Research Grade Metal Organic Frameworks MOFs ZIF-8 Powder 100-400nm by Coprecipitation Method-Same Day Priority Shipping1Gram
ETB 20065
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Research Grade Metal Organic Frameworks MOFs ZIF-8 Powder with a specific surface area of ~1400 m2/g.
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| Item Weight | 0.1 lbs (50 grams) |
Who Should Buy?
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Research Laboratories
Ideal for academic and industrial research involving advanced materials and nanotechnology applications using MOFs.
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Chemical Engineers
Perfect for chemical engineers working on catalysis, gas storage, and separation processes involving metal-organic frameworks.
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Graduate Students
Beneficial for graduate students conducting experiments that require high-quality ZIF-8 MOFs for their theses or projects.
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Casual Users
Not suitable for casual users who lack expertise and experience in handling and utilizing advanced chemical materials.
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Retail Consumers
Retail consumers looking for everyday products will not find this specialized research-grade powder useful for common applications.
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Budget-Conscious Buyers
Those on a tight budget may find this product too costly compared to more general-purpose materials and chemicals.
Product Description
Research Grade Metal Organic Frameworks MOFs ZIF-8 Powder 100-400nm by Coprecipitation Method-Same Day Priority Shipping1Gram
Customer Questions & Answers
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Question:
What are Metal Organic Frameworks (MOFs), and how is ZIF-8 unique?
Answer: Metal Organic Frameworks (MOFs) are a class of compounds made from metal ions coordinated to organic ligands, forming a porous structure. ZIF-8, specifically, is a subtype of MOF known for its zeolitic framework and impressive thermal and chemical stability. This unique structure allows ZIF-8 to have a high surface area and tunable pore size, making it ideal for applications in gas storage, separation, and catalysis. Researchers often choose ZIF-8 for projects involving carbon capture or hydrogen storage due to its efficiency in adsorbing gases. -
Question:
What are the primary applications of ZIF-8 powder in research?
Answer: ZIF-8 powder is used primarily in fields such as catalysis, gas storage, and environmental remediation. Its highly porous nature allows for maximum adsorption of gases, making it suitable for carbon dioxide capture and storage studies. Moreover, ZIF-8 is utilized in catalysis for reactions requiring specific pore sizes that can optimize reactant access. Researchers in the field of materials science frequently explore ZIF-8 in conjunction with other materials to create composite structures with enhanced properties. -
Question:
How is ZIF-8 powder produced using the coprecipitation method?
Answer: The coprecipitation method for synthesizing ZIF-8 involves combining metal salts and organic linkers in a solution, followed by adjusting the pH to facilitate precipitation. This method is favored for its ability to yield high-quality, uniform ZIF-8 particle sizes ranging from 100-400 nm. The controlled conditions during synthesis are crucial for achieving the desired characteristics, such as surface area and pore volume. This technique is commonly employed in laboratory settings to produce tailor-made ZIF-8 for specific applications. -
Question:
What are the benefits of using 1 gram of ZIF-8 powder for experimental purposes?
Answer: Using 1 gram of ZIF-8 powder is beneficial for research projects that require a manageable amount of material for analysis without producing excessive waste. This quantity is ideal for pilot experiments, testing various conditions, or validating theoretical models. Many labs use small quantities to conduct preliminary research before scaling up. It allows researchers to optimize parameters such as reaction time and adsorption capacities efficiently. For educational purposes or smaller projects, 1 gram is typically sufficient to explore various properties. -
Question:
Can ZIF-8 be used in drug delivery systems?
Answer: Yes, ZIF-8 has shown promise in drug delivery systems due to its biocompatibility and ability to encapsulate drug molecules effectively. The porous structure of ZIF-8 allows for controlled release, making it suitable for targeted therapy. Researchers have begun to investigate its potential for loading and releasing anticancer drugs, where precise dosage and timing are critical for efficacy. This application is a growing area of interest in pharmaceutical research, where materials like ZIF-8 can enhance therapeutic efficacy. -
Question:
What safety precautions should be taken when handling ZIF-8 powder?
Answer: When handling ZIF-8 powder, standard laboratory precautions should be observed. It is advised to wear protective gear, including gloves and masks, to prevent inhalation or skin contact. While ZIF-8 is not considered hazardous, good laboratory practices ensure a safe working environment, especially when weighing or dispersing the powder. In case of accidental exposure, routine practices, such as rinsing affected areas with water, should be followed. Always consult the Safety Data Sheet (SDS) for specific handling and storage instructions. -
Question:
Is ZIF-8 environmentally friendly?
Answer: ZIF-8 is considered an environmentally friendly material due to its potential applications in carbon capture and renewable energy. Its ability to adsorb CO2 from flue gases can help mitigate greenhouse gas emissions, thereby contributing to environmental protection efforts. Furthermore, the materials used in manufacturing ZIF-8 are often sourced sustainably. Research continues into its applications in sustainable chemistry, where ZIF-8 may be part of green processes aimed at reducing the carbon footprint of various industries. -
Question:
What parameters should be considered when using ZIF-8 in experiments?
Answer: When utilizing ZIF-8 in experiments, several parameters should be considered, including temperature, pressure, and concentration of reactants. The stability of the framework under different experimental conditions influences its performance in gas adsorption or catalysis. Additionally, researchers should assess particle size distribution to ensure uniformity and efficiency throughout the experiment. Understanding these parameters allows researchers to optimize the application of ZIF-8 in their specific studies and obtain reliable results. -
Question:
Where can I buy Research Grade Metal Organic Frameworks MOFs ZIF-8 Powder 100-400nm?
Answer: You can buy Research Grade Metal Organic Frameworks MOFs ZIF-8 Powder 100-400nm by Coprecipitation Method from Ubuy in Ethiopia. Ubuy is a reliable platform that offers a wide selection of scientific materials and research grade chemicals, ensuring quality and prompt access for researchers and professionals. Their inventory is tailored to meet the specific needs of users looking for specialized items such as ZIF-8 powder.
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ETB 20065
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Ubuy works hard to protect your security and privacy. Our advanced payment security system ensures confidentiality by encrypting your information during transmission using AES (Advanced Encryption Standards) and SSL (Secure Socket Layer) protocols. Your payment details are 100% secure as we do not share your payment details with third party sellers.
Features & Benefits
- High-quality ZIF-8 MOFs for advanced research applications.
- Particle size ranges from 100-400 nm for versatile use.
- Features a remarkable specific surface area of ~1400 m2/g.
- Aperture size between 0.34-1.16nm for enhanced performance.
- Same day priority shipping ensures fast delivery.
- Perfectly suited for scientists and researchers demanding high-grade materials.