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Call for Papers: Metal-Organic Frameworks Interactions with Bulk and Confined Liquids

Introduction

Metal–organic frameworks (MOFs) are nanoporous crystalline materials that form through the self-assembly process of metal nodes and organic ligands. The materials exhibit extremely high surface areas together with adjustable pore structures, which make them suitable for multiple uses, including catalysis, gas storage, molecular separation and biomedical technologies. The 2025 Nobel Prize in Chemistry, which honoured nanoporous material research advancements, demonstrates their importance to contemporary chemistry and materials science.

The process of synthesising MOFs requires the use of liquids, which help to maintain their structural integrity and provide maximum ability to function. MOFs form framework structures through their interactions with liquids, which determine the pathways that substances use to travel between host materials and the physical and chemical properties of liquids that exist in nanoporous spaces. These interactions become vital for processes that use catalysis and adsorption, and separation technologies.

The special issue “Metal-Organic Frameworks research services” invites researchers to submit their studies about MOF-liquid interactions, which have scientific and industrial applications. Researchers who study Metal-Organic Frameworks should conduct experiments that examine how liquids behave within MOF systems for their research work.

Scope

The special issue presents research that investigates how metal–organic frameworks interact with liquid systems by studying their thermodynamic properties and molecular interactions, and their practical use in nanoporous material research.

  • Their research investigates the MOF production process together with the structural stability of the material under liquid conditions.
  • The study investigates the thermal behaviour of liquids together with their thermodynamic properties when contained within nanoporous MOF structures.
  • The researchers investigate molecular interactions to determine the host-guest relationship between substances in MOF and liquid systems.
  • The research team uses both experimental methods and computational techniques to study MOF adsorption testing, together with the adsorption mechanisms that occur.
  • The MOF molecular modelling services, together with simulation and modelling research work for studying molecular transport and liquid behaviour experiments.
  • The research investigates the aqueous stability of MOFs together with the effects of solvents on their framework formation process.
  • The research studies industrial uses of MOFs for catalysis and separation and environmental applications.
  • The research work brings together different scientific fields by using experts who assist with MOF research and provide nanoporous material research support.
  • Know More About This Issue

    Researchers use metal–organic frameworks to investigate liquid behaviour when it exists under nanoscale confinement. The thermodynamic properties, molecular structure and dynamic behaviour of liquids in MOF materials show different patterns from their standard bulk liquid behaviour. The material design process needs these interactions to be understood because they play a vital role in creating advanced materials for energy storage and environmental remediation, and chemical processing.

    The Journal of Molecular Liquids special issue aims to encourage interdisciplinary research collaboration between scientists who study nanoporous materials, thermodynamics, molecular chemistry and materials science. The researchers who work with Metal-Organic Frameworks services and MOF research assistance obtain important research results through their work with both experimental studies and advanced computer modelling methods.

    Researchers can now better comprehend how molecules interact with nanoporous materials thanks to improved MOF molecular modelling services and adsorption analysis support. The advancements exist to enhance the stability and efficiency of MOF systems, which operate in liquid environments while also making these systems more suitable for industrial use.

    nanoporous materials research services

    Key Themes

  • The study investigates how confined liquids behave thermodynamically within metal–organic frameworks.
  • The study investigates how host molecules interact with guest molecules in MOF–liquid systems.
  • The research project develops new methods to support advanced MOF adsorption analysis support testing.
  • MOF molecular modelling provides computational modelling support for researchers.
  • The research evaluates how MOFs maintain structural stability in water and solvent environments.
  • Research services on nanoporous materials enable the design of nanoporous materials.
  • Metal–organic frameworks serve as the base for processes that combine liquid-phase catalysis with liquid-phase separation.
  • MOF research has created new industrial and environmental solutions that are now emerging as practical applications.
  • How We Support Your Submission

    The Journal of Molecular Liquids requires authors to present their work using structured scientific methods and clearly defined experimental or theoretical frameworks. Our expert team provides comprehensive publication assistance to help researchers prepare high-quality manuscripts.

  • Academic editing and manuscript refinement to enhance clarity and scientific presentation
  • Support for authors who conduct Metal-Organic Frameworks research and work on MOF research projects
  • The service provides help with displaying computational findings that were achieved through MOF molecular modelling services
  • The service guides to help researchers construct their manuscripts, which describe nanoporous materials research services
  • The service provides language editing and formatting services, which help documents meet international journal submission requirements
  • The service assists with both manuscript submission and the creation of responses to reviewer comments
  • The service provides expert review support, which helps enhance the scientific value of research manuscripts
  • Journal Guidelines:

  • Authors must submit original manuscripts that are not under review by any other journal.
  • Manuscripts should follow the Journal of Molecular Liquids Guide for Authors, which contains specific formatting and referencing requirements.
  • Submissions must clearly present the research objectives and methodology, results and scientific interpretation that pertain to MOF–liquid interactions.
  • Authors should ensure proper reporting of experimental procedures, molecular modelling and adsorption analysis methods to achieve reproducibility.
  • Manuscripts must be submitted through the journal’s Editorial Manager® submission system.
  • During submission, authors should select the article type “VSI: MOFs behaviour in liquids.”
  • The journal will conduct a complete peer-review process for all submissions, which will follow its established editorial standards.
  • Important Dates

    Submission Deadline: 4 September 2026

    To ensure successful and timely submission to the special issue Metal-Organic Frameworks Interactions with Bulk and Confined Liquids,” researchers are encouraged to seek expert publication support from conceptualisation to final submission.

    Free Guide: How to Write the Journal Manuscript

    Book a free consultation to get guidance from the PhD assistance research lab for writing a credible research manuscript and submitting it in the high-quality journal.

    Reference

    Elsevier. (2026, March 10). Metal-organic frameworks: Interactions with bulk and confined liquids (Call for papers). Journal of Molecular Liquids. https://www.sciencedirect.com/journal

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