Article
Publicly Available
Frontmatter
Published/Copyright:
January 29, 2025
Published Online: 2025-01-29
Published in Print: 2025-02-25
©2025 Walter de Gruyter GmbH, Berlin/Boston
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- Frontmatter
- Material Properties
- Synthesis and characterization of ASU-PPO based anion exchange membrane with PEG support for water electrolysis
- Experimental and numerical investigations on the mechanical properties of overmolded hybrid fiber reinforced thermoplastic composites
- Preparation and Assembly
- Reed fiber as a sustainable filler for tuning the biodegradability of polylactic acid composites
- Preparation of liquid metal/thermoplastic polyurethane composites with enhanced thermal conductivity via rolling regulation
- Lignin charcoal/preparation of chitosan composite membrane and H2S adsorption properties
- Synthesis and formulation of modified milk protein and its study as an adhesive for wood binding
- Preparation and properties of PLCL/OM-Laponite materials with potential applications in orthopedic bandage
- Engineering and Processing
- Probability evaluation of the ternary polymerization and reactivity ratio of bio-based PA5T/56
Articles in the same Issue
- Frontmatter
- Material Properties
- Synthesis and characterization of ASU-PPO based anion exchange membrane with PEG support for water electrolysis
- Experimental and numerical investigations on the mechanical properties of overmolded hybrid fiber reinforced thermoplastic composites
- Preparation and Assembly
- Reed fiber as a sustainable filler for tuning the biodegradability of polylactic acid composites
- Preparation of liquid metal/thermoplastic polyurethane composites with enhanced thermal conductivity via rolling regulation
- Lignin charcoal/preparation of chitosan composite membrane and H2S adsorption properties
- Synthesis and formulation of modified milk protein and its study as an adhesive for wood binding
- Preparation and properties of PLCL/OM-Laponite materials with potential applications in orthopedic bandage
- Engineering and Processing
- Probability evaluation of the ternary polymerization and reactivity ratio of bio-based PA5T/56