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【分享】50 Years Journal of Chromatography【搜索无重复】
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纪年Journal of Chromatography出版50周年的文章,对于色谱同仁了解色谱的发展很有帮助。 In 1958 the first volume of Journal of Chromatography was published: the first international journal dedicated to chromatography and electrophoresis, founded by Professor Michael Lederer. Hard work from the Editor, Elsevier, as well as many scientists resulted in an impressive first volume, published in 1958 and which consisted of more than 560 pages including contributions from top scientists in the field. Probably the most famous scientist who published an article in the first volume of Journal of Chromatography is James Lovelock, who invented the electron-capture detector. However, he is mostly known for his Gaia hypothesis, an ecological hypothesis that proposes that living and nonliving parts of the earth are viewed as a complex interacting system that can be thought of as a single organism。 |
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1. Editorial Board Page CO1 50 YEARS JOURNAL OF CHROMATOGRAPHY 2. 50 Years Journal of Chromatography Pages 1-2 3. Editorial on “Ionic liquids in separation techniques” by A. Berthod, M.J. Ruiz-Angel and S. Carda-Broch Page 5 John G. Dorsey 4. Ionic liquids in separation techniques Pages 6-18 A. Berthod, M.J. Ruiz-Ángel, S. Carda-Broch 5. Editorial on “Molecular dynamic theories in chromatography” by A. Felinger Page 19 Peter J. Schoenmakers 6. Molecular dynamic theories in chromatography Pages 20-41 Attila Felinger 7. Editorial on “Extending the molecular application range of gas chromatography” by E. Kaal and H.-G. Janssen Page 42 Marja-Liisa Riekkola 8. Extending the molecular application range of gas chromatography Pages 43-60 Erwin Kaal, Hans-Gerd Janssen 9. Editorial on “Polymethacrylate monoliths for preparative and industrial separation of biomolecular assemblies” by A. Jungbauer and R. Hahn Page 61 Roger W. Giese 10. Polymethacrylate monoliths for preparative and industrial separation of biomolecular assemblies Pages 62-79 Alois Jungbauer, Rainer Hahn 11. Editorial on “Non-covalent capillary coatings for protein separations in capillary electrophoresis” by C.A. Lucy, A.M. MacDonald and M.D. Gulcev Page 80 Paul R. Haddad 12. Non-covalent capillary coatings for protein separations in capillary electrophoresis Pages 81-105 Charles A. Lucy, Amy M. MacDonald, Makedonka D. Gulcev 13. Editorial on “Peak capacity in unidimensional chromatography” by U.D. Neue Page 106 Nobuo Tanaka 14. Peak capacity in unidimensional chromatography Pages 107-130 Uwe Dieter Neue 15. Editorial on “Liquid-phase microextraction with porous hollow fibers, a miniaturized and highly flexible format for liquid–liquid extraction” by S. Pedersen-Bjergaard and K.E. Rasmussen Page 131 Colin F. Poole 16. Liquid-phase microextraction with porous hollow fibers, a miniaturized and highly flexible format for liquid–liquid extraction Pages 132-142 Stig Pedersen-Bjergaard, Knut Einar Rasmussen 17. Editorial on “Contributions of capillary electrophoresis to neuroscience” by T. Lapainis and J.V. Sweedler Page 143 Shigeru Terabe 18. Contributions of capillary electrophoresis to neuroscience Pages 144-158 Theodore Lapainis, Jonathan V. Sweedler 19. Editorial on “Gas chromatographic high-throughput screening techniques in catalysis” by O. Trapp Page 159 Volker Schurig 20. Gas chromatographic high-throughput screening techniques in catalysis Pages 160-190 Oliver Trapp 21. Sample preparation Pages 191-219 Yi Chen, Zhenpeng Guo, Xiaoyu Wang, Changgui Qiu 22. Headspace sampling of the volatile fraction of vegetable matrices Pages 220-233 Carlo Bicchi, Chiara Cordero, Erica Liberto, Barbara Sgorbini, Patrizia Rubiolo 23. Passive sampling in environmental analysis Pages 234-253 Suresh Seethapathy, Tadeusz Górecki, Xiaojing Li 24. Separation characteristics of wall-coated open-tubular columns for gas chromatography Pages 254-280 Colin F. Poole, Salwa K. Poole 25. Less common applications of monoliths: III. Gas chromatography Pages 281-295 Frantisek Svec, Alexander A. Kurganov 26. Photo-ionisation mass spectrometry as detection method for gas chromatography: Optical selectivity and multidimensional comprehensive separations Pages 296-308 Ralf Zimmermann, Werner Welthagen, Thomas Gröger 27. Apparent and true enantioselectivity of single- and binary-selector chiral stationary phases in gas chromatography Pages 309-322 Pavel A. Levkin, Volker Schurig 28. Quantification in comprehensive two-dimensional gas chromatography and a model of quantification based on selected summed modulated peaks Pages 323-340 Omar Amador-Muñoz, Philip J. Marriott 29. Recent advancements in comprehensive two-dimensional separations with chemometrics Pages 341-352 Karisa M. Pierce, Jamin C. Hoggard, Rachel E. Mohler, Robert E. Synovec 30. Comprehensive multidimensional liquid chromatography: Theory and applications Pages 353-368 Paola Dugo, Francesco Cacciola, Tiina Kumm, Giovanni Dugo, Luigi Mondello 31. Recent development of monolithic stationary phases with emphasis on microscale chromatographic separation Pages 369-392 Ren’an Wu, Lianghai Hu, Fangjun Wang, Mingliang Ye, Hanfa Zou 32. Particle packed columns and monolithic columns in high-performance liquid chromatography-comparison and critical appraisal Pages 393-415 Klaus K. Unger, Romas Skudas, Michael M. Schulte 33. Developments in the use and fabrication of organic monolithic phases for use with high-performance liquid chromatography and capillary electrochromatography Pages 416-440 Norman W. Smith, Zhengjin Jiang 34. Superheated water chromatography – A green technology for the future Pages 441-455 Roger M. Smith 35. Recent developments and emerging directions in ion chromatography Pages 456-473 Paul R. Haddad, Pavel N. Nesterenko, Wolfgang Buchberger 36. Separation efficiencies in hydrophilic interaction chromatography Pages 474-503 Tohru Ikegami, Kouki Tomomatsu, Hirotaka Takubo, Kanta Horie, Nobuo Tanaka 37. On-line sample preconcentration in capillary electrophoresis: Fundamentals and applications Pages 504-541 Steven L. Simpson Jr., Joselito P. Quirino, Shigeru Terabe 38. Electrophoretic separations on microfluidic chips Pages 542-559 Dapeng Wu, Jianhua Qin, Bingcheng Lin 39. Topographic structures and chromatographic supports in microfluidic separation devices Pages 560-572 Mauro De Pra, Wim Th. Kok, Peter J. Schoenmakers |
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