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Ulrich Tallarek |
Philipps University, Marburg, Germany |
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Reconstruction of hromatographic media, their morphological analysis, and its correlation with separation efficiency | |
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Hongzhen Lian |
Modern Analysis Center, Nanjing University, China |
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A Novel Evaluation Method for Extrapolated Retention Factor in Determination of n- Octanol/Water Partition Coefficient of Halogenated Organic Pollutants by RP-HPLC | |
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George L. Reid |
Pfizer Global Research & Development |
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Chromatographic Method Development in an Analytical Quality by Design (AQbD) Framework | |
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Georges Guiochon |
University of Tennessee, Knoxville,USA |
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Recent progress in column technology | |
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Frantisek Svec |
University of California at Berkeley, USA |
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Porous polymer monoliths and nanotechnology: A combination enabling the preparation of highly efficient columns for small molecules | |
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Nobuo Tanaka |
GL Sciences, Inc., and Kyoto Institute of Technology, Kyoto, Japan |
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High-performance LC columns, sub 2-micron particles, core-shell particles, and monolithic columns | |
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Milton Lee |
Brigham Young University, USA |
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Monolithic Column Technology for Capillary Size Exclusion Chromatography | |
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Toyohide Takeuchi |
Gifu University, Japan |
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Exotic stationary phases for the separation of ions in liquid chromatography | |
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Gert Desmet |
Vrije University Brussel, Belgium |
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HPLC-on-a-chip: Microfabricated Pillar Array Columns | |
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Hanfa Zou |
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China |
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Preparation of hybrid monoliths for efficient separation of biological samples | |
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Xiuping Yan |
Nankai University, China |
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Metal-Organic Frameworks for Analytical Separation | |
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C. Bor Fuh |
Department of Applied Chemistry, National Chi Nan University,Taiwan |
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Biochemical Analysis of Magnetic Immunoassay Using Functional Particles In Thin Channels | |
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Bingcheng Lin |
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China | |
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Microfluidics: key platform for the next generation of chromatography based separation and analytical
chemistry/biochemistry | ||
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Steven Cohen |
Waters Corporation, USA |
|
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Developing a high performance microfluidic UHPLC system designed for life science applications |
| |
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Qun Fang |
Zhejiang University, China | |
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Droplet-based Microfluidic Systems with ESI-MS Detection | ||
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Martin Gilar |
Waters Corporation, Milford, USA | |
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Promise and limitations of microfluidic liquid chromatography | ||
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Jianhua Qin |
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China | |
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Bioinspired microfluidic approach for cell-based drug evaluation | ||
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Paul Haddad |
University of Tasmania, Tasmania, Australia |
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Extending the Scope of Ion Chromatography | |
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Yan Zhu |
Zhejiang University, China |
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Determination of trace ions in complex matrices by clyling-column-switching ion chromatography | |
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Koji Otsuka |
Kyoto University, Kyoto, Japan |
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Highly sensitive separations by microscale electrophoresis using on-line sample concentration techniques | |
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Bezhan Chankvetadze |
Tbilisi State University, Republic of Georgia |
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Recent studies for understanding enantiomer separation mechanisms in capillary electrophoresis | |
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Gerhard Scriba |
Friedrich-Schiller-University Jena, Jena, Germany |
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Capillary Electrophoresis-Based Assays of Sirtuin Enzymes | |
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Huwei Liu |
Peking University, China |
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High-sensitive Detection of Recombinant Human Erythropoietin by Capillary Electrophoresis Using NanoOrange Precolumn Labeling and Laser-Induced Fluorescence Detection | |
|
Zhining Xia |
Chongqing University, China |
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The Capillary Electrocheromatography Based on Cellar Interaction and Biomolecular Affinity | |
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Chao Yan |
College of Pharmacy, Shanghai Jiaotong University, China |
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Capillary isoelectric focusing coupled with pressurized capillary electrochromatography for peptide and
protein mapping | |
|
Jicun Ren |
Shanghai Jiaotong University, China |
|
Studies on bioconjugation and interaction of quantum dots with biomacromolecules by capillary
electrophoresis | |
|
Guonan Chen |
Fuzhou University, China |
|
Separation and detection of bioactive compounds using CE-MS | |
|
Hailin Wang |
Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, China |
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Capillary Electrophoresis-Laser Induced fluorescence polarization analysis for mapping the protein-aptamer interaction at the single nucleotide levels | |
|
Huan-Tsung Chang |
Department of Chemistry, National Taiwan University, Taiwan |
|
Study of Conformational Dynamics of DNA by CE-LIF | |
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Shou-Mei Wu |
School of Pharmacy, KAOHSIUNG MEDICAL UNIVERSITY, Taiwan |
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On-line stacking capillary electrophoresis for determination of abused drugs | |
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Janusz Pawliszyn |
University of Waterloo, Waterloo, Ontario |
|
Solid Phase Microextraction in Metabolomics | |
|
Jinming Lin |
Department of Chemistry, Tsinghua University, China |
|
Development of microextraction technique for high-performance liquid chromatography to analysis of
additives in complex | |
|
Shengxiang Jiang |
Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, China |
|
New materials and preparation technologies in solid-phase microextraction | |
|
Gongke Li |
Sun Yat-sen Univeristy, China |
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Layer-by-Layer Fabrication of Chemical-Bonded Graphene Coating for Solid-Phase Microextraction | |
|
Cheing Tong Yan |
Department of Occupational Safety and Health, Chung-Shan Medical University, Taiwan |
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Used Micro Dialysis Couple with Chromatographic Analysis Method apply to the Occupational Workplace Monitor | |
|
Peter Schoenmakers |
University of Amsterdam, The Netherlands |
|
Towards (multi-dimensional) HYPERformance liquid chromatography | |
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Gérard Hopfgartner |
University of Geneva, Geneva, Switzerland |
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Hyphenation of liquid chromatography with mass spectrometry: multidimensional approaches for
qual/quan strategies | |
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Philip Marriott |
Royal Melbourne Institute of Technology University, Melbourne, Australia |
|
Comprehensive 2D Liquid Chromatography (LCxLC) Analysis of Nonylphenol Polyethoxylates by Using
HILICxRPLC Methodology | |
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Dwight Stoll |
Gustavus Adolphus College, USA |
|
Comprehensive two-dimensional liquidn chromatography | |
|
Yi Chen |
Institute of Chemistry, Chinese Academy of Sciences, China |
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Coupling of surface plasmon resonance imaging to separation techniques | |
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Xinxiang Zhang |
Peking University, China |
|
Glycan Analysis by CE-HSPS-MS | |
|
Jentaie Shiea |
Department of Chemistry, National Sun Yat-Sen University, Taiwan |
|
Rotating Electrospray Ionization for Ultra-High Flow HPLC/MS | |
|
Jan van der Greef |
Leiden University, Netherlands |
|
Connecting the dots, from system measurements to understanding biology | |
|
David Hage |
University of Nebraska–Lincoln, USA |
|
Biomedical Applications of High-Performance Affinity Chromatography: Recent Advances and New
Developments | |
|
Xiangmin Zhang |
Department of Chemistry, Fudan University, China |
|
Fluorescence labeling protein quantification and identification by high performance liquid chromatography and tandem mass spectrometry | |
|
T. Hankemeier |
Leiden University, The Netherlands |
|
Metabolomics: Emerging New Technology Platforms | |
|
Ryo Taguchi |
The University of Tokyo, Japan |
|
Lipidomics | |
|
Xianlin Han |
Sanford-Burnham Medical Research Institute at Lake Nona, Orlando, USA |
|
Identification of thousands of individual lipid molecular species without an HPLC separation | |
|
Robert Plumb |
Imperial College, London, UK |
|
Application of Capillary Scale LC/MS/MS in A Micro Fabricated Device to DMPK and Metabonomics
Studies | |
|
Mei Wang |
TNO, Quality of Life, Leiden, The Netherlands |
|
A Systems biology based approach towards Personalized Health &Herbal medicine quality control | |
|
Zongwei Cai |
Department of Chemistry, Hong Kong Baptist University |
|
Metabolomics for the investigation on TCDD toxicity and associated diseases: A new bioanalytical
technique for the old environmental toxicant | |
|
Yasushi Ishihama |
Kyoto University, Japan |
|
One-shot proteomics and phosphoproteomics with wider dynamic range by meter-long capillary monolithic columns | |
|
Lihua Zhang |
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China |
|
Monolithic materials for sample preparation and separation in proteome study | |
|
Yoshinobu Baba |
Nagoya University, Nagoya 464-8603, JAPAN |
|
Nanobiodevice for single biomolecular and cellular analysis towards cancer diagnosis and in vivo imaging for stem cell therapy | |
|
Kenneth J. Shea |
University of California, Irvine, USA |
|
Plastic Antibodies. Recent Advances in Synthetic Receptors for Biological Macromolecules | |
|
Christopher J. Welch |
Merck & Co., New Jersey, USA |
|
Recent developments in the use of chromatography to support pharmaceutical discovery and
development | |
|
Oliver J. Schmitz |
University of Wuppertal, Wuppertal, Germany |
|
Quality control of TCMs with comprehensive two-dimensional separation techniques (LCxLC and
GcxGC). | |
|
Xinmiao Liang |
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, China |
|
Chromatographic Methodology and Technology for Developing TCM | |
|
Jun Dai |
Analysis and Testing Center, Jiangnan University, China |
|
Study on the methodology of chromatographic fingerprints of polysaccharides from Ganoderma lucidum
spores and the relationship of profile-immunocompetence effect | |
|
Hans-Gerd Janssen |
Unilever Research Vlaardingen, Analytical Sciences, and University of Amsterdam. the Netherlands |
|
NOVEL AND ESTABLISHED APPLICATIONS OF LIQUID CHROMATOGRAPHY IN FOOD ANALYSIS | |
|
Xindu Geng |
Institute of Modern Separation Science, Northwest University, China |
|
Fast fingerprint and determination of intact proteins in milk on locate by liquid chromatography | |
|
Wolfgang Lindner |
University of Vienna, Vienna, Austria |
|
Direct enantiomer separations | |
|
David Lloyd |
Bristol-Myers Squibb, New York, USA |
|
Chromatographic Analysis of Functionalized Polyethylene Glycols Used for Protein PEGylation | |
|
Lei Ye |
Lund University, Lund, Sweden |
|
New molecularly imprinted polymer formats for analytical separation and sensing | |