201
Views
36
CrossRef citations to date
0
Altmetric
Original Articles

DISTRIBUTION OF METHYL RED ON THE WATER–ORGANIC LIQUID INTERFACE IN A MICROCHANNEL

, , , , &
Pages 1421-1429 | Received 08 Mar 2001, Accepted 20 Mar 2001, Published online: 02 Feb 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Farshad Raji, Hadi Shayesteh & Ahmad Rahbar-Kelishami. (2022) Y-Y microfluidic polymer/salt aqueous two-phase system for optimization of dye extraction: Evaluation of channel geometry. Separation Science and Technology 57:15, pages 2471-2481.
Read now

Articles from other publishers (35)

Farshad Raji, Amir Kahani, Mohammadreza Sahabi, Ahmad Rahbar-kalishami & Luis Padrela. (2023) Investigating the effectiveness of the main channel in microfluidic liquid-liquid extraction process. International Communications in Heat and Mass Transfer 147, pages 106986.
Crossref
Arnav Mittal, Souryadeep Bhattacharyya, Matthew Marino, Tai-Ying Chen, Pierre Desir, Marianthi Ierapetritou & Dionisios G. Vlachos. (2023) Effect of Scale-Up on Mass Transfer and Flow Patterns in Liquid–Liquid Flows Using Experiments and Computations. Industrial & Engineering Chemistry Research 62:37, pages 15006-15017.
Crossref
Filipa A. Vicente, Igor Plazl, Sónia P. M. Ventura & Polona Žnidaršič-Plazl. (2020) Separation and purification of biomacromolecules based on microfluidics. Green Chemistry 22:14, pages 4391-4410.
Crossref
Pierre Desir, Tai-Ying Chen, Mauro Bracconi, Basudeb Saha, Matteo Maestri & Dionisios G. Vlachos. (2020) Experiments and computations of microfluidic liquid–liquid flow patterns. Reaction Chemistry & Engineering 5:1, pages 39-50.
Crossref
Stephen E. Bialkowski, Nelson G. C. Astrath & Mikhail A. Proskurnin. 2019. Photothermal Spectroscopy Methods. Photothermal Spectroscopy Methods 347 433 .
Jenifer Gómez-Pastora, Cristina González-Fernández, Marcos Fallanza, Eugenio Bringas & Inmaculada Ortiz. (2018) Flow patterns and mass transfer performance of miscible liquid-liquid flows in various microchannels: Numerical and experimental studies. Chemical Engineering Journal 344, pages 487-497.
Crossref
Natsuki Nakajima, Masumi Yamada, Shunta Kakegawa & Minoru Seki. (2016) Microfluidic System Enabling Multistep Tuning of Extraction Time Periods for Kinetic Analysis of Droplet-Based Liquid–Liquid Extraction. Analytical Chemistry 88:11, pages 5637-5643.
Crossref
Michal Alexovič, Burkhard Horstkotte, Petr Solich & Ján Sabo. (2016) Automation of static and dynamic non-dispersive liquid phase microextraction. Part 1: Approaches based on extractant drop-, plug-, film- and microflow-formation. Analytica Chimica Acta 906, pages 22-40.
Crossref
M. A. Proskurnin, D. S. Volkov, T. A. Gor’kova, S. N. Bendrysheva, A. P. Smirnova & D. A. Nedosekin. (2015) Advances in thermal lens spectrometry. Journal of Analytical Chemistry 70:3, pages 249-276.
Crossref
Frankie J. Rawson, Alison J. Downard & Keith H. Baronian. (2014) Electrochemical detection of intracellular and cell membrane redox systems in Saccharomyces cerevisiae. Scientific Reports 4:1.
Crossref
Davide Ciceri, Jilska M. Perera & Geoffrey W. Stevens. (2014) The use of microfluidic devices in solvent extraction. Journal of Chemical Technology & Biotechnology 89:6, pages 771-786.
Crossref
N. Assmann, A. Ładosz & P. Rudolf von Rohr. (2013) Continuous Micro Liquid‐Liquid Extraction. Chemical Engineering & Technology 36:6, pages 921-936.
Crossref
Davide Ciceri, Jilska M. Perera & Geoffrey W. Stevens. (2011) A study of molecular diffusion across a water/oil interface in a Y–Y shaped microfluidic device. Microfluidics and Nanofluidics 11:5, pages 593-600.
Crossref
Hella Logtenberg, Maria J. Lopez-Martinez, Ben L. Feringa, Wesley R. Browne & Elisabeth Verpoorte. (2011) Multiple flow profiles for two-phase flow in single microfluidic channels through site-selective channel coating. Lab on a Chip 11:12, pages 2030.
Crossref
Rui Hu, Xiaojun Feng, Pu Chen, Meng Fu, Hong Chen, Lin Guo & Bi-Feng Liu. (2011) Rapid, highly efficient extraction and purification of membrane proteins using a microfluidic continuous-flow based aqueous two-phase system. Journal of Chromatography A 1218:1, pages 171-177.
Crossref
Arata Aota & Takehiko Kitamori. 2010. Micro Systems and Devices for (Bio)chemical Processes. Micro Systems and Devices for (Bio)chemical Processes 1 36 .
Kishore K. R. Tetala, Jan W. Swarts, Bo Chen, Anja E. M. Janssen & Teris A. van Beek. (2009) A three-phase microfluidic chip for rapid sample clean-up of alkaloids from plant extracts. Lab on a Chip 9:14, pages 2085.
Crossref
John A. Rogers & Hong H. Lee. 2008. Unconventional Nanopatterning Techniques and Applications. Unconventional Nanopatterning Techniques and Applications 359 378 .
Noboru Kitamura, Kosei Ueno & Haeng-Boo Kim. (2008) Polymer Channel Chips as Versatile Tools in Microchemistry. Analytical Sciences 24:6, pages 701-710.
Crossref
Arata AotaTakehiko Kitamori. (2008) Solvent Extraction Using Multiphase Microflowsマイクロ多相流を利用する溶媒抽出法. BUNSEKI KAGAKU 57:4, pages 239-250.
Crossref
Yoshikuni Kikutani, Masaharu Ueno, Hideaki Hisamoto, Manabu Tokeshi & Takehiko Kitamori. (2005) Continuous‐Flow Chemical Processing in Three‐Dimensional Microchannel Network for On‐Chip Integration of Multiple Reactions in a Combinatorial Mode. QSAR & Combinatorial Science 24:6, pages 742-757.
Crossref
M. N. Slyadnev, V. A. Kazakov, M. V. Shcherbaeva, A. A. Ganeev, L. N. Moskvin & Yu. A. Zolotov. (2005) A detection system for microfluidic chips based on epifluorescence videomicroscopy and its analytical potentials. Journal of Analytical Chemistry 60:4, pages 317-324.
Crossref
Hideaki HISAMOTO. (2005) Development of Novel Chemical Sensing Systems Based on Microfluidic Devicesマイクロチップを用いる新規化学センシングシステムの開発. BUNSEKI KAGAKU 54:4, pages 267-278.
Crossref
Hideaki Hisamoto, Yuya Nakashima, Chihiro Kitamura, Shun-ichi Funano, Midori Yasuoka, Keisuke Morishima, Yoshikuni Kikutani, Takehiko Kitamori & Shigeru Terabe. (2004) Capillary-Assembled Microchip for Universal Integration of Various Chemical Functions onto a Single Microfluidic Device. Analytical Chemistry 76:11, pages 3222-3228.
Crossref
Manabu Tokeshi, Yoshikuni Kikutani, Akihide Hibara, Kiichi Sato, Hideaki Hisamoto & Takehiko Kitamori. (2003) Chemical processing on microchips for analysis, synthesis, and bioassay. ELECTROPHORESIS 24:21, pages 3583-3594.
Crossref
Petr Kuban, Jordan Berg & Purnedu K. Dasgupta. (2003) Vertically Stratified Flows in Microchannels. Computational Simulations and Applications to Solvent Extraction and Ion Exchange. Analytical Chemistry 75:14, pages 3549-3556.
Crossref
Kiichi Sato, Akihide Hibara, Manabu Tokeshi, Hideaki Hisamoto & Takehiko Kitamori. (2003) Microchip-based chemical and biochemical analysis systems. Advanced Drug Delivery Reviews 55:3, pages 379-391.
Crossref
Kiichi Sato, Akihide Hibara, Manabu Tokeshi, Hideaki Hisamoto & Takehiko Kitamori. (2003) Integration of Chemical and Biochemical Analysis Systems into a Glass Microchip. Analytical Sciences 19:1, pages 15-22.
Crossref
Hideaki Hisamoto, Takayuki Horiuchi, Akihide Hibara, Manabu Tokeshi & Takehiko Kitamori. (2003) Fundamental Study on the Segmented Flow Injection - Multiphase Flow Formation Towards Microchip-Based Multi-Ion Sensingマイクロ,ナノ領域の化学センシング  チップ内マルチイオンセンシングを目指したセグメントフロー  多相流形成の基礎検討. IEEJ Transactions on Sensors and Micromachines 123:4, pages 124-127.
Crossref
Hideaki Hisamoto, Yuki Shimizu, Kenji Uchiyama, Manabu Tokeshi, Yoshikuni Kikutani, Akihide Hibara & Takehiko Kitamori. (2002) Chemicofunctional Membrane for Integrated Chemical Processes on a Microchip. Analytical Chemistry 75:2, pages 350-354.
Crossref
Yoshikuni Kikutani, Akihide Hibara, Hideaki Hisamoto, Manabu Tokeshi & Takehiko Kitamori. 2003. Lab-on-a-Chip. Lab-on-a-Chip 285 307 .
Petr Kuban, Purnendu K. Dasgupta & Kavin A. Morris. (2002) Microscale Continuous Ion Exchanger. Analytical Chemistry 74:21, pages 5667-5675.
Crossref
K Yunus, C.B Marks, A.C Fisher, D.W.E Allsopp, T.J Ryan, R.A.W Dryfe, S.S Hill, E.P.L Roberts & C.M Brennan. (2002) Hydrodynamic voltammetry in microreactors: multiphase flow. Electrochemistry Communications 4:7, pages 579-583.
Crossref
Manabu Tokeshi, Tomoko Minagawa, Kenji Uchiyama, Akihide Hibara, Kiichi Sato, Hideaki Hisamoto & Takehiko Kitamori. (2002) Continuous-Flow Chemical Processing on a Microchip by Combining Microunit Operations and a Multiphase Flow Network. Analytical Chemistry 74:7, pages 1565-1571.
Crossref
T. Kitamori. (2002) Integrated micro chemical systems and life science. Integrated micro chemical systems and life science.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.