"Microfluidic Behavior of Ternary Mixed Carrier Solvents Based on the Tube Radial Distribution in Triple-Branched Microchannels in a Microchip"
written by Naoya Jinno, Masahiko Hashimoto, Kazuhiko Tsukagoshi,
published by Journal of Analytical Sciences, Methods and Instrumentation, Vol.2 No.2, 2012
has been cited by the following article(s):
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[1] Microflow Extraction Using a Microchip Incorporating Microchannels Based on the Tube Radial Distribution Phenomenon
Solvent Extraction Research and Development, Japan, 2016
[2] Tube Radial Distribution Flow Separation in a Microchannel Using an Ionic Liquid Aqueous Two-Phase System Based on Phase Separation Multi-Phase Flow
Analytical Sciences, 2016
[3] Investigation of specific microfluidic flow with two-phase separation mixed solvent solutions and application to flow technology
Journal of Flow Injection Analysis, 2015
[4] OPEN-TUBULAR CAPILLARY CHROMATORAPHY BASED ON TUBE RADIAL DISTRIBUTION OF THE WATER-ACETONITRILE CONTAINING SODIUM CHLORIDE MIXTURE CARRIER SOLVENTS
Journal of Liquid Chromatography & Related Technologies, 2015
[5] Fundamental Research and Application of the Specific Fluidic Behavior of Mixed Solvents in a Microspace
Analytical Sciences, 2014
[6] OPEN-TUBULAR CAPILLARY CHROMATORAPHY BASED ON TUBE RADIAL DISTRIBUTION OF THE WATER-ACETONITRILE CONTAINING SODIUM CHLORIDE MIXT
Journal of Liquid Chromatography & Related Technologies just-accepted, 2014
[7] 管径方向分配現象の解明と機能発現
分析化学, 2013
[8] Specific Distribution Behavior of a Ternary Mixture of Solvents Fed into Bent and Wound Microchannels in Microchips
Analytical Sciences, 2013
[9] Michrochip chromatography using an open‐tubular microchannel and a ternary water–ACN–ethyl acetate mixture carrier solution
Journal of separation science?, Wiley Online Library, 2013
[10] Specific microfluidic behavior of ternary mixed carrier solvents of water–acetonitrile–ethyl acetate in open-tubular capillary
?Analytical Methods, 2012
[11] Tube Radial Distribution of Solvents Observed in an Aqueous Ionic Liquid Mixed Solution Delivered into a Capillary Tube
Analytical Sciences, 2012