<p>Metal-organic frameworks (MOFs) have raised interest due to their potential properties, such as high porosity, tunable structures, and adsorption. Recent studies have demonstrated that incorporating MOF in the polymer matrix is essential for optimizing nanofiber performance. Integrating MOF materials into a polymer matrix is a highly effective strategy for improving functionality and converting the materials into nanofibrous materials through electrospinning. This review mainly summarizes the recent progress of MOF nanofibers by electrospinning method in bibliometrics analysis and combination with literature review. Based on the bibliometric analysis, this paper presents the research trends and future outlook of MOF nanofibers. The VOSviewer and Biblioshiny software were used to visualize the analyzed dataset retrieved from the Scopus database, limited to the research article version. The results indicated a steady annual rise in publications and citations, with an average of 32.1 citations per document. China has been a preeminent contributor in all analytical dimensions. The “Chemical Engineering Journal” topped article production with 58 publications, underscoring its prominence in this field. Wang J from Jilin University distinguished himself with the most publications, whilst Donghua University excelled in institutional productivity. Keyword analysis revealed three principal research clusters: (1) energy-related fabrication techniques and applications, (2) biomedical and environmental applications, and (3) advanced material functionalization, structural design, and novel applications. Based on the bibliometric analysis, this review correlates these identified research directions with recent technological and scientific developments described in the literature, emphasizing how fabrication techniques, material design, and multifunctional applications are shaping the future of MOF nanofibers. These materials are pertinent for applications in environmental remediation, energy storage, biomedical fields, and smart textiles. Additionally, it is advisable to conduct a deeper investigation into MOF nanofibers composed of diverse metals to reveal novel insights and prospects. This study provides a comprehensive bibliometric analysis of MOF nanofibers, thus providing new insights to researchers or stakeholders in advancing MOF nanofibers.</p> Graphical Abstract <p></p>

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Current Perspectives and Potential Trends of Metal-Organic Framework Nanofibers

  • Yasni Novi Hendri,
  • Asnan Rinovian,
  • Nurrahmi Handayani,
  • Gebby Febrilia Irwanda,
  • Arniati Labanni,
  • Fitri Dara,
  • Monna Rozana,
  • Merita Merita,
  • Aep Patah,
  • Muhamad Nasir

摘要

Metal-organic frameworks (MOFs) have raised interest due to their potential properties, such as high porosity, tunable structures, and adsorption. Recent studies have demonstrated that incorporating MOF in the polymer matrix is essential for optimizing nanofiber performance. Integrating MOF materials into a polymer matrix is a highly effective strategy for improving functionality and converting the materials into nanofibrous materials through electrospinning. This review mainly summarizes the recent progress of MOF nanofibers by electrospinning method in bibliometrics analysis and combination with literature review. Based on the bibliometric analysis, this paper presents the research trends and future outlook of MOF nanofibers. The VOSviewer and Biblioshiny software were used to visualize the analyzed dataset retrieved from the Scopus database, limited to the research article version. The results indicated a steady annual rise in publications and citations, with an average of 32.1 citations per document. China has been a preeminent contributor in all analytical dimensions. The “Chemical Engineering Journal” topped article production with 58 publications, underscoring its prominence in this field. Wang J from Jilin University distinguished himself with the most publications, whilst Donghua University excelled in institutional productivity. Keyword analysis revealed three principal research clusters: (1) energy-related fabrication techniques and applications, (2) biomedical and environmental applications, and (3) advanced material functionalization, structural design, and novel applications. Based on the bibliometric analysis, this review correlates these identified research directions with recent technological and scientific developments described in the literature, emphasizing how fabrication techniques, material design, and multifunctional applications are shaping the future of MOF nanofibers. These materials are pertinent for applications in environmental remediation, energy storage, biomedical fields, and smart textiles. Additionally, it is advisable to conduct a deeper investigation into MOF nanofibers composed of diverse metals to reveal novel insights and prospects. This study provides a comprehensive bibliometric analysis of MOF nanofibers, thus providing new insights to researchers or stakeholders in advancing MOF nanofibers.

Graphical Abstract