Metal-Organic Frameworks for Environmental Remediation
Metal-Organic Frameworks for Environmental Remediation
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MOFs, or metal-organic frameworks, are versatile catalysts with unique features that have been developed for environmental remediation applications, including synthesis, characterization, and examples. This volume in a three-volume set provides an overview of their use in this field.
Format: Hardback
Length: 360 pages
Publication date: 10 November 2022
Publisher: Oxford University Press Inc
Metal-organic frameworks (MOFs) have emerged as highly customizable catalysts due to their unique features. Recent studies have developed specific MOFs for various applications. As part of a three-volume set (1393-1395), this volume provides an overview of MOFs used in environmental remediation, including synthesis, characterization, and examples of applications. Materials scientists and chemical engineers will find this work useful, as will students learning about this active area of research.
MOFs, or metal-organic frameworks, are a class of materials with unique properties that make them highly versatile for various applications. These materials are made up of metal ions or clusters linked together by organic molecules, which gives them a hierarchical structure and a wide range of chemical and physical properties.
One of the key advantages of MOFs is their ability to be customized to suit specific needs. The composition and structure of MOFs can be tailored to target specific pollutants or reactions, making them highly effective in environmental remediation. For example, some MOFs have been designed to adsorb and remove heavy metals from contaminated water, while others have been used to catalyze the degradation of organic pollutants.
Another advantage of MOFs is their stability and durability. These materials are often resistant to harsh conditions, such as high temperatures, pressures, and acidic or basic environments, which makes them suitable for use in a wide range of applications. Additionally, MOFs can be easily synthesized and modified, which allows for further customization and optimization of their properties.
In recent years, there has been a significant increase in research on MOFs and their applications in environmental remediation. Researchers have developed specific MOFs for various applications, such as water purification, air purification, and waste management. For example, one MOF has been shown to be highly effective in removing toxic pollutants from wastewater, while another has been used to adsorb and degrade volatile organic compounds from air.
Despite their many advantages, MOFs also face some challenges. One of the main challenges is the cost of synthesis and purification, which can be relatively high. Additionally, some MOFs may be less stable in certain environments, which can limit their applications.
Despite these challenges, MOFs continue to be a promising material for environmental remediation. With continued research and development, it is likely that MOFs will become even more effective and efficient in removing pollutants from the environment and improving our quality of life.
In conclusion, MOFs are a highly customizable class of materials with unique properties that make them highly effective in environmental remediation. These materials are made up of metal ions or clusters linked together by organic molecules, which gives them a hierarchical structure and a wide range of chemical and physical properties. With their ability to be tailored to suit specific needs, stability, and durability, MOFs are a promising material for use in a wide range of applications. However, there are also some challenges that need to be addressed, such as the cost of synthesis and purification and the stability of some MOFs in certain environments. With continued research and development, it is likely that MOFs will become even more effective and efficient in removing pollutants from the environment and improving our quality of life.
Weight: 1g
Dimension: 261 x 184 x 28 (mm)
ISBN-13: 9780841297845
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