem. 2020, 58,1222–1233.

 

Nestle, N.; Lim, Z. J.; Böhringer, T.; Abtmeyer, S.; Arenz, S.; Leinweber, F. C.; Weiß, T.; von Harbou, E. ‘Taking compact NMR to monitoring real reactions in large–scale chemical industries – General considerations and learnings from a lab-scale test case’ Magn. Reson. Chem. 2020, 58,1213–1221.

 

Lawson, I. J.; Ewart, C.; Kraft, A.; Ellis, D. ‘Demystifying NMR spectroscopy: Applications of benchtop spectrometers in the undergraduate teaching laboratory’ Magn. Reson. Chem. 2020, 58,1256–1260.

 

Brown, B. A. ‘The application of benchtop NMR for investigating the performance of H2S scavengers’ Magn. Reson. Chem. 2020, 58,1249–1255.

 

Bernard, G. M.; Michaelis, V. K. ‘Lead–207 NMR Spectroscopy at 1.4 T: Application of Benchtop Instrumentation to a Challenging I = ½ Nucleus’. Magn. Reson. Chem. 2020, 58,1203–1212.

 

Lee, W; Zell, M. T.; Ouchi, T; Milton M. J. ‘NMR Spectroscopy goes mobile: Using NMR as Process Analytical Technology at the fume hood’ Magn. Reson. Chem. 2020, 58,1193–1202.

 

Kamlungmak, S.; Rugmai, S.; Tinpun, K.; Nakpheng, T.; Srichana, T. ‘Phase behavior, in vitro drug release, and antibacterial activity of thermo responsive poloxamer–polyvinyl alcohol hydrogel-loaded mupirocin nanoparticles’ J. Appl. Polym. Sci. 2020;137:e49325.

 

Rashid, S.; Lee, B. L.; Wajda, B.; Spyracopoulos, L. ‘Nucleotide Binding and Active Site Gate Dynamics for the Hsp90 Chaperone ATPase Domain from Benchtop and High Field 19F NMR Spectroscopy’ J. Phys. Chem. B 2020, 124, 2984−2993.

 

Thomson, C. G.; Jones, C. M. S.; Rosair, G.; Ellis, D.; Marques-Hueso, J.; Lee, A-L.; Vilela, F. ‘Continuous-flow synthesis and application of polymer-supported BODIPY Photosensitisers for the generation of singlet oxygen; process optimised by in-line NMR spectroscopy’ J. Flow Chem. 2020, 20, 327–345.

 

Kaseman, D. C; Janicke, M. T.; Frankle, R. K.; Nelson, T.; Angles-Tamayo, G.; Batrice, R. J.; Magnelind, P. E.; Espy, M. A.; Williams, R. F. ‘Chemical Analysis of Fluorobenzenes via Multinuclear Detection in the Strong Heteronuclear J-Coupling Regime’ Appl. Sci. 2020, 10, 3836.

 

Wang, Y.; Clay, A.; Nguyen, M. ‘ATRP by continuous feeding of activators: Limiting the end-group loss in the polymerizations of methyl methacrylate and styrene’ Polymer 2020, 188, 122097.

 

Feinberg, A. M.; Davydovich, O.; Lloyd, E. M.; Ivanoff, D. G.; Shiang, B.; Sottos, N. R.; Moore, J. S. ‘Triggered Transience of Plastic Materials by a Single Electron Transfer Mechanism’ ACS Cent. Sci. 2020, 6, 266−273.

 

Choules, M.P.; Bisson J.; Simmler, C.; McAlpine, J. B.; Giancaspro, G.; Bzhelyansky, A.; Niemitz, M.; Pauli, G. F. ‘NMR reveals an undeclared constituent in custom synthetic peptides’ Pharm. Biomed. Anal. 2020, 178, 112915.

 

Thapa, B.; Diaz-Diestra, D.; Badillo-Diaz, D.; Sharma, R. K.; Dasari, K.; Kumari, S.; Holcomb, M. B.; Beltran-Huarac, J.; Weiner, B. R.; Morell, G. “Controlling the transverse proton relaxivity of magnetic graphene oxide” Scientific Reports (2019) 9:5633.

 

Fakayode, S. O.; Abbott, B. D. ‘Experiential Learning through Guided-Inquiry: The Analysis of Herbicides in an Undergraduate Instrumental Analysis Laboratory Experiment at The University of Arkansas-Fort Smith’ Chem. Educator 2019, 24, 38.

 

Lopera-Valle, A.; Elias, A. ‘Amine Responsive Poly(lactic acid) (PLA) and Succinic Anhydride (SAh) Graft-Polymer: Synthesis and Characterization’ Polymers 2019, 11, 1466.

 

Wang, Y. ‘ATRP of Methyl Acrylate by Continuous Feeding of Activators Giving Polymers with Predictable End-Group Fidelity’ Polymers 2019, 11, 1238.

 

Umnahanant, P.; Zafar, A.; Kankala, V.; Chickos, J. ‘Vapor pressure and vaporization enthalpy studies of (+)-longifolene, (-)-isolongifolene and 𝛽-myrcene by correlation gas chromatography’ J. Chem. Thermodynamics 2019, 131, 583.

 

Das, S.; Sakhare, N.; Mathur, A.; Mallia, M. B.; Mirapurkar, S.; Sheela, M.; Sarma, H.D.; Sachdev, S.S.; Dash, A. ‘Synthesis and evaluation of 99mTc-analogues of [123/131I]mIBG prepared via [99mTc][Tc(CO)3(H2O)3]+ synthon for targeting norepinephrine transporter’ Nucl. Med. Biol. 2019, 68-69, 49–57.

 

Chow, C-K. ‘Bimetallic-based food sensors for meat spoilage: Effects of the accepting metallic unit in Fe(II)-CNMA (MA=Pt(II) or Au(I)) on device selectivity and sensitivity’ Food Chem. 2019, 300, 125190.

 

Tannous, J. H.; de Klerk, A. ‘Asphaltenes formation during thermal conversion of deasphalted oil’ Fuel, 2019, 255, 115786.

 

Deotale, S. M.; Dutta, S.; Moses, J. A.; Anandharamakrishnan, C. ‘Coffee oil as a natural surfactant’ Food Chem. 2019, 295, 180.

 

Febrian, R.; Ona, W. J.; Araneda, J. F.; Riegel, S. D.; Bracher, P. J. “Benchtop NMR Spectroscopy of Prebiotically-Relevant Peptide Reactions Enabled by Salt-Induced Chemical Shift Dispersion” J. Chem. Educ. 2019, 96, 2326.

 

Bergstrom Mann, P.; Clark, S.; Cahill, S. T.; Campbell, C. D.; Harris, M. T.; Hibble, S.; To, T.; Worrall, A.; Stewart, M. “Implementation of Earth’s Field NMR Spectroscopy in an Undergraduate Chemistry Laboratory” J. Chem. Educ. 2019, 96, 2326-2332.

 

Ariyasingha, N. M.; Salnikov, O. G.; Kovtunov, K. V.; Kovtunova, L. M.; Bukhtiyarov, V. I.; Goodson, B. M.; Rosen, M. S.; Koptyug, I. V.; Gelovani, J. G.; Chekmenev, E. Y. “Relaxation Dynamics of Nuclear Long-Lived Spin States in Propane and Propane‑d6 Hyperpolarized by Parahydrogen” J. Phys. Chem. C 2019, 123, 11734−11744.

 

Yamada, S.; Ito, K.; Kurotani, A.; Yamada, Y.; Chikayama, E.; Kikuchi, J. “InterSpin: Integrated Supportive Webtools for Low- and High-Field NMR Analyses Toward Molecular Complexity” ACS Omega 2019, 4, 3361−3369.

 

Barskiy, D. A.; Tayler, M. C. D.; Marco-Rius, I.; Kurhanewicz, J.; Vigneron, D.; Cikrikci, S.; Aydogdu, A.; Reh, M.; Pravdivtsev, A. N.; Hövener, J-B.; Blanchard, J.W.; Wu, T.; Budker, D.; Pines, A. “Zero-field nuclear magnetic resonance of chemically exchanging systems” Nat. Commun. 2019, 10, 1−9.

 

Shchepin, R. V.; Birchall, J. R.; Chukanov, N. V.; Kovtunov, K. V.; Koptyug, I. V.; Theis, T.; Warren, W. S; Gelovani, J. G.; Goodson, B. M.; Shokouhi, S.; Rosen, M. S.; Yen, Y-F.; Pham, W.; Chekmenev, E. Y. “Hyperpolarizing Concentrated Metronidazole 15NO2 Group over Six Chemical Bonds with More than 15% Polarization and a 20 Minute Lifetime” Chem. Eur. J. 2019, 25, 8829-8836.

 

Castillo, J.; de Klerk, A. “Visbreaking of Deasphalted Oil from Bitumen at 280–400 °C” Energy Fuels 2019, 33, 159-175.

 

Lloyd, E. M.; Lopez Hernandez, H.; Feinberg,A. M.; Yourdkhani, M.; Zen, E. K.; Mejia,E. B.; Sottos, N. R.; Moore, J. S.; White, S. R. “Fully Recyclable Metastable Polymers and Composites” Chem. Mater. 2019, 31, 398−406.

 

Malinak, S. M.; Hertzog, J. E; Pacilio, J. E.; Polvani, D. A. “Bioinorganic Laboratory Experiment: Synthesis and Catalytic Activity of a Vanadium Haloperoxidase Model Complex” J. Chem. Educ. 2019, 96, 582-585.

 

Choules, M. P.; Bisson, J.; Gao, W.; Lankin, D.C.; McAlpine, J. B.; Niemitz, M.; Jaki, B. U.; Franzblau, S. G.; Pauli, G. F. “Quality Control of Therapeutic Peptides by 1H NMR HiFSA Sequencing” J. Org. Chem. 2019, 84, 3055-3073.

 

Kent, J. E.; Bell, N. G. A. “Molecular Properties of Caffeine Explored by NMR: A Benchtop NMR Experiment for Undergraduate Physical-Chemistry Laboratories” J. Chem. Educ. 2019, 96, 786-791.

 

Barskiy, D. A.; Ke, L. A.; Li, X.; Stevenson, V.; Widarman, N.;  Zhang, H.; Truxal, A. Pines, A. “Rapid Catalyst Capture Enables Metal-Free para-Hydrogen-Based Hyperpolarized Contrast Agents” J. Phys. Chem. Lett. 2018, 9, 2721−2724 See Supplementary Information

 

Dowling, G.; Kavanagh, P. V.; Eckhardt, H.‐G.; Twamley, B.; Hessman, G.; McLaughlin, G.; O'Brien, J.; Brandt, S. D. “An approach to shortening the timeframe between the emergence of new compounds on the drugs market and the availability of reference standards: The microscale syntheses of nitrazolam and clonazolam for use as reference materials, utilizing polymer‐supported reagents” Drug Test Anal. 2018, 10, 1198-1208.

 

Das, S.; Mathur, A.; Sakhare, N.; Mallia, M. B.; Sarma H. D.; Sachdev, S. S.; Dash, A. “Synthesis and biodistribution studies of 99mTc labeled fatty acid derivatives prepared via “Click approach” for potential use in cardiac imaging” J. Label Compd. Radiopharm. 2018, 61, 1048-1057.

 

Yañez Jaramillo, L. M.; A.; de Klerk, A. “Partial Upgrading of Bitumen by Thermal Conversion at 150–300 °C” Energy Fuels 2018, 32, 3299-3311.

 

Zachariah, A.; de Klerk, A. “Partial Upgrading of Bitumen: Impact of Solvent Deasphalting and Visbreaking Sequence” Energy Fuels 2017, 31, 9374-9380.

 

Thapa, B.; Diaz-Diestra, D.; Beltran-Huarac, J.; Weiner, B. R.; Morell, G.; “Enhanced MRI T2 Relaxivity in Contrast-Probed Anchor-Free PEGylated Iron Oxide Nanoparticles” Nanoscale Res. Lett. (2017) 12:312.

 

McAfee, S.M.; Dayneko, S. V.; Josse, P.; Blanchard, P.; Cabanetos, C.; Welch, G. C. “Simply Complex: The Efficient Synthesis of an Intricate Molecular Acceptor for High-Performance Air-Processed and Air-Tested Fullerene-Free Organic Solar Cells” Chem. Mater. 2017, 29, 1309-1314. See Supplementary Information

 

Fabry, D. C.; Ho, Y. A.; Zapf, R.; Tremel, W.; Panthöfer, M.; Rueping, M.; Rehm, T. H. “Blue light mediated C–H arylation of heteroarenes using TiO2 as an immobilized photocatalyst in a continuous-flow microreactor” Green Chem. 2017, 19, 1911-1918. See Supplementary Information

 

Rehm, T. H.; Hofmann, C.; Reinhard, D.; Kost, H-J.; Löb, P.; Besold, M.; Welzel, K.; Barten, J.; Didenko, A.; Sevenard, D. V.; Lix, B.; Hillson, A. H.; Riegel, S. D. “Continuous-flow synthesis of fluorine-containing fine chemicals with integrated benchtop NMR analysis” React. Chem. Eng. 2017, 2, 315-323.

 

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