Добірка наукової літератури з теми "Isomer identification"
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Статті в журналах з теми "Isomer identification"
Zhang, Bolong, Jegadesan Subbiah, David J. Jones, and Wallace Wing Ho Wong. "Separation and identification of indene–C70 bisadduct isomers." Beilstein Journal of Organic Chemistry 12 (May 6, 2016): 903–11. http://dx.doi.org/10.3762/bjoc.12.88.
Повний текст джерелаYeston, J. S. "CHEMISTRY: Isomer Identification." Science 309, no. 5743 (September 23, 2005): 1969a. http://dx.doi.org/10.1126/science.309.5743.1969a.
Повний текст джерелаGosar, Amit, Tabrez Shaikh, and Atharva Sindwani. "Fourier Transform Infrared (FTIR) Spectroscopic Analysis of Amino Acid Serine for its Chiral Identification." Journal of Pharmaceutical Quality Assurance and Quality Control 4, no. 1 (April 14, 2022): 1–4. http://dx.doi.org/10.46610/jqaqc.2022.v04i01.001.
Повний текст джерелаDelmonte, Pierluigi, Martin P. Yurawecz, Magdi M. Mossoba, Cristina Cruz-Hernandez, and John K. G. Kramer. "Improved Identification of Conjugated Linoleic Acid Isomers Using Silver-Ion HPLC Separations." Journal of AOAC INTERNATIONAL 87, no. 2 (March 1, 2004): 563–68. http://dx.doi.org/10.1093/jaoac/87.2.563.
Повний текст джерелаYurawecz, Martin P., Jo-Yun T. Chen, and Bartholomew J. Puma. "Identification of cis- and trans-1,1,2,3,4-PentachIoro-4-[1-methylethoxy]-l,3-butadiene Residues in Mississippi River Fish." Journal of AOAC INTERNATIONAL 69, no. 4 (July 1, 1986): 586–91. http://dx.doi.org/10.1093/jaoac/69.4.586.
Повний текст джерелаSobhi, Hany F., Xinjie Zhao, Peter Plomgaard, Miriam Hoene, Jakob S. Hansen, Benedikt Karus, Andreas M. Niess, et al. "Identification and regulation of the xenometabolite derivatives cis- and trans-3,4-methylene-heptanoylcarnitine in plasma and skeletal muscle of exercising humans." American Journal of Physiology-Endocrinology and Metabolism 318, no. 5 (May 1, 2020): E701—E709. http://dx.doi.org/10.1152/ajpendo.00510.2019.
Повний текст джерелаGal, Joseph. "New Single-Isomer Compounds on the Horizon." CNS Spectrums 7, S1 (April 2002): 45–54. http://dx.doi.org/10.1017/s1092852900028601.
Повний текст джерелаBaumgard, Lance H., Benjamin A. Corl, Debra A. Dwyer, A. Saebø, and Dale E. Bauman. "Identification of the conjugated linoleic acid isomer that inhibits milk fat synthesis." American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 278, no. 1 (January 1, 2000): R179—R184. http://dx.doi.org/10.1152/ajpregu.2000.278.1.r179.
Повний текст джерелаCorvini, P. F. X., R. Vinken, G. Hommes, M. Mundt, J. Hollender, R. Meesters, H. Fr Schröder, and B. Schmidt. "Microbial degradation of a single branched isomer of nonylphenol by Sphingomonas TTNP3." Water Science and Technology 50, no. 5 (September 1, 2004): 189–94. http://dx.doi.org/10.2166/wst.2004.0327.
Повний текст джерелаO'Neil, Constance A., Steven J. Schwartz та George L. Catignani. "Comparison of Liquid Chromatographic Methods for Determination of Cis-Trans Isomers of β-Carotene". Journal of AOAC INTERNATIONAL 74, № 1 (1 січня 1991): 36–42. http://dx.doi.org/10.1093/jaoac/74.1.36.
Повний текст джерелаДисертації з теми "Isomer identification"
Ji, Xiaolong. "Hydrogen storage in dibenzyltoluene via catalytic hydrogenation and its conveyance towards acetone through transfer hydrogenation." Electronic Thesis or Diss., Lyon 1, 2024. http://www.theses.fr/2024LYO10294.
Повний текст джерелаThe focus of this thesis is to gain a deeper understanding about the hydrogen storage inside Liquid Organic Hydrogen Carriers (LOHCs) via a) heterogeneous catalytic hydrogenation and b) an alternative to the utilization of the stored hydrogen, which is the transfer hydrogenation reaction coupling the LOHCs with acetone. Hydrogen can be efficiently stored in LOHCs through hydrogenation and later on restored to its molecular form by the dehydrogenation of the H2-rich compounds. The commercial mixture of dibenzyltoluene and benzylbenzyltoluene (H0-DBT/BBT) isomers, of which the hydrogenated form is the perhydro-dibenzyltoluene and perhydro-benzylbenzyltoluene (H18-DBT/BBT), could be valued for its high storage capacity, large liquid phase temperature range and commercial availability. But a profound insight into the isomers in the mixture, their behavior during hydrogenation and the kinetics of H2 storage are not well described in the literature, which are crucial for the reactor design and process development. Furthermore, the high endothermicity of the hydrogen release reaction requires substantial external energy input and thus hinders the global energy efficiency of the process. An athermic transfer hydrogenation reaction between H18-DBT/BBT and acetone, which could take place at much lower temperatures compared to dehydrogenation, is a potential solution to this problem. This reaction forms isopropanol as product which could be used in proton exchange membrane fuel cells. This thesis was carried out in 4 phases, of which the first was the experimental study of the hydrogenation of H0-DBT/BBT using Pt-based catalysts in a stirred tank reactor under different conditions, including temperature, pressure, stirring speed, catalyst-to-substrate ratio, reactant concentration and catalyst particle size, to elucidate the important aspects of the reaction including probable transfer limitations. The precise quantification of the reaction products was realized by the monitoring of H2 consumption and liquid analysis. In the second phase of the project, an analytical methodology for the isomer mixture regrouping GC/MS and MS spectrometry supported by reaction mass balance was successfully established. Fragmentation and rearrangement mechanisms provided important information for the identification of isomers. The attribution of the majority of the isomers present in the mixture was achieved, which was further confirmed by organic synthesis, flash chromatography and hydrogenation of synthesized pure H0-DBT/BBT isomers. During the third phase of this thesis, rigorous reactor modeling and intrinsic kinetic modeling were carried out based on the results obtained from the previous two phases both on a global scale and on each isomer, taking physical phenomenon, molecule adsorption and catalyst deactivation into account. These models were in great agreement with the experimental results and allowed the estimation of key parameters including mass transfer coefficients, rate constants, activation energies and adsorption coefficients. During the last phase of the project, the transfer hydrogenation reaction between H18-DBT/BBT and acetone was studied under various conditions in another stirred tank reactor designed for the quantification of a complex reaction of which the components had very different physico-chemical properties. The results allowed to elucidate mass transfer effects, thermodynamic limitation, side reactions and reaction mechanism with Pt/SiO2 and Pt/C catalysts, from which a suitable process concept was proposed as well
Sundqvist, Kristina. "Sources of dioxins and other POPs to the marine environment : Identification and apportionment using pattern analysis and receptor modeling." Doctoral thesis, Umeå universitet, Kemi, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-22266.
Повний текст джерелаStoppin-Mellet, Virginie. "Identification et caracterisation fonctionnelle de la nucleation des microtubules chez les plantes superieures : mise au point d'un modele in vitro sur noyaux isoles." Université Louis Pasteur (Strasbourg) (1971-2008), 1994. http://www.theses.fr/1994STR13174.
Повний текст джерелаGRATI, M'HAMED. "Identification du gene otof, responsable de la surdite isolee recessive dfnb9 chez l'homme, et caracterisation de la proteine correspondante, l'otoferline, durant le developpement cochleaire chez la souris." Paris 7, 2001. http://www.theses.fr/2001PA077028.
Повний текст джерелаHALLOU, ABDESLEM. "Etude par spectroscopie ir de la diffusion et de la photodissociation du chlorure de nitrosyle isole en matrice. Identification et photochimie de son complexe avec la molecule d'eau." Paris 6, 1998. http://www.theses.fr/1998PA066158.
Повний текст джерелаAKONO, ZIBI YVES. "Pneumocystis carinii : caracterisations physicochimiques, immunochimiques, localisation ultrastructurale des antigenes constitutifs et identification des antigenes solubles libres dans la pneumocystose du lapin. relation avec les antigenes de p. carinii isoles chez l'homme et le rat." Clermont-Ferrand 2, 1992. http://www.theses.fr/1992CLF21364.
Повний текст джерелаChen, Tsan Ming, and 陳燦明. "Simultaneous separation and identification of geometrical and positional carotenoid isomers." Thesis, 1993. http://ndltd.ncl.edu.tw/handle/88612951426085477487.
Повний текст джерелаYan, Tsun-Sheng, and 顏再生. "Identification of iturin A isomers from Bacillus amyloliquefaciens isolated in Taiwan." Thesis, 2007. http://ndltd.ncl.edu.tw/handle/10677761812497309660.
Повний текст джерела朝陽科技大學
應用化學系碩士班
95
Abstract Among 11 local Baccillus spp. , the isolate 74501 with the highest yield of iturin A was chosen as the target of this study. The isolate 74501 was identified as Bacillus amyloliqufaciens(Ba-74501) by Biolog identification system. Results showed that after cultured in PSB medium for 6 days, and further assayed by HPLC, the isolate Ba-74501 was found to have at least 13 metabolic compounds. In vitro antifungal tests against Rhizoctonia solani with 13 compounds was performed. It was observed that compound 9 exhibited antifungal activity. Furthermore, TLC and ninhydrin colorization analysis confirmed that compound 9 was in absence of free amino group. The LC Q-TOF MS/MS analysis demonstrated that the molecular weight of compound 9 was 1042 m/z and proven to be iturin A2, Results revealed that isolate Ba-74501 also contained other antibiotic substances such as surfactin and fengycin.
chang, sandy, and 張瓅心. "Synthesis, Identification, and Opto-electronic Property of Pyrene Derivative Isomers for Organic Light Emitting Diode Material." Thesis, 2010. http://ndltd.ncl.edu.tw/handle/11521271929238805601.
Повний текст джерела中原大學
化學研究所
98
In this study, pyrene was used to manufacture the blue light guest emitter for organic light emitting diode (OLED) elements. Bromine was first reacted with pyrene to form its 1,6- and 1,8-isomer. Then, different aromatic groups to increase its molecular volume, molecular weight, and molecular steric hindrance that can reduce the accumulation of molecules and decrease the interaction between molecules in a heavily doped material substituted bromine in the pyrene molecule. The blue OLEDs synthesized in this study are N1,N1,N6,N6-tetrakis(3,4-dimethylphenyl) pyrene-1,6- diamine (symboled as D1-1,6),N1,N1,N6,N6-tetrakis(3,4-dimethylphenyl)pyrene-1,8- diamine (symboled as D1-1,8), (N1,N6-di(naphthalenelyl)-N1,N6-diphenyl 1,6-diamine (symboled as D2-1,6), and N1,N8-di(naphthalenelyl)-N1,N8- diphenyl pyrene-1,8- diamine (symboled as D2-1,8). The 1,6- and 1,8-pyrene derivative isomers can be separated by their different properties of solubility and sublimation. High-performance liquid chromatography (HPLC), nuclear magnetic resonance (NMR), and mass spectrometry (MS) were used for monitoring the synthesis and identifying the structure of pyrene derivative isomers. The fluorescence property and the thermal stability with the melting point (Tm) and the degradation point (Td) of these blue light emitting materials were also studied in this work. Isomers of D1-1,6 and D1-1,8 and isomers of D2-1,6 and D2-1,8 were fabricated individually to make different types of blue light emitting thin film elements by the process of thermal evaporation and deposition, then, they were tested at the luminance of 5000 cd cm-2. With the same guest light emitting material and the same volume percentage of dopant (4%), the current efficiency of the four blue light emitting materials D1-1,6, D1-1,8, D2-1,6, and D2-1,8 is 7.5 cd A-1, 7.7 cd A-1, 8.1 cd A-1and 8.5 cd A-1, respectively. Because the molecular structures of 1,8-isomers are asymmetry and their steric hindrance is stronger, the light emitting efficiency of 1,8-isomers is better than that of the 1,6-isomers. In addition, the steric hindramce between the molecules of D2 compounds is stronger than that of D1 compounds so that the light emitting efficiency of D2 compounds is better than that of D1 compounds. Although the luminescent color of the fabricated elements from the four pyrene derivative isomers cannot reach a deep blue color, they are still valuable in the production of mono-chromatic OLED products.
Ku, Min-Yen, and 古旻諺. "Hemicarceplex Formation Allows Ready Identification of the Isomers of the Metallofullerene Sc3N@C80 Using 1H and 13C NMR Spectroscopy." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/84045054381687127612.
Повний текст джерела國立臺灣大學
化學研究所
105
A cyclotriveratrylene-based molecular cage forms hemicarceplexes that significantly increase the solubility of commercially available Sc3N@C80 in CDCl3. When incarcerated within the molecular cage, the two structural isomers of this metallofullerene, Sc3N@D5h-C80 and Sc3N@Ih-C80, displayed characteristic signals in both 1H and 13C NMR spectra, allowing direct identification of each isomer without the need to enrich the sample with 13C atoms.
Частини книг з теми "Isomer identification"
Harvey, David J. "Use of Ion Mobility for the Structural Identification of Glycans." In Glycoprotein Analysis, 163–219. Royal Society of Chemistry, 2024. http://dx.doi.org/10.1039/9781839166433-00163.
Повний текст джерелаBAUER, R. W., J. A. BECKER, E. A. HENRY, and K. E. SALE. "SPECTROMETRY FOR SPIN AND SHAPE ISOMER IDENTIFICATION." In Gamma-Ray Lasers, 637–50. Elsevier, 1988. http://dx.doi.org/10.1016/b978-0-08-037015-6.50004-3.
Повний текст джерелаE. Olajide, Orobola, Kimberly Y. Kartowikromo, and Ahmed M. Hamid. "Ion Mobility Mass Spectrometry: Instrumentation and Applications." In Mass Spectrometry - Recent Advances and Key Aspects [Working Title]. IntechOpen, 2023. http://dx.doi.org/10.5772/intechopen.1002767.
Повний текст джерелаReichelt, Katharina V., Susanne Paetz, Karen M. Swanepoel, Jakob P. Ley, and Gerhard E. Krammer. "Identification of a Sweet Taste Enhancing Vanillin Isomer from Mondia whitei via Sensory-Guided Analysis." In Flavour Science, 573–76. Elsevier, 2014. http://dx.doi.org/10.1016/b978-0-12-398549-1.00105-7.
Повний текст джерелаThurman, E. Michael. "Analysis of terpenes in hemp (Cannabis sativa) by gas chromatography/mass spectrometry: Isomer identification analysis." In Analysis of Cannabis, 197–233. Elsevier, 2020. http://dx.doi.org/10.1016/bs.coac.2020.04.013.
Повний текст джерелаPuchowicz, Dorota, and Malgorzata Cieslak. "Raman Spectroscopy in the Analysis of Textile Structures." In Recent Developments in Atomic Force Microscopy and Raman Spectroscopy for Materials Characterization [Working Title]. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.99731.
Повний текст джерелаClaeys, M., Q. M. Li, H. Van Den Heuvel, and L. Dillen. "Mass spectrometric studies on flavonoid glycosides." In Applications of Modern Mass Spectrometry in Plant Science Research, 182–94. Oxford University PressOxford, 1996. http://dx.doi.org/10.1093/oso/9780198549659.003.0012.
Повний текст джерелаDas, Prasanta. "Continuous Scan and Repetitive Mode FT-IR Spectroscopy and Its Application in Isomeric Identification, Conformational Analysis and Photochemistry." In Infrared Spectroscopy - Perspectives and Applications [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.106448.
Повний текст джерелаKhoo, Kay-Hooi. "O-GalNAc Glycomics by LC–MS/MS." In Glycoprotein Analysis, 279–99. Royal Society of Chemistry, 2024. http://dx.doi.org/10.1039/9781839166433-00279.
Повний текст джерелаТези доповідей конференцій з теми "Isomer identification"
Wei, Na, Enada Archibold, Grace Jairo, and Heather Kuiper. "Development of a method for separation of geometric isomers of alpha-linolenic acid in human plasma by silver Ion HPLC and GC-NCI-MS." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/fvyw5862.
Повний текст джерелаIsaac, Giorgis, Hernando Olivos, and Robert Plumb. "Lipid separation and structural characterization using travelling wave cyclic ion mobility." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/snxj7960.
Повний текст джерелаBartlome, R., and M. W. Sigrist. "Laser-based isomer identification in the vapor phase." In 2007 European Conference on Lasers and Electro-Optics and the International Quantum Electronics Conference. IEEE, 2007. http://dx.doi.org/10.1109/cleoe-iqec.2007.4386405.
Повний текст джерелаLiu, Zhiqian, and Simone Rochfort. "Current challenges in phospholipid analysis in bovine milk." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/taft4078.
Повний текст джерелаFAHLANDER, C., R. HOISCHEN, D. RUDOLPH, M. HELLSTRÖM, S. PIETRI, ZS PODOLYÁK, P. H. REGAN, et al. "ISOSPIN SYMMETRY AND PROTON DECAY: IDENTIFICATION OF THE 10+ ISOMER IN 54Ni." In Proceedings of the 9th International Spring Seminar on Nuclear Physics. WORLD SCIENTIFIC, 2008. http://dx.doi.org/10.1142/9789812779038_0008.
Повний текст джерелаKim, Jong-Suk, Eun-Mi Noh, Jeong-Mi Kim, Young-Rae Lee, Hyun Jo Youn, Sung Hoo Jung, Soo Mi Kim, and Jinny Park. "Abstract 4218: Guggulsterone controls isomer-specifically TPA-induced MMP-9 expressions of MCF-7 cells: Identification of the cooperative combination of guggulsterone isomers in inhibition of breast cancer invasiveness." In Proceedings: AACR 102nd Annual Meeting 2011‐‐ Apr 2‐6, 2011; Orlando, FL. American Association for Cancer Research, 2011. http://dx.doi.org/10.1158/1538-7445.am2011-4218.
Повний текст джерелаWang, C. H., L. P. Gao, and X. P. Wang. "Identification of Pentostain Isomers." In 2015 Seventh International Conference on Measuring Technology and Mechatronics Automation (ICMTMA). IEEE, 2015. http://dx.doi.org/10.1109/icmtma.2015.136.
Повний текст джерелаLiu, Dianting, Zongying Ou, Guoqiang Wang, Shungang Hua, and Tieming Su. "Face Recognition Using Hierarchical Isomap." In 2007 IEEE Workshop on Automatic Identification Advanced Technologies. IEEE, 2007. http://dx.doi.org/10.1109/autoid.2007.380601.
Повний текст джерелаGenevey, J., J. A. Pinston, H. Faust, T. Friedrichs, M. Gross, F. Ibrahim, T. Larqué та S. Oberstedt. "Identification of μs isomers in fission products". У EXOTIC NUCLEI AND ATOMIC MASSES. ASCE, 1998. http://dx.doi.org/10.1063/1.57273.
Повний текст джерелаGu, Rui-jun, Wen-bo Xu, and Bin Ye. "IMD-Isomap for Data Visualization and Classification." In 2007 International Workshop on Anti-Counterfeiting, Security and Identification. IEEE, 2007. http://dx.doi.org/10.1109/iwasid.2007.373716.
Повний текст джерела