Applied Chemistry for Engineering

Scope & Guideline

Empowering Engineers with Applied Chemistry Insights

Introduction

Delve into the academic richness of Applied Chemistry for Engineering 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.
LanguageMulti-Language
ISSN1225-0112
PublisherKOREAN SOC INDUSTRIAL & ENGINEERING CHEMISTRY
Support Open AccessNo
CountrySouth Korea
TypeJournal
Convergefrom 2007 to 2024
AbbreviationAPPL CHEM ENG / Appl. Chem. Eng.
Frequency6 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressRM 905, ORYX BLDG, 755-5 BANGBAE-DONG, SEOCHO-GU, SEOUL 137-828, SOUTH KOREA

Aims and Scopes

The journal 'Applied Chemistry for Engineering' focuses on the intersection of chemistry and engineering, emphasizing practical applications that drive innovation in various industrial sectors. The research published in this journal spans a wide range of topics, reflecting the diverse applications of chemistry in engineering practices.
  1. Advanced Materials Development:
    Research on novel materials, including polymers, composites, and nanomaterials, focusing on their synthesis, properties, and applications in various engineering fields.
  2. Catalysis and Reaction Engineering:
    Studies on catalysts, reaction mechanisms, and optimization techniques aimed at improving efficiency in chemical processes.
  3. Environmental Chemistry and Technology:
    Investigations into methods for pollution control, waste management, and sustainable practices, highlighting the role of chemistry in environmental protection.
  4. Electrochemical Systems:
    Research focusing on battery technologies, fuel cells, and electrochemical sensors, emphasizing advancements that enhance energy storage and conversion.
  5. Biomaterials and Biochemical Engineering:
    Exploration of materials derived from biological sources and their applications in medicine, cosmetics, and food industries.
  6. Analytical Chemistry Techniques:
    Development and application of analytical methods for detecting and quantifying chemical substances in various matrices.
Recent publications in 'Applied Chemistry for Engineering' reveal emerging themes that highlight the journal's responsiveness to current scientific challenges and technological advancements.
  1. Sustainable and Green Chemistry:
    An increasing number of studies focus on environmentally friendly processes and materials, reflecting the global push towards sustainability in chemical engineering.
  2. Nanotechnology and Advanced Nanomaterials:
    The exploration of nanomaterials for their unique properties and applications in various sectors, including energy, electronics, and healthcare, is gaining significant attention.
  3. Biotechnology Applications in Chemistry:
    Research integrating biotechnology with chemical processes is on the rise, particularly in areas such as bioremediation, biofuels, and biopharmaceuticals.
  4. Smart Materials and Responsive Systems:
    Emerging interest in materials that respond to environmental stimuli, such as temperature, pH, or light, showcasing innovations in the design of multifunctional materials.
  5. Energy Storage and Conversion Technologies:
    With the growing demand for renewable energy solutions, there is a notable increase in research focused on improving battery technologies and fuel cells.

Declining or Waning

As the journal evolves, certain themes that were once prominent are now showing signs of decline in publication frequency. This shift may reflect changing research priorities or advancements in other areas.
  1. Traditional Chemical Synthesis Methods:
    Research focusing on conventional synthesis techniques is increasingly being overshadowed by more innovative approaches, such as green chemistry and advanced manufacturing methods.
  2. Basic Chemical Education:
    Papers centered on foundational educational topics in chemistry are less frequent, possibly due to the journal's shift towards applied research that directly impacts engineering practices.
  3. Low-impact Polymers and Materials:
    Research on traditional, low-performance materials is declining in favor of high-performance, sustainable, and multifunctional materials that meet modern engineering demands.

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