论文成果
- [21] 宋鑫忠. High-density zwitterionic polymer brushes exhibit robust lubrication properties and high antithrombotic efficacy in blood-contacting medical devices. Acta Biomaterialia, 2024.
- [22] 宋鑫忠. Design, preparation, and characterization of lubricating polymer brushes for biomedical applications. Acta Biomaterialia, 175, 76-105, 2023.
- [23] . Comparison of biodegradable chitosan-based composite films reinforced by different micron-sized plant fibers for food packaging. materials letters, 2023.
- [24] . Antibacterial and hemostatic polyvinyl alcohol/microcrystalline cellulose reinforced sodium alginate breathable dressing containing Euphorbia humifusa extract based on microfluidic spinning technology. international journal of biological macromolecules, 2023.
- [25] Li, Zhongwu. Modulation of water transport in carbon nanotubes by local charges. CARBON, 202, 83, 2023.
- [26] 马龙. Theoretical Prediction of Diffusive Ionic Current through Nanopores under Salt Gradients. PHYSICS OF FLUIDS, 9, 2023.
- [27] . Antibacterial and hemostatic polyvinyl alcohol/microcrystalline cellulose reinforced sodium alginate breathable dressing containing Euphorbia humifusa extract based on microfluidic spinning technology. International Journal of Biological Macromolecules, 2023.
- [28] . Comparison of biodegradable chitosan-based composite films reinforced by different micron-sized plant fibers for food packaging. materials letters, 2023.
- [29] 裘英华. Effective Charged Exterior Surfaces for Enhanced Ionic Diffusion through Nanopores under Salt Gradients. Journal of Physical Chemistry Letters, 5669, 2022.
- [30] 裘英华. Influences of Divalent Ions in Natural Seawater/River Water on Nanofluidic Osmotic Energy Generation. LANGMUIR, 42, 12935, 2022.
- [31] 裘英华. Influences of Electroosmotic Flow on Ionic Current through Nanopores: a Comprehensive Understanding. PHYSICS OF FLUIDS, 11, 112010, 2022.
- [32] 裘英华. Characterization of the surface charge property and porosityof track-etched polymer membranes. ELECTROPHORESIS, 2022.
- [33] 裘英华. Modulation of water transport in carbon nanotubes by local charges. Carbon, 83, 2023.
- [34] 裘英华. Effect of Non-Specific Ion Adsorption and Parallel Faradaic Reactions on the Nucleation of H2 Nanobubbles. Journal of the Electrochemical Society, 10, 106515, 2022.
- [35] 裘英华. Effective Charged Exterior Surfaces for Enhanced Ionic Diffusion through Nanopores under Salt Gradients. Journal of Physical Chemistry Letters, 13, 5669, 2022.
- [36] 裘英华. Field-Enhanced Water Transport in Sub-Nanometer Graphene Nanopores. Desalination, 2022.
- [37] 裘英华. High-performance nanofluidic osmotic power generation enabled by exterior surface charges under the natural salt gradient. JOURNAL OF POWER SOURCES, 229637, 2021.
- [38] 裘英华. Electrochemical Generation of Individual Nanobubbles Comprising H2, D2, and HD. LANGMUIR, 6073, 2020.
- [39] 裘英华. Modulation of Ionic Current Rectification in Ultrashort Conical Nanopores. ANALYTICAL CHEMISTRY, 16188, 2020.
- [40] 马龙. Significantly Enhanced Performance of Nanofluidic Osmotic Power Generation by Slipping Surfaces of Nanopores. The Journal of Physical Chemestry C, 125, 14195, 2021.