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Chromatography on self-assembled carbon nanotubes
Chutarat Saridara,
Somenath Mitra
Chemistry and Environmental Science
Otto H. York Center for Environmental Engineering and Science
Research output
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Contribution to journal
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Article
›
peer-review
129
Scopus citations
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Dive into the research topics of 'Chromatography on self-assembled carbon nanotubes'. Together they form a unique fingerprint.
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Keyphrases
Carbon Nanotubes
100%
Chromatography
100%
Stationary Phase
40%
Chemical Vapor Deposition
40%
First Application
20%
High Temperature
20%
Liquid-liquid Phase Separation
20%
Deposition Conditions
20%
Open-tubular
20%
High Thermal Stability
20%
Carbon Nanotube Film
20%
Capillary Tube
20%
High Separation Efficiency
20%
Nanoscale Interactions
20%
Separation Media
20%
Long Tube
20%
Selectivity Tuning
20%
High Mechanical Stability
20%
Gas Chromatography Column
20%
Gas-phase Separations
20%
Chromatographic Analysis
20%
High-resolution Separation
20%
Engineering
Carbon Nanotube
100%
Chromatography
100%
High Resolution
33%
Chemical Vapor Deposition
33%
Vapor Deposition
33%
Stationary Phase
33%
Nanoscale
16%
Gas-Phase
16%
Liquid Phase
16%
Phase Separation
16%
Deposition Condition
16%
Gas Chromatography
16%
Mechanical Stability
16%
Chromatography Column
16%
Capillary Tube
16%
Separation Performance
16%
Chemical Engineering
Carbon Nanotube
100%
Chromatography
100%
Chemical Vapor Deposition
33%
Vapor Deposition
33%
Gas Chromatography
16%
Phase Separation
16%
Chromatography Column
16%
Material Science
Carbon Nanotube
100%
Chromatography
100%
Film
33%
Chemical Vapor Deposition
33%
Gas Chromatography
16%
Mechanical Stability
16%
Chromatography Column
16%
Chemistry
Carbon Nanotube
100%
Chemical Vapor Deposition
33%
Liquid Film
33%
Gas Chromatography
16%
Capillary Tube
16%
Phase Separation
16%
Chromatography Column
16%
Chromatographic Analysis
16%
Resolution (Separation)
16%