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Journal articles on the topic 'Ion-pair chromatography'

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1

MAKINO, Keisuke, Hiroaki OZAKI, Tetsufumi MATSUMOTO, Tamio TAKEUCHI, Toshikazu FUKUI, and Hiroyuki HATANO. "Ion-pair chromatography of oligodeoxyribonucleotides." NIPPON KAGAKU KAISHI, no. 7 (1986): 1043–45. http://dx.doi.org/10.1246/nikkashi.1986.1043.

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2

Schill, Göran. "High-performance ion-pair chromatography." Journal of Biochemical and Biophysical Methods 18, no. 4 (1989): 249–70. http://dx.doi.org/10.1016/0165-022x(89)90035-3.

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3

Nomura, Noboru, Kayoko Yamaguchi, and Minoru Hara. "Ion-Pair Liquid Chromatography of Alkylanilines." Journal of Liquid Chromatography 14, no. 3 (1991): 491–501. http://dx.doi.org/10.1080/01483919108049265.

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4

Kord, Alireza S., and Morteza G. Khaledi. "Chromatographic characteristics of surfactant-mediated separations: micellar liquid chromatography vs ion pair chromatography." Analytical Chemistry 64, no. 17 (1992): 1901–7. http://dx.doi.org/10.1021/ac00041a027.

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5

Marchais, Sandrine, Erik S. Vermeulen, Graeme Semple, Staffan Sundell, and Håkan V. Wikström. "Ion-pair formation of hydroquinine by chromatography." Analytica Chimica Acta 426, no. 1 (2001): 85–93. http://dx.doi.org/10.1016/s0003-2670(00)01172-7.

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6

Bartha, Ákos, and Gyula Vigh. "Studies in reversed-phase ion-pair chromatography." Journal of Chromatography A 395 (June 1987): 503–9. http://dx.doi.org/10.1016/s0021-9673(01)94138-x.

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7

Makino, Keisuke, Hiroaki Ozaki, Tetsufumi Matsumoto, Hiromasa Imaishi, Tamio Takeuchi, and Toshikazu Fukui. "Reversed-phase ion-pair chromatography of oligodeoxyribonucleotides." Journal of Chromatography A 400 (July 1987): 271–77. http://dx.doi.org/10.1016/s0021-9673(01)81621-6.

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8

Webster, Amy, and Nicole Pamme. "Book Review: Ion-Pair Chromatography and Related Techniques." Bioanalysis 2, no. 7 (2010): 1179–80. http://dx.doi.org/10.4155/bio.10.50.

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9

Smith, B., and P. Warwick. "Analysis of fulvic acids by ion-pair chromatography." Journal of Chromatography A 547 (June 1991): 203–10. http://dx.doi.org/10.1016/s0021-9673(01)88644-1.

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10

Dreux, Michel, Michel Lafosse, Petronille Agbo-Hazoume, Badia Chaabane-Doumandji, Michel Gibert, and Yves Levi. "Determination of inorganic anions by ion-pair chromatography." Journal of Chromatography A 354 (January 1986): 119–28. http://dx.doi.org/10.1016/s0021-9673(01)87016-3.

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11

Stefansson, Morgan, and Douglas Westerlund. "Reversed-phase ion-pair liquid chromatography of glucuronides." Journal of Chromatography A 499 (January 1990): 411–21. http://dx.doi.org/10.1016/s0021-9673(00)96988-7.

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12

Sokolowski, Anders. "Zone formation ion-pair reversed-phase liquid chromatography." Journal of Chromatography A 384 (January 1987): 13–24. http://dx.doi.org/10.1016/s0021-9673(01)94658-8.

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13

Bear, G. R. "Surfactant characterization by revered-phase ion pair chromatography." Journal of Chromatography A 371 (December 1986): 387–402. http://dx.doi.org/10.1016/s0021-9673(01)94722-3.

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14

Buszewski, Bogusław. "Teresa Cecchi: Ion-pair chromatography and related techniques." Analytical and Bioanalytical Chemistry 403, no. 5 (2012): 1199–200. http://dx.doi.org/10.1007/s00216-012-5945-3.

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15

Pettersson, C., and M. Josefsson. "Chiral separation of aminoalcohols by ion-pair chromatography." Chromatographia 21, no. 6 (1986): 321–26. http://dx.doi.org/10.1007/bf02311603.

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16

Castro, Rocio, Encarnación Moyano, and Maria Teresa Galceran. "Determination of Chlormequat in Fruit Samples by Liquid Chromatography-Electrospray-Mass Spectrometry/Mass Spectrometry." Journal of AOAC INTERNATIONAL 84, no. 6 (2001): 1903–8. http://dx.doi.org/10.1093/jaoac/84.6.1903.

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Abstract An ion-pair liquid chromatography-mass spectrometry/mass spectrometry method was developed for the determination of chlormequat in fruit samples. A solid-phase extraction cleanup procedure with C18 cartridges was used. Sample preparation was simple and the achieved detection limit (0.03 mg/kg) and quantitation limit (0.08 mg/kg) were below the maximum residue levels legislated by the European Union. The chromatographic separation was performed by using a C8 column and heptafluorobutyric acid as ion pair reagent. The detection was conducted with an electrospray source and an ion trap a
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17

Mochizuki, Emiko, Takao Yamamoto, Masakazu Horie, Yoshitomo Ikai, and Hlroyuki Nakazawa. "Simultaneous Determination of Alliin and Allicin in Allium Plants and Their Products by Liquid Chromatography." Journal of AOAC INTERNATIONAL 80, no. 5 (1997): 1052–56. http://dx.doi.org/10.1093/jaoac/80.5.1052.

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Abstract Alliin and allicin in garlic and their products are determined simultaneously by ion-pair reversedphase liquid chromatography (LC) with diode array UV detection. Alliin is extracted from fresh garlic, purified by ion-exchange chromatography, and appliedas external standard. Allicin is generated enzymatically from alliin, confirmed by LC, and applied as external standard. Compounds areextracted from samples with water and chromatographed on an octadecylsilane column with gradient elution from 0.01 M phosphate buffer (pH 2.5) with 5 mM heptanesulfonic acid (A) to 0.01 M phosphate buffer
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18

Lindgren, K., and N. Rodopoulos. "Determination of vanillylmandelic acid with ion-pair chromatography and fluorescence detection." Clinical Chemistry 32, no. 4 (1986): 693–96. http://dx.doi.org/10.1093/clinchem/32.4.693.

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Abstract We describe a chromatographic procedure for sensitive (2.0 mumol/L), specific quantification of vanillylmandelic acid (VMA) in urine with iso-VMA as an internal standard. After rapid extraction from urine, the VMA is determined by isocratic reversed-phase ion-pair chromatography on a bonded C8 column and detection of the native fluorescence on excitation at 285 nm. The fluorescence signal is quite dependent on the pH of the mobile phase. Results by the method vary linearly with VMA concentration up to 320 mumol/L and correlate well (r = 0.9880) with those obtained by conventional ultr
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19

Sirotkin, Roman G., Elena V. Elipasheva, Alexander V. Knyazev, and Viktoria A. Bobrova. "Determination of tetrafluoroborate in wastewaters by ion chromatography after ion pair liquid-liquid dispersive microextraction." Analytical Methods in Environmental Chemistry Journal 5, no. 04 (2022): 77–86. http://dx.doi.org/10.24200/amecj.v5.i04.214.

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The ion chromatographic method was developed to determine tetrafluoroborate ion (BF4-) in different types of water using ion pair liquid-liquid dispersive microextraction. Tetrafluoroborate was extracted into an organic phase (1,2-dichloroethane) as an ion pair with a tetrabutylammonium cation (TBA+). The most complete formation of [(ТBА+)(BF4-)] was observed at ion-pair reagent concentration of at least 5 mmol L-1 (C(BF4-) ≤ 1mg L-1). Ultrasonic irradiation was used to disperse the extractant. The achieved concentration factor (K) was 29±3, and the degree of extraction (R) was 50±5%. The limi
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20

Shalaby, A., Zs Budvári-Bárány, and Gy Szász. "Reversed-Phase Ion-Pair Chromatography of Nitrogen-Bridged Compounds." Journal of Liquid Chromatography 8, no. 6 (1985): 1071–91. http://dx.doi.org/10.1080/01483918508067129.

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21

Shayman, James A., and Florence S. Barcelon. "Ion-pair chromatography of inositol polyphosphates with N-methylimipramine." Journal of Chromatography B: Biomedical Sciences and Applications 528 (January 1990): 143–54. http://dx.doi.org/10.1016/s0378-4347(00)82369-5.

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22

Campbell, Thomas D., Rio Febrian, Holly E. Kleinschmidt, Kevin A. Smith, and Paul J. Bracher. "Quantitative Analysis of Glycine Oligomerization by Ion-Pair Chromatography." ACS Omega 4, no. 7 (2019): 12745–52. http://dx.doi.org/10.1021/acsomega.9b01492.

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23

Fornstedt, T., D. Westerlund, and A. Sokolowski. "Studies on system peaks in ion-pair adsorption chromatography." Journal of Chromatography A 535 (December 1990): 93–110. http://dx.doi.org/10.1016/s0021-9673(01)88937-8.

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24

Patel, H. B., J. F. Stobaugh, and C. M. Riley. "Reversed-phase ion-pair liquid chromatography of the angiotensins." Journal of Chromatography A 536 (January 1991): 357–70. http://dx.doi.org/10.1016/s0021-9673(01)89270-0.

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25

Majcherczyk, A., and A. Hüttermann. "Size-exclusion chromatography of lignin as ion-pair complex." Journal of Chromatography A 764, no. 2 (1997): 183–91. http://dx.doi.org/10.1016/s0021-9673(96)00909-0.

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26

LaCourse, William R., Warren A. Jackson, and Dennis C. Johnson. "Pulsed amperometric detection of alkanolamines following ion-pair chromatography." Analytical Chemistry 61, no. 22 (1989): 2466–71. http://dx.doi.org/10.1021/ac00197a003.

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27

Fransson, Bengt. "Reversed-phase ion-pair chromatography of basic, hydrophobic peptides." Journal of Chromatography A 361 (January 1986): 161–67. http://dx.doi.org/10.1016/s0021-9673(01)86903-x.

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28

Rabin, Steven B., and David M. Stanbury. "Separation and determination of polythionates by ion-pair chromatography." Analytical Chemistry 57, no. 6 (1985): 1130–32. http://dx.doi.org/10.1021/ac00283a038.

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29

Eriksson, Stig, Gunnar Glad, Per-Åke Pernemalm, and Elisabeth Westman. "Separation of DNA restriction fragments by ion-pair chromatography." Journal of Chromatography A 359 (January 1986): 265–74. http://dx.doi.org/10.1016/0021-9673(86)80080-2.

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30

Lu, Peichang, Hanfa Zou, and Yukui Zhang. "The retention equation in reversed-phase ion-pair chromatography." Mikrochimica Acta 102, no. 1-3 (1990): 35–53. http://dx.doi.org/10.1007/bf01244287.

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31

Ohki, A., J. Okamoto, K. Naka, and S. Maeda. "Ion-pair chromatography of dianionic species by dionium reagents." Chromatographia 32, no. 1-2 (1991): 73–78. http://dx.doi.org/10.1007/bf02262471.

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32

Fornstedt, T., D. Westerlund, and A. Sokolowski. "Studies on system peaks in ion-pair adsorption chromatography." Journal of Chromatography A 506 (May 1990): 61–74. http://dx.doi.org/10.1016/s0021-9673(01)91567-5.

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33

Sokolowski, Anders. "Zone formation in ion-pair reversed-phase liquid chromatography." Journal of Chromatography A 384 (January 1987): 1–12. http://dx.doi.org/10.1016/s0021-9673(01)94657-6.

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34

Wahlund, Karl-Gustav. "Ion-Pair chromatography, theory and biological and pharmaceutical applications." Analytical Biochemistry 150, no. 1 (1985): 249–50. http://dx.doi.org/10.1016/0003-2697(85)90468-3.

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35

Bartha, Ákos, and Jan Ståhlberg. "Electrostatic retention model of reversed-phase ion-pair chromatography." Journal of Chromatography A 668, no. 2 (1994): 255–84. http://dx.doi.org/10.1016/0021-9673(94)80116-9.

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36

Berzas-Nevado, J. J., C. Guiberteau-Cabanillas, and A. M. Contento-Salcedo. "Separation and Determination of Dyes by Ion-Pair Chromatography." Journal of Liquid Chromatography & Related Technologies 20, no. 18 (1997): 3073–88. http://dx.doi.org/10.1080/10826079708006582.

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37

Cecchi, T., and P. Passamonti. "Retention mechanism for ion-pair chromatography with chaotropic reagents." Journal of Chromatography A 1216, no. 10 (2009): 1789–97. http://dx.doi.org/10.1016/j.chroma.2008.10.031.

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38

Swiderski, P. M., E. L. Bertrand, and B. E. Kaplan. "Polystyrene Reverse-Phase Ion-Pair Chromatography of Chimeric Ribozymes." Analytical Biochemistry 216, no. 1 (1994): 83–88. http://dx.doi.org/10.1006/abio.1994.1011.

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39

Ruane, R. J., I. D. Wilson, and J. A. Troke. "Normal- and reversed-phase ion-pair thin-layer chromatography with bifunctional (bolaform) bis(trimethylammonium) ion-pair reagents." Journal of Chromatography A 368 (January 1986): 168–73. http://dx.doi.org/10.1016/s0021-9673(00)91059-8.

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40

Kilanowska, Anna, Łukasz Nuckowski, and Sylwia Studzińska. "Studying in vitro metabolism of the first and second generation of antisense oligonucleotides with the use of ultra-high-performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry." Analytical and Bioanalytical Chemistry 412, no. 27 (2020): 7453–67. http://dx.doi.org/10.1007/s00216-020-02878-0.

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Abstract The aim of the present investigation was the analysis and identification of antisense oligonucleotide metabolism products after incubation with human liver microsomes regarding four different oligonucleotide modifications. Separation and detection methods based on the use of liquid chromatography coupled with quadrupole time-of-flight mass spectrometry were developed for this purpose. Firstly, the optimization of mass spectrometer parameters was done to select those which ensure the highest possible sensitivity of oligonucleotide analysis. This step was conducted for two chromatograph
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41

Gemperline, Erin, Kurt Laha, Cameron O. Scarlett, Robert A. Pearce, and Lingjun Li. "Measurement of NMDA receptor antagonist, CPP, in mouse plasma and brain tissue following systemic administration using ion-pair LC-MS/MS." Anal. Methods 6, no. 16 (2014): 6389–96. http://dx.doi.org/10.1039/c4ay01168f.

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42

Sarzanini, Corrado, Giovanni Sacchero, Maurizio Aceto, Ornella Abollino, and Edoardo Mentasti. "Ion-pair reversed-phase high-performance liquid chromatography for trace metal preconcentration followed by ion-interaction chromatography." Journal of Chromatography A 640, no. 1-2 (1993): 127–34. http://dx.doi.org/10.1016/0021-9673(93)80174-7.

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43

Mu, Lingli, Feifan Xie, Sanwang Li, and Peng Yu. "Determination of Strong Acidic Drugs in Biological Matrices: A Review of Separation Methods." Chromatography Research International 2014 (September 29, 2014): 1–10. http://dx.doi.org/10.1155/2014/469562.

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Strong acidic drugs are a class of chemical compounds that normally have high hydrophilicity and large negative charges, such as organophosphatic compounds and organosulphonic compounds. This review focuses on sample preparation and separation methods for this group of compounds in biological matrices in recent years. A wide range of separation techniques, especially chromatographic method, are presented and critically discussed, which include liquid chromatography (e.g., ion-pair and ion-exchange chromatography), capillary electrophoresis (CE), and other types. Due to the extremely low concen
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44

Nwokeoji, Alison O., Sandip Kumar, Peter M. Kilby, David E. Portwood, Jamie K. Hobbs, and Mark J. Dickman. "Analysis of long dsRNA produced in vitro and in vivo using atomic force microscopy in conjunction with ion-pair reverse-phase HPLC." Analyst 144, no. 16 (2019): 4985–94. http://dx.doi.org/10.1039/c9an00954j.

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45

Fichtner, S., F. Th Lange, W. Schmidt, and H. J. Brauch. "Determination of aromatic sulfonates in the river Elbe by on-line ion-pair extraction and ion-pair chromatography." Fresenius' Journal of Analytical Chemistry 353, no. 1 (1995): 57–63. http://dx.doi.org/10.1007/bf00322890.

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46

Chen, Jian-Ge, Stephen G. Weber, Laura L. Glavina, and Frederick F. Cantwell. "Electrical double-layer models of ion-modified (ion-pair) reversed-phase liquid chromatography." Journal of Chromatography A 656, no. 1-2 (1993): 549–76. http://dx.doi.org/10.1016/0021-9673(93)80819-t.

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47

Amran, Muhammad Bachri, A. Sentosa Panggabean, and Buchari Buchari. "Ion-pair reversed-phase chromatography for speciation of organotin compounds." Annales de Toxicologie Analytique 22, no. 3 (2010): 129–34. http://dx.doi.org/10.1051/ata/2010014.

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48

Shalaby, A., Zs Budvári-Bárány, and Gy Szász. "Ion-Pair Chromatography of Nitrogen-Bridged Compounds on Silica Gel." Journal of Liquid Chromatography 8, no. 6 (1985): 1093–107. http://dx.doi.org/10.1080/01483918508067130.

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49

Abidi, S. L., T. L. Mounts, and K. A. Rennick. "Reversed-Phase Ion-Pair High-Performance Liquid Chromatography of Phosphatidylinositols." Journal of Liquid Chromatography 14, no. 3 (1991): 573–88. http://dx.doi.org/10.1080/01483919108049271.

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50

Misztal, G. "THIN-LAYER REVERSED-PHASE ION-PAIR CHROMATOGRAPHY OF SOME CEPHALOSPORINS." Journal of Liquid Chromatography & Related Technologies 22, no. 10 (1999): 1589–98. http://dx.doi.org/10.1081/jlc-100101754.

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