Materials Letters-X

Scope & Guideline

Pioneering Rapid Discoveries in Material Research

Introduction

Welcome to your portal for understanding Materials Letters-X, featuring guidelines for its aims and scope. Our guidelines cover trending and emerging topics, identifying the forefront of research. Additionally, we track declining topics, offering insights into areas experiencing reduced scholarly attention. Key highlights include highly cited topics and recently published papers, curated within these guidelines to assist you in navigating influential academic dialogues.
LanguageEnglish
ISSN2590-1508
PublisherELSEVIER
Support Open AccessYes
CountryNetherlands
TypeJournal
Convergefrom 2019 to 2024
AbbreviationMATER LETT-X / Mater. Lett.-X
Frequency4 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressRADARWEG 29, 1043 NX AMSTERDAM, NETHERLANDS

Aims and Scopes

Materials Letters-X is dedicated to disseminating high-quality research focused on the synthesis, characterization, and application of advanced materials across various domains. The journal emphasizes innovative methodologies and interdisciplinary approaches that contribute to the field of materials science.
  1. Advanced Materials Synthesis:
    The journal publishes research on novel synthesis techniques for materials, including nanomaterials, composites, and thin films, emphasizing the development of scalable and reproducible methods.
  2. Characterization Techniques:
    Papers often explore advanced characterization methods to analyze the structural, optical, electrical, and thermal properties of materials, providing insights into their behavior and potential applications.
  3. Applications in Electronics and Photonics:
    A significant focus is placed on materials used in electronic and photonic applications, including semiconductors, LEDs, and sensors, highlighting their performance and integration into devices.
  4. Sustainable and Green Materials:
    The journal encourages research on sustainable materials and processes, including recycling techniques, biomaterials, and environmentally friendly synthesis methods.
  5. Interdisciplinary Approaches:
    Research that combines materials science with fields such as biology, chemistry, and engineering is highly valued, promoting innovative applications and solutions to existing challenges.
Recent publications in Materials Letters-X reveal emerging themes that reflect current trends in materials science research. These themes indicate a shift towards innovative materials and applications that address contemporary challenges.
  1. Nanomaterials and Nanocomposites:
    There is a growing emphasis on the synthesis and application of nanomaterials and nanocomposites, particularly for their unique properties and potential in electronics, energy storage, and biomedicine.
  2. Functional Coatings and Surface Modifications:
    Research focusing on advanced coatings and surface modifications for enhancing material properties, such as corrosion resistance and biocompatibility, is on the rise.
  3. Biodegradable and Bioactive Materials:
    The trend towards sustainability has led to increased interest in biodegradable materials and bioactive composites, particularly for medical and environmental applications.
  4. Energy Storage and Conversion Technologies:
    Emerging themes include the development of advanced materials for energy storage (such as batteries and supercapacitors) and conversion technologies (like catalysts for fuel cells), driven by the global push for renewable energy solutions.
  5. Smart and Responsive Materials:
    Research on smart materials that respond to external stimuli (thermal, electrical, or chemical) is gaining traction, with applications in sensors, actuators, and adaptive systems.

Declining or Waning

While Materials Letters-X continues to explore a wide array of themes in materials science, certain areas have seen a decline in research focus over recent years. This trend reflects the evolving priorities within the field and the shifting interests of the academic community.
  1. Traditional Metal Alloys:
    Research focused specifically on conventional metal alloys has decreased, as interest shifts towards more advanced materials and composites that offer superior properties and applications.
  2. Basic Theoretical Studies:
    Papers that predominantly present theoretical analyses without substantial experimental validation are becoming less common, with a preference now for studies that integrate theory with practical applications.
  3. Low-Performance Materials:
    There is a noticeable reduction in publications related to materials that do not exhibit high performance or innovative characteristics, as the journal seeks to highlight cutting-edge advancements and applications.
  4. Outdated Characterization Techniques:
    Research employing older characterization methodologies without modern advancements or insights is declining, as the field increasingly favors innovative and comprehensive analytical techniques.

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