E-POLYMERS

Scope & Guideline

Fostering Collaboration in the Evolving World of Materials Science

Introduction

Delve into the academic richness of E-POLYMERS with our guidelines, detailing its aims and scope. Our resource identifies emerging and trending topics paving the way for new academic progress. We also provide insights into declining or waning topics, helping you stay informed about changing research landscapes. Evaluate highly cited topics and recent publications within these guidelines to align your work with influential scholarly trends.
LanguageEnglish
ISSN2197-4586
PublisherDE GRUYTER POLAND SP Z O O
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationE-POLYMERS / e-Polymers
Frequency1 issue/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressBOGUMILA ZUGA 32A STR, 01-811 WARSAW, MAZOVIA, POLAND

Aims and Scopes

E-Polymers focuses on innovative research in the field of polymer science and engineering, emphasizing the development, characterization, and application of polymeric materials. The journal aims to publish high-quality research that advances the understanding and application of polymers in various domains such as materials science, biomedical applications, and environmental sustainability.
  1. Polymer Synthesis and Characterization:
    Research on novel synthesis methods for polymers, including bio-based and biodegradable polymers, alongside detailed characterization of their physical, chemical, and mechanical properties.
  2. Polymer Composites and Nanocomposites:
    Studies focused on the formulation and performance of polymer composites and nanocomposites, exploring the impact of various fillers and reinforcements on the properties of base polymers.
  3. Polymer Processing and Manufacturing Techniques:
    Exploration of advanced processing techniques, including additive manufacturing, extrusion, and injection molding, aimed at optimizing polymer processing for enhanced material properties.
  4. Environmental and Sustainable Polymers:
    Research that addresses the environmental impact of polymers, including studies on biodegradable polymers, recycling methods, and the development of sustainable polymer materials.
  5. Polymer Applications in Various Fields:
    Investigations into the applications of polymers in diverse areas such as food packaging, biomedical devices, coatings, and energy storage solutions.
Recent publications in E-Polymers highlight several emerging themes and trends, reflecting the dynamic nature of polymer research and its responsiveness to technological advancements and societal needs.
  1. Smart and Functional Polymers:
    There is a growing trend towards the development of smart polymers that respond to environmental stimuli, including temperature, pH, and light, for applications in sensors, drug delivery, and adaptive materials.
  2. Biodegradable and Bio-based Polymers:
    Increasing interest in sustainable materials has led to a rise in research on biodegradable and bio-based polymers, emphasizing their potential to reduce environmental impact.
  3. Nanotechnology in Polymer Science:
    The integration of nanotechnology in polymer science is a significant trend, with research focusing on nanocomposites that enhance mechanical, thermal, and barrier properties.
  4. Biomedical Applications of Polymers:
    There is an increasing emphasis on the use of polymers in biomedical applications, particularly in drug delivery systems, tissue engineering, and regenerative medicine.
  5. Additive Manufacturing of Polymers:
    The application of additive manufacturing technologies, such as 3D printing, is gaining traction, with studies exploring new materials and methods to enhance the capabilities of polymer processing.

Declining or Waning

While E-Polymers continues to thrive in various research areas, some themes have shown signs of declining interest or frequency in recent publications. These waning scopes may reflect shifts in research priorities or advancements in other areas.
  1. Traditional Polymer Materials:
    Research focused solely on conventional polymers without innovative modifications or applications appears to be declining, as the field moves towards more complex and functional materials.
  2. Basic Polymer Physics:
    Studies that concentrate on fundamental aspects of polymer physics, without practical applications or implications, are becoming less prominent as researchers seek to bridge theory with real-world applications.
  3. Low-Performance Polymer Systems:
    There has been a noticeable decrease in the publication of works centered around low-performance or outdated polymer systems, as the focus shifts to high-performance and multifunctional materials.

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