Parents
Sign in to add mentorJerry Y.S. Lin | post-doc | 2005-2008 | University of Hiroshima | |
(Post-Dr from ASU) |
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Publications
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Soma K, Moriyama N, Nagasawa H, et al. (2024) Design of Silica-Cobalt Composite Microporous Structures with Dispersed Carbon Particles for Highly Permselective Gas Separation Membranes. Acs Applied Materials & Interfaces |
Moriyama N, Takenaka R, Nagasawa H, et al. (2024) Physicochemical Treatments of Graphene Oxide to Improve Water Vapor/Gas Separation Performance of Supported Laminar Membranes: Sonication and HO Oxidation. Acs Applied Materials & Interfaces. 16: 8086-8097 |
Mohd Ibrahim S, Sawamura KI, Mishina K, et al. (2023) Bis(triethoxysilyl)ethane (BTESE)-Organosilica Membranes for HO/DMF Separation in Reverse Osmosis (RO): Evaluation and Correlation of Subnanopores via Nanopermporometry (NPP), Modified Gas Translation (mGT) and RO Performance. Membranes. 14 |
Takenaka R, Moriyama N, Nagasawa H, et al. (2023) Permeation Properties of Water Vapor through Graphene Oxide/Polymer Substrate Composite Membranes. Membranes. 13 |
Lawal SO, Kanezashi M. (2023) A Brief Overview of the Microstructural Engineering of Inorganic-Organic Composite Membranes Derived from Organic Chelating Ligands. Membranes. 13 |
Lawal SO, Nagasawa H, Tsuru T, et al. (2022) Hydrothermal Stability of Hydrogen-Selective Carbon-Ceramic Membranes Derived from Polybenzoxazine-Modified Silica-Zirconia. Membranes. 13 |
Rana I, Nagaoka T, Nagasawa H, et al. (2022) The Effect of C/Si Ratio and Fluorine Doping on the Gas Permeation Properties of Pendant-Type and Bridged-Type Organosilica Membranes. Membranes. 12 |
Anggarini U, Yu L, Nagasawa H, et al. (2022) Metal-Induced Aminosilica Rigidity Improves Highly Permeable Microporous Membranes via Different Types of Pendant Precursors. Acs Applied Materials & Interfaces |
Aoyama S, Nagasawa H, Kanezashi M, et al. (2022) Nanogradient Hydrophilic/Hydrophobic Organosilica Membranes Developed by Atmospheric-Pressure Plasma to Enhance Pervaporation Performance. Acs Nano |
Zhang D, Kanezashi M, Tsuru T, et al. (2022) Development of Highly Water-Permeable Robust PSQ-Based RO Membranes by Introducing Hydroxyethylurea-Based Hydrophilic Water Channels. Acs Applied Materials & Interfaces |