Articoli di riviste sul tema "Chemical reactions monitoring"
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Chen, Chun-Chi, e Po-Chiao Lin. "Monitoring of chemical transformations by mass spectrometry". Analytical Methods 7, n. 17 (2015): 6947–59. http://dx.doi.org/10.1039/c5ay00496a.
Testo completoSwearer, Dayne F., Samuel Gottheim, Jay G. Simmons, Dane J. Phillips, Matthew J. Kale, Michael J. McClain, Phillip Christopher, Naomi J. Halas e Henry O. Everitt. "Monitoring Chemical Reactions with Terahertz Rotational Spectroscopy". ACS Photonics 5, n. 8 (18 maggio 2018): 3097–106. http://dx.doi.org/10.1021/acsphotonics.8b00342.
Testo completoNielsen, Charles A., Ray W. Chrisman, Robert E. LaPointe e Theodore E. Miller. "Novel Tubing Microreactor for Monitoring Chemical Reactions". Analytical Chemistry 74, n. 13 (luglio 2002): 3112–17. http://dx.doi.org/10.1021/ac020100i.
Testo completoHsu, Chun-Yao, Gurpur Rakesh D. Prabhu e Pawel L. Urban. "Telechemistry 2.0: Remote monitoring of fluorescent chemical reactions". HardwareX 10 (ottobre 2021): e00244. http://dx.doi.org/10.1016/j.ohx.2021.e00244.
Testo completoFleischer, Heidi, Vinh Quang Do e Kerstin Thurow. "Online Measurement System in Reaction Monitoring for Determination of Structural and Elemental Composition Using Mass Spectrometry". SLAS TECHNOLOGY: Translating Life Sciences Innovation 24, n. 3 (7 gennaio 2019): 330–41. http://dx.doi.org/10.1177/2472630318813838.
Testo completoČáchová, Monika, Lenka Scheinherrová, Libor Kobera, Martina Urbanová, Jiří Brus e Martin Keppert. "Monitoring of Kinetics of Pozzolanic Reaction". Key Engineering Materials 722 (dicembre 2016): 126–31. http://dx.doi.org/10.4028/www.scientific.net/kem.722.126.
Testo completoJacquemmoz, Corentin, François Giraud e Jean-Nicolas Dumez. "Online reaction monitoring by single-scan 2D NMR under flow conditions". Analyst 145, n. 2 (2020): 478–85. http://dx.doi.org/10.1039/c9an01758e.
Testo completoStockinger, Skrollan, Julia Gmeiner, Kerstin Zawatzky, Johannes Troendlin e Oliver Trapp. "From stereodynamics to high-throughput screening of catalysed reactions". Chem. Commun. 50, n. 92 (2014): 14301–9. http://dx.doi.org/10.1039/c4cc04892j.
Testo completoNovotný, František, e Rostislav Lošot. "Chemical Reactions in a Soda-Lime Silicate Batch". Advanced Materials Research 39-40 (aprile 2008): 459–64. http://dx.doi.org/10.4028/www.scientific.net/amr.39-40.459.
Testo completoBunker, Ian, Ridwan Tobi Ayinla e Kun Wang. "Single-Molecule Chemical Reactions Unveiled in Molecular Junctions". Processes 10, n. 12 (3 dicembre 2022): 2574. http://dx.doi.org/10.3390/pr10122574.
Testo completoHwang, Hyunsik, e Hyunjoon Song. "Nanoscale reaction monitoring using localized surface plasmon resonance scatterometry". Chemical Physics Reviews 3, n. 3 (settembre 2022): 031301. http://dx.doi.org/10.1063/5.0090949.
Testo completoKashin, Alexey S., e Valentine P. Ananikov. "Monitoring chemical reactions in liquid media using electron microscopy". Nature Reviews Chemistry 3, n. 11 (26 settembre 2019): 624–37. http://dx.doi.org/10.1038/s41570-019-0133-z.
Testo completoBlake, Steven, Thomas Mayer, Michael Mayer e Jerry Yang. "Monitoring Chemical Reactions by Using Ion-Channel-Forming Peptides". ChemBioChem 7, n. 3 (30 gennaio 2006): 433–35. http://dx.doi.org/10.1002/cbic.200500532.
Testo completoDE BONI, Luis Alcides Brandini. "EMPIRICAL / THEORETICAL PROPOSAL FOR THE PRODUCTION OF BIODIESEL". Periódico Tchê Química 14, n. 28 (20 agosto 2017): 166–74. http://dx.doi.org/10.52571/ptq.v14.n28.2017.162_periodico28_pgs_166_174.pdf.
Testo completoGelinski, Estela Kamile, Fabiane Hamerski, Marcos Lúcio Corazza e Alexandre Ferreira Santos. "Biodiesel Synthesis Monitoring using Near Infrared Spectroscopy". Open Chemical Engineering Journal 12, n. 1 (14 novembre 2018): 95–110. http://dx.doi.org/10.2174/1874123101812010095.
Testo completoWang, Wei. "Imaging the chemical activity of single nanoparticles with optical microscopy". Chemical Society Reviews 47, n. 7 (2018): 2485–508. http://dx.doi.org/10.1039/c7cs00451f.
Testo completoMeher, Anil Kumar, e Yu-Chie Chen. "Online monitoring of chemical reactions by polarization-induced electrospray ionization". Analytica Chimica Acta 937 (settembre 2016): 106–12. http://dx.doi.org/10.1016/j.aca.2016.07.011.
Testo completoFligge, Thilo A., Jürgen Kast, Kai Bruns e Michael Przybylski. "Direct monitoring of protein-chemical reactions utilising nanoelectrospray mass spectrometry". Journal of the American Society for Mass Spectrometry 10, n. 2 (febbraio 1999): 112–18. http://dx.doi.org/10.1016/s1044-0305(98)00131-7.
Testo completoSunkara. "On the Properties of the Reaction Counts Chemical Master Equation". Entropy 21, n. 6 (19 giugno 2019): 607. http://dx.doi.org/10.3390/e21060607.
Testo completoMoser, William R., Joseph R. Berard, Peter J. Melling e Robert J. Burger. "A New Spectroscopic Technique for in situ Chemical Reaction Monitoring Using Mid-Range Infrared Optical Fibers". Applied Spectroscopy 46, n. 7 (luglio 1992): 1105–12. http://dx.doi.org/10.1366/0003702924124204.
Testo completoReis, M. M., M. Uliana, C. Sayer, P. H. H. Araújo e R. Giudici. "Monitoring emulsion homopolymerization reactions using FT-Raman spectroscopy". Brazilian Journal of Chemical Engineering 22, n. 1 (marzo 2005): 61–74. http://dx.doi.org/10.1590/s0104-66322005000100007.
Testo completoSteinbach, Julia C., Markus Schneider, Otto Hauler, Günter Lorenz, Karsten Rebner e Andreas Kandelbauer. "A Process Analytical Concept for In-Line FTIR Monitoring of Polysiloxane Formation". Polymers 12, n. 11 (25 ottobre 2020): 2473. http://dx.doi.org/10.3390/polym12112473.
Testo completoAHSAN, HASEEB. "Clinical Chemistry and Biochemistry: The Role of Biomarkers and Biomolecules". Asian Journal of Science Education 4, n. 1 (22 aprile 2022): 17–24. http://dx.doi.org/10.24815/ajse.v4i1.24431.
Testo completoBosch, P., C. Peinado, V. Martín, F. Catalina e T. Corrales. "Fluorescence monitoring of photoinitiated polymerization reactions". Journal of Photochemistry and Photobiology A: Chemistry 180, n. 1-2 (maggio 2006): 118–29. http://dx.doi.org/10.1016/j.jphotochem.2005.10.002.
Testo completoSalazar, Chase A., Blaise J. Thompson, Spring M. M. Knapp, Steven R. Myers e Shannon S. Stahl. "Multichannel gas-uptake/evolution reactor for monitoring liquid-phase chemical reactions". Review of Scientific Instruments 92, n. 4 (1 aprile 2021): 044103. http://dx.doi.org/10.1063/5.0043007.
Testo completoCerdà, Víctor, Carlos Ubide e Juan Zuriarrain. "A multi-syringe flow system for monitoring moderately fast chemical reactions". Journal of the Brazilian Chemical Society 23, n. 11 (novembre 2012): 1989–96. http://dx.doi.org/10.1590/s0103-50532012005000069.
Testo completoSimoncelli, Sabrina, Evangelina L. Pensa, Thomas Brick, Julian Gargiulo, Alberto Lauri, Javier Cambiasso, Yi Li, Stefan A. Maier e Emiliano Cortés. "Monitoring plasmonic hot-carrier chemical reactions at the single particle level". Faraday Discussions 214 (2019): 73–87. http://dx.doi.org/10.1039/c8fd00138c.
Testo completoPalumbo, O., A. Paolone, R. Cantelli, C. M. Jensen e R. Ayabe. "Monitoring of chemical reactions and point defect dynamics in sodium alanates". Materials Science and Engineering: A 442, n. 1-2 (dicembre 2006): 75–78. http://dx.doi.org/10.1016/j.msea.2006.02.209.
Testo completoZalduendo, M. Mercedes, Víctor Oestreicher, Judith Langer, Luis M. Liz-Marzán e Paula C. Angelomé. "Monitoring Chemical Reactions with SERS-Active Ag-Loaded Mesoporous TiO2 Films". Analytical Chemistry 92, n. 20 (21 settembre 2020): 13656–60. http://dx.doi.org/10.1021/acs.analchem.0c03310.
Testo completoDavies, J. I., M. J. Parrott e J. O. Williams. "In-situ monitoring of chemical reactions in MOCVD growth of ZnSe". Journal of Crystal Growth 79, n. 1-3 (dicembre 1986): 363–70. http://dx.doi.org/10.1016/0022-0248(86)90462-8.
Testo completoZhang, Ming-Jian, Yandong Duan, Chong Yin, Maofan Li, Hui Zhong, Eric Dooryhee, Kang Xu, Feng Pan, Feng Wang e Jianming Bai. "Ultrafast solid-liquid intercalation enabled by targeted microwave energy delivery". Science Advances 6, n. 51 (dicembre 2020): eabd9472. http://dx.doi.org/10.1126/sciadv.abd9472.
Testo completoZhang, Kaige, Gongke Li e Yuling Hu. "In situ loading of well-dispersed silver nanoparticles on nanocrystalline magnesium oxide for real-time monitoring of catalytic reactions by surface enhanced Raman spectroscopy". Nanoscale 7, n. 40 (2015): 16952–59. http://dx.doi.org/10.1039/c5nr05718c.
Testo completoSoares, Arianne de Freitas Barros, Francisco Lucas de Lima Carneiro, Juliana Rosa Leite Araújo Pereira, Micael Araújo Pereira, Antonio Tavernard Pereria Neto e Heleno Bispo Da Silva Júnior. "Advancing Chemical Reaction Engineering: Entropy-Based Modeling of Consecutive Reactions". Revista de Gestão Social e Ambiental 18, n. 3 (20 dicembre 2023): e04473. http://dx.doi.org/10.24857/rgsa.v18n3-027.
Testo completoNaitabdi, Ahmed, Anthony Boucly, François Rochet, Robert Fagiewicz, Giorgia Olivieri, Fabrice Bournel, Rabah Benbalagh, Fausto Sirotti e Jean-Jacques Gallet. "CO oxidation activity of Pt, Zn and ZnPt nanocatalysts: a comparative study by in situ near-ambient pressure X-ray photoelectron spectroscopy". Nanoscale 10, n. 14 (2018): 6566–80. http://dx.doi.org/10.1039/c7nr07981h.
Testo completoBosch, P., A. Fernández-Arizpe, J. L. Mateo, A. E. Lozano e P. Noheda. "New fluorescent probes for monitoring polymerisation reactions". Journal of Photochemistry and Photobiology A: Chemistry 133, n. 1-2 (maggio 2000): 51–57. http://dx.doi.org/10.1016/s1010-6030(00)00226-4.
Testo completoVázquez-Vázquez, Carmen, Belén Vaz, Vincenzo Giannini, Moisés Pérez-Lorenzo, Ramon A. Alvarez-Puebla e Miguel A. Correa-Duarte. "Nanoreactors for Simultaneous Remote Thermal Activation and Optical Monitoring of Chemical Reactions". Journal of the American Chemical Society 135, n. 37 (9 settembre 2013): 13616–19. http://dx.doi.org/10.1021/ja4051873.
Testo completoWall, Jennifer F., Franz Grieser e harles F. Zukoski. "Monitoring chemical reactions at the gold/solution interface using atomic force microscopy". Journal of the Chemical Society, Faraday Transactions 93, n. 22 (1997): 4017–20. http://dx.doi.org/10.1039/a704398h.
Testo completoFletcher, Paul D. I., Stephen J. Haswell e Xunli Zhang. "Monitoring of chemical reactions within microreactors using an inverted Raman microscopic spectrometer". ELECTROPHORESIS 24, n. 18 (settembre 2003): 3239–45. http://dx.doi.org/10.1002/elps.200305532.
Testo completoHsieh, Cheng-Huan, Chin-Sheng Chao, Kwok-Kong Tony Mong e Yu-Chie Chen. "Online monitoring of chemical reactions by contactless atmospheric pressure ionization mass spectrometry". Journal of Mass Spectrometry 47, n. 5 (maggio 2012): 586–90. http://dx.doi.org/10.1002/jms.2983.
Testo completoOh, Young-Ho, Dong Wook Kim e Sungyul Lee. "Ionic Liquids as Organocatalysts for Nucleophilic Fluorination: Concepts and Perspectives". Molecules 27, n. 17 (4 settembre 2022): 5702. http://dx.doi.org/10.3390/molecules27175702.
Testo completoTerazima, Masahide. "Applications of Time-Resolved Thermodynamics for Studies on Protein Reactions". J 5, n. 1 (8 marzo 2022): 186–97. http://dx.doi.org/10.3390/j5010014.
Testo completoMartoglio, Pamela A., David W. Schiering, Matthew J. Smith e Daniel T. Smith. "Direct Monitoring of Combinatorial Chemistry Reactions by Infrared Microspectroscopy". Microscopy Today 4, n. 3 (aprile 1996): 22–24. http://dx.doi.org/10.1017/s1551929500067985.
Testo completoMutter, Fiona E., B. Kevin Park e Ian M. Copple. "Value of monitoring Nrf2 activity for the detection of chemical and oxidative stress". Biochemical Society Transactions 43, n. 4 (1 agosto 2015): 657–62. http://dx.doi.org/10.1042/bst20150044.
Testo completoJi, Haifeng. "(Invited) Reaction-Based Microcantilever Sensors". ECS Meeting Abstracts MA2024-01, n. 51 (9 agosto 2024): 2764. http://dx.doi.org/10.1149/ma2024-01512764mtgabs.
Testo completoAlessandrini, S., E. Ferrero e G. Belfiore. "A Lagrangian dispersion model with chemical reactions". International Journal of Environment and Pollution 44, n. 1/2/3/4 (2011): 182. http://dx.doi.org/10.1504/ijep.2011.038417.
Testo completoMohammad, Mahboob, Muhammad Tariq e Muhammad Tahir Soomro. "“Long-life” atom-free radical: Generation and reactions of bromine atom-free radical". Collection of Czechoslovak Chemical Communications 75, n. 11 (2010): 1061–74. http://dx.doi.org/10.1135/cccc2010066.
Testo completoViolet, Léo, Alexis Mifleur, Laurent Vanoye, Duc Hanh Nguyen, Alain Favre-Réguillon, Régis Philippe, Régis M. Gauvin e Pascal Fongarland. "Online monitoring by infrared spectroscopy using multivariate analysis – background theory and application to catalytic dehydrogenative coupling of butanol to butyl butyrate". Reaction Chemistry & Engineering 4, n. 5 (2019): 909–18. http://dx.doi.org/10.1039/c8re00238j.
Testo completoZhang, Haifeng, e Lianzhu Zhou. "Study on Regenerative Processing Performance of Chlorinated Polyethylene Based on Wireless Network and Artificial Intelligence Technology". Computational Intelligence and Neuroscience 2022 (19 agosto 2022): 1–8. http://dx.doi.org/10.1155/2022/3811320.
Testo completoChen, Xiaoyun, Kshitish A. Patankar e Matthew Larive. "Monitoring Polyurethane Foaming Reactions Using Near-Infrared Hyperspectral Imaging". Applied Spectroscopy 75, n. 1 (5 ottobre 2020): 46–56. http://dx.doi.org/10.1177/0003702820941877.
Testo completoFriedrich, D., Ch Kaul, G. Lindner, H. Faustmann e M. Münch. "Acoustic On-Line Monitoring of Chemical Reactions in Liquids with Integrated Temperature Compensation". Sensor Letters 9, n. 2 (1 aprile 2011): 714–16. http://dx.doi.org/10.1166/sl.2011.1599.
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