Fluidic grooves on doped-ice surface as size-tunable channels A Inagawa, M Harada, T Okada Scientific Reports 5 (1), 17308, 2015 | 40 | 2015 |
Viscosity of freeze-concentrated solution confined in micro/nanospace surrounded by ice A Inagawa, T Ishikawa, T Kusunoki, S Ishizaka, M Harada, T Otsuka, ... The Journal of Physical Chemistry C 121 (22), 12321-12328, 2017 | 29 | 2017 |
Reproducing absorption spectra of pH indicators from RGB values of microscopic images A Inagawa, A Sasaki, N Uehara Talanta 216, 120952, 2020 | 18 | 2020 |
Charging of the ice/solution interface by deprotonation of dangling bonds, ion adsorption, and ion uptake in an ice crystal as revealed by zeta potential determination A Inagawa, M Harada, T Okada The Journal of Physical Chemistry C 123 (10), 6062-6069, 2019 | 18 | 2019 |
Zeta potential determination with a microchannel fabricated in solidified solvents A Inagawa, M Fukuyama, A Hibara, M Harada, T Okada Journal of colloid and interface science 532, 231-235, 2018 | 17 | 2018 |
Dataset for reproducing absorption spectra of methyl orange from the RGB values of microscopic images A Inagawa, K Saito, A Sasaki, N Uehara Data in Brief 31, 105998, 2020 | 12 | 2020 |
Size-tunable micro-/nanofluidic channels fabricated by freezing aqueous sucrose S Fujino, A Inagawa, M Harada, T Okada ACS omega 4 (8), 13570-13576, 2019 | 12 | 2019 |
Geometrical pH mapping of Microfluids by principal-component-analysis-based xyz-spectrum conversion method A Inagawa, K Saito, M Fukuyama, M Numata, N Uehara Analytica Chimica Acta 1182, 338952, 2021 | 11 | 2021 |
Electrophoresis in ice surface grooves for probing protein affinity to a specific plane of ice crystal A Inagawa, Y Okada, T Okada Talanta 183, 345-351, 2018 | 10 | 2018 |
Development of colorimetric analysis with smartphones-captured images based on RGB-spectrum conversion methods A Inagawa, N Uehara Bunseki Kagaku 69 (12), 693-706, 2020 | 9 | 2020 |
Total protein assay by PCA-based RGB-spectrum conversion methods with smartphone-acquired digital images A Inagawa, M Kimura, N Uehara Analytical Sciences 38 (6), 869-880, 2022 | 8 | 2022 |
Linear momentum of a microfluid realizes an anisotropic reaction at the ends of a supramolecular nanofiber C Kanzaki, S Matoba, A Inagawa, G Fukuhara, T Okada, T Narushima, ... Bulletin of the Chemical Society of Japan 94 (2), 579-589, 2021 | 8 | 2021 |
Spontaneous growth of gold nanoclusters to form gold nanoparticles in the presence of high molecular weight poly (ethylene glycol) N Uehara, N Sonoda, T Iwamatsu, C Haneishi, A Inagawa Colloids and Surfaces A: Physicochemical and Engineering Aspects 585, 124113, 2020 | 8 | 2020 |
Interaction between antifreeze protein and ice crystal facet evaluated by ice-channel electrophoretic measurements of threshold electric field strength A Inagawa, N Uehara, T Okada Analytica chimica acta 1110, 122-130, 2020 | 7 | 2020 |
Sulfated steelmaking slags as Se (IV) adsorbents: effects of preparation conditions on adsorption performance K Hanada, S Watanabe, A Inagawa, N Uehara ISIJ International 61 (1), 506-512, 2021 | 6 | 2021 |
Proton‐Gradient‐Driven Self‐Assembly of Porphyrin and In Situ Dynamic Analysis in a Microflow Platform C Kanzaki, A Inagawa, G Fukuhara, T Okada, M Numata ChemSystemsChem 2 (5), e2000006, 2020 | 6 | 2020 |
Manipulation of aggregation-induced emission of thermoresponsive fluorescent polymers having Au (I)–S groups for a fluorescent chemosensor N Uehara, Y Masubuchi, A Inagawa Colloids and Surfaces A: Physicochemical and Engineering Aspects 618, 126459, 2021 | 5 | 2021 |
In situ Visualization of Ferrous Ions Dissolved from Pure Iron Wire into Thin Frozen Aqueous Solution Films by Combination of Microscopy and Image Processing. A Inagawa, M Maeda, N Uehara Sensors & Materials 34, 2022 | 4 | 2022 |
Charge-selective aggregation behavior of thermoresponsive polyelectrolytes having low charge density in aqueous solutions of organic counterions A Yasuda, A Inagawa, N Uehara Langmuir 39 (5), 1730-1739, 2023 | 3 | 2023 |
Sample Enrichment for Microchip Electrophoresis by Extraction Induced by Phase Separation of Aqueous Ionic Liquids A Inagawa, N Masuda, T Nikata, N Uehara Chemistry Letters 49 (8), 974-977, 2020 | 3 | 2020 |