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Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications

Published December 30, 2024 Β· 1 min read Β· 1 views DOI: 10.70130/rcs.2024.0101003
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Singhal, Manisha, Jangid, Seema, Rajawat, Deepak Singh (2024). Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications. https://doi.org/10.70130/rcs.2024.0101003
Singhal, Manisha, Jangid, Seema, Rajawat, Deepak Singh. "Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications.". DOI: 10.70130/rcs.2024.0101003.
Singhal, Manisha, Jangid, Seema, Rajawat, Deepak Singh. "Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications.". https://doi.org/10.70130/rcs.2024.0101003.
@article{singhal2024metal,
  title = {Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications},
  author = {Singhal, Manisha and Jangid, Seema and Rajawat, Deepak Singh},
  year = 2024,
  journal = {},
  volume = 02,
  number = 01,
  pages = 23-33,
  doi = 10.70130/rcs.2024.0101003,
  url = oai:ojs2.pubs.rsyn.org:article/67,
  language = en
}
Download .bib
TY  - JOUR
TI  - Metal Organic Frameworks as Versatile Materials for Energy Storage, Environmental Remediation, and Catalytic Applications
AU  - Singhal, Manisha
AU  - Jangid, Seema
AU  - Rajawat, Deepak Singh
PY  - 2024
DA  - 2024-12-30
VL  - 02
IS  - 01
SP  - 23-33
DO  - 10.70130/rcs.2024.0101003
UR  - oai:ojs2.pubs.rsyn.org:article/67
AB  - Metal organic Framework is a family of 2D transition-metal carbides and nitrides, and has emerged as promising materials for a wide range of applications, particularly in electro- and photocatalytic water splitting for hydrogen generation. Their unique structure, large surface area, metallic conductivity, and surface terminations offer numerous advantages in enhancing catalytic activity. Metal organic framework compounds are also called MXene. This review provides a detailed examination of the organic framework of metals and their properties, including their synthesis methods, structural features, and surface chemistry. Recent advances in MXene-based composites, especially MXene-TiO2 and MXene/metal composites, are also discussed for improved water splitting efficiency. Challenges such as weak environmental stability, limited intrinsic catalytic activity, and charge recombination are highlighted along with strategies for overcoming these limitations. Finally, the future outlook of MXene-based materials for scalable, sustainable hydrogen production is presented. This review summarizes the most recent breakthroughs and predicts the prospects of MOFs for heterojunctions, composites, doping, and other technologies that enhance their capabilities. This review provides a comprehensive overview of the present state of research on MOFs and emphasizes their prospective applications in materials science, energy science, environmental science, photoelectrochemistry, and photoelectronic devices.
LA  - en
ER  - 
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πŸ€– AI Key Takeaways & Research Insights

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πŸ’‘ Core Finding

Metal organic Framework is a family of 2D transition-metal carbides and nitrides, and has emerged as promising materials for a wide range of applications, particularly in electro- and photocatalytic water splitting for h...

πŸ”¬ Methodology

Their unique structure, large surface area, metallic conductivity, and surface terminations offer numerous advantages in enhancing catalytic activity.

🎯 Domain Impact

This review provides a comprehensive overview of the present state of research on MOFs and emphasizes their prospective applications in materials science, energy science, environmental science, photoe...

Abstract

Metal organic Framework is a family of 2D transition-metal carbides and nitrides, and has emerged as promising materials for a wide range of applications, particularly in electro- and photocatalytic water splitting for hydrogen generation. Their unique structure, large surface area, metallic conductivity, and surface terminations offer numerous advantages in enhancing catalytic activity. Metal organic framework compounds are also called MXene. This review provides a detailed examination of the organic framework of metals and their properties, including their synthesis methods, structural features, and surface chemistry. Recent advances in MXene-based composites, especially MXene-TiO2 and MXene/metal composites, are also discussed for improved water splitting efficiency. Challenges such as weak environmental stability, limited intrinsic catalytic activity, and charge recombination are highlighted along with strategies for overcoming these limitations. Finally, the future outlook of MXene-based materials for scalable, sustainable hydrogen production is presented. This review summarizes the most recent breakthroughs and predicts the prospects of MOFs for heterojunctions, composites, doping, and other technologies that enhance their capabilities. This review provides a comprehensive overview of the present state of research on MOFs and emphasizes their prospective applications in materials science, energy science, environmental science, photoelectrochemistry, and photoelectronic devices.

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