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Langmuir : the ACS Journal of Surfaces and Colloids|April 29, 2014
Liesegang patterns engineered by a chemical reaction assisted by complex formationHideki Nabika, Mami Sato, Kei Unoura
Physical Chemistry Chemical Physics : PCCP|November 14, 2012
Microchannel-induced change of chemical wave propagation dynamics: importance of ratio between the inlet and the channel sizesHideki Nabika, Mami Sato, Kei Unoura
The Journal of Physical Chemistry. B|May 12, 2016
One-Directional Fluidic Flow Induced by Chemical Wave Propagation in a MicrochannelMiyu Arai, Kazuhiro Takahashi, Mika Hattori, et al.
The Journal of Physical Chemistry. B|July 2, 2015
Propagation Behaviors of an Acid Wavefront Through a Microchannel JunctionHideki Nabika, Takahiko Hasegawa, Kei Unoura
The Journal of Physical Chemistry. B|March 11, 2017
Liesegang Mechanism with a Gradual Phase TransitionYushiro Shimizu, Jun Matsui, Kei Unoura, et al.
The Journal of Physical Chemistry. B|September 3, 2020
Programmable Design of Self-Organized Patterns through a Precipitation ReactionMasaki Itatani, Qing Fang, Kei Unoura, et al.
Physical Chemistry Chemical Physics : PCCP|September 11, 2020
Interplay between two radical species in the formation of periodic patterns during a polymerization reactionDaisuke Sato, Masaki Itatani, Jun Matsui, et al.
The Journal of Physical Chemistry Letters|May 6, 2021
Promoted Aggregation of Aβ on Lipid Bilayers in an Open Flowing SystemAkane Iida, Mitsuhiro Abe, Miona Nochi, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|August 28, 2018
Role of Electrolyte in Liesegang Pattern FormationMasayo Matsue, Masaki Itatani, Qing Fang, et al.
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