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Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder Silica Nanoparticles SiO2 Nanopowder with 99.9% Purity (50 Milligram)
Discover the versatility of our Nano Hollow Mesoporous Silicon Dioxide Powder, perfect for a wide range of applications from textiles to aerospace.
Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder Silica Nanoparticles SiO2 Nanopowder with 99.9% Purity (50 Milligram)
Item #: 64612437

Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder Silica Nanoparticles SiO2 Nanopowder with 99.9% Purity (50 Milligram)

Item #: 64612437

BDT 47116

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Discover the versatility of our Nano Hollow Mesoporous Silicon Dioxide Powder, perfect for a wide range of applications from textiles to aerospace.
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What Stands Out

High Purity
With a purity level of 99.9%, this nanpowder ensures optimal performance in research applications, making it suitable for sensitive experiments and providing reliable results.
Ultrafine Size
The 100nm particle size enhances surface area and reactivity, ideal for compelling research outcomes in various scientific fields, including drug delivery and catalysis.
Mesoporous Structure
The hollow mesoporous design allows for improved absorption and storage capabilities, making it valuable for applications requiring controlled release and increased efficiency in nanotechnology.

Product Details

Shop high purity 100nm silica nanoparticles for UV resistant materials, photocatalytic catalysts, self-cleaning glass, paints, inks & more at Ubuy Bangladesh, a Bangladesh.
Item Weight0.1 lbs (50 grams)

Who Should Buy?

Suitable For
  • Research Laboratories

    Ideal for scientific research that requires high-purity silica nanoparticles for various experimental applications.

  • Nanotechnology Fields

    Beneficial for professionals working in nanotechnology, particularly in developing new materials or drug delivery systems.

  • Educational Purposes

    Useful for educational institutions conducting advanced experiments in material science and nanotechnology courses.

Not Suitable For
  • Casual Users

    Not suitable for general consumers who lack the equipment or expertise to utilize silica nanoparticles effectively.

  • Non-Scientific Applications

    Inappropriate for users seeking silica for non-research purposes, such as home crafts or simple DIY projects.

  • Low Budget Projects

    Excessively expensive for individuals or projects with minimal budget constraints, considering the small quantity provided.

Product Description

Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder Silica Nanoparticles SiO2 Nanopowder with 99.9% Purity (50 Milligram)

Dietary Supplement Disclaimer

Statements regarding dietary supplements have not been evaluated by the Food and Drug Administration and are not intended to diagnose, treat, cure, or prevent any disease or health condition.


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Customer Questions & Answers

  • Question: What are the primary applications of 100nm Nano Hollow Mesoporous Silicon Dioxide Powder?

    Answer: The primary applications of 100nm Nano Hollow Mesoporous Silicon Dioxide Powder include drug delivery systems, catalysis, and as a filler in cosmetics. This silica nanoparticles' unique mesoporous structure allows for high surface area, making it an ideal carrier for pharmaceuticals, enhancing drug solubility and bioavailability. In the cosmetics industry, it serves as a lightweight filler that improves product texture and stability, contributing to a smoother application. Its versatility also extends to environmental applications, where it's employed in adsorption processes for pollutants.
  • Question: How does the purity of 99.9% impact the performance of silica nanoparticles?

    Answer: The purity of 99.9% in silica nanoparticles is crucial as it minimizes impurities that could affect the performance and efficacy of the material. High-purity silica ensures consistent chemical properties, which are vital in applications such as drug delivery, where contaminants can lead to unpredictable results. Additionally, pure silica particles exhibit enhanced stability, making them suitable for sensitive applications in electronics and catalysis, where they help maintain performance integrity over time.
  • Question: Is the 100nm Nano Hollow Mesoporous Silicon Dioxide safe for use?

    Answer: Yes, the 100nm Nano Hollow Mesoporous Silicon Dioxide is considered safe for various applications, particularly in research and development sectors. Extensive studies indicate that silica nanoparticles can be safely utilized in biomedical applications when handled appropriately. However, users should always adhere to safety guidelines, including proper handling and usage protocols to ensure they mitigate any health risks associated with nanoparticles.
  • Question: How should I store the 50mg silica nanoparticles to maintain their quality?

    Answer: To maintain the quality of 50mg silica nanoparticles, they should be stored in a cool, dry place away from direct sunlight and moisture. It is best to keep them in the original packaging or a tightly sealed container to prevent contamination. Ensuring that the storage conditions are optimal helps in preserving the integrity and performance of the nanoparticles for future use in experiments or applications.
  • Question: What distinguishes ultrafine nanoparticles from other silica powders?

    Answer: Ultrafine nanoparticles, such as the 100nm Nano Hollow Mesoporous Silicon Dioxide, are characterized by their significantly smaller particle size, which leads to a higher surface area-to-volume ratio compared to standard silica powders. This unique property enhances their reactivity and allows for faster adsorption and desorption processes, making them particularly effective in applications like catalysis and drug delivery. Their mesoporous structure further improves their performance in holding and releasing substances.
  • Question: Can you describe the synthesis process of mesoporous silica nanoparticles?

    Answer: The synthesis of mesoporous silica nanoparticles typically involves the sol-gel technique, which allows for controlled formation of nanoporous structures. Raw materials like tetraethyl orthosilicate (TEOS) are used alongside surfactants to create a templated structure that can be later removed to yield hollow mesoporous nanoparticles. This process enables precise control over particle size and porosity, making it suitable for varied applications such as controlled drug release or environmental remediation.
  • Question: In what research fields are these silica nanoparticles most beneficial?

    Answer: These silica nanoparticles are most beneficial in fields such as materials science, pharmacology, and environmental science. In materials science, their high surface area and tunable properties make them ideal for developing advanced composite materials. Within pharmacology, they are utilized for targeted drug delivery systems. Lastly, in environmental science, their unique adsorption characteristics are leveraged for the removal of contaminants from water and soil, demonstrating their versatility across disciplines.
  • Question: What is the ideal method for dispersing these nanoparticles in a solution?

    Answer: The ideal method for dispersing 100nm Nano Hollow Mesoporous Silicon Dioxide nanoparticles in a solution involves ultrasonication, which helps break agglomerates and ensures a uniform dispersion. This technique utilizes high-frequency sound waves to disperse particles evenly in solvents. It's essential to consider the solvent type and concentration, as these factors influence the stability and reactivity of the nanoparticles in various applications.
  • Question: What precautions should I take when handling silica nanoparticles?

    Answer: When handling silica nanoparticles, it is essential to wear protective equipment such as gloves, goggles, and masks to prevent inhalation and skin exposure. Additionally, work in a well-ventilated area or a fume hood to minimize the risk of exposure to airborne particles. Following proper laboratory protocols and disposal procedures ensures safety and environmental responsibility in your research activities.
  • Question: Where can I buy Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder?

    Answer: You can purchase Research Grade Ultrafine 100nm Nano Hollow Mesoporous Silicon Dioxide Powder with 99.9% purity, 50 milligrams, at Ubuy in Bangladesh. Ubuy offers a wide variety of high-quality chemicals and materials tailored for research purposes, ensuring you have access to the best products for your scientific endeavors.

XFNANO Analytical Reagents Editorial Review

The Ultrafine Nano Hollow Mesoporous Silicon Dioxide Powder is a high-quality product that is ideal for research purposes. With a purity of 99.9%, this powder is perfect for various applications in the field of nanotechnology. The hollow and mesoporous structure of the particles allows for enhanced functionality and performance. Additionally, the small size of the nanoparticles (100nm) makes them suitable for use in different scientific experiments. Overall, this product has received positive reviews for its purity and suitability for research needs.

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Pros

  • High purity level of 99.9%
  • Ideal for research purposes
  • Hollow and mesoporous structure enhances functionality
  • Small particle size (100nm) for versatile applications

Product Price History

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