Manganese-Zinc Ferrite Nanocrystals – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh Thu, 08 May 2025 02:30:46 +0000 zh-Hans hourly 1 https://wordpress.org/?v=6.9 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Manganese-Zinc Ferrite Nanocrystals – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com/zh 32 32 Manganese-Zinc Ferrite Nanocrystals (High-Temperature Pyrolysis Method) https://www.hi-tech-materials.com/zh/product/manganese-zinc-ferrite-nanocrystals-high-temperature-pyrolysis-method https://www.hi-tech-materials.com/zh/product/manganese-zinc-ferrite-nanocrystals-high-temperature-pyrolysis-method#respond Thu, 08 May 2025 02:29:56 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5088
Manganese-zinc ferrite nanocrystals synthesized via the high-temperature pyrolysis method provide optimized magnetic properties, superior colloidal stability, and enhanced thermal resistance. Designed for advanced applications, they ensure efficient dispersion, extended durability, and high-performance adaptability.
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Product Overview

Manganese-zinc ferrite is a composite metal oxide composed of manganese, zinc, and iron oxides, with a spinel structure and the chemical formula (Zn,Mn)Fe₂O₄. Manganese-zinc ferrite nanocrystals prepared by high-temperature pyrolysis exhibit excellent magnetic properties and crystallinity, making them suitable for various applications such as magnetic hyperthermia and bioseparation.

Features

  • Magnetic Properties: Exhibits high saturation magnetization and coercivity, demonstrating excellent magnetic behavior.
  • Nanometer Size Effect: Due to its nanoscale size, the material has a large specific surface area and unique physical and chemical properties.
  • Good Crystallinity: Features a well-developed crystalline structure that enhances its physical and chemical performance.

Applications

  • Magnetic Hyperthermia: Generates heat under the influence of an external magnetic field, used in the treatment of tumors and other diseases.
  • Bioseparation: Suitable for separating specific biomolecules or cells, widely used in biomedical research.
  • Magnetic-Responsive Smart Materials: Used in the development of smart materials responsive to magnetic fields, with applications in high-tech industries.

 

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PEG-Modified Magnetic Manganese-Zinc Ferrite Nanocrystals (Carboxyl-Terminated) https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-carboxyl-terminated https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-carboxyl-terminated#respond Thu, 08 May 2025 02:28:37 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5087
PEG-modified magnetic manganese-zinc ferrite nanocrystals (carboxyl-terminated) provide optimized biocompatibility, superior colloidal stability, and enhanced magnetic responsiveness. Designed for advanced applications, they ensure efficient dispersion, extended durability, and high-performance adaptability.
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Product Overview

PEG-modified magnetic manganese-zinc ferrite nanocrystals (carboxyl-terminated) are functionalized nanomaterials derived from manganese-zinc ferrite through PEG carboxylation modification. The PEG modification imparts excellent water solubility, biocompatibility, and reduces non-specific interactions with biological systems. It also lowers toxicity and extends circulation time in vivo. This material retains magnetic responsiveness, allowing for further functional modifications such as linking targeting groups or drug molecules, enabling more precise diagnostics and therapies.

Features

  • Good Water Solubility: After PEG modification, the nanocrystals disperse better in aqueous solutions, expanding their applicability.
  • Enhanced Biocompatibility: PEG treatment significantly reduces the potential biological risks of the nanocrystals, improving safety.
  • Magnetic Responsiveness: Retains the magnetic properties of manganese-zinc ferrite, allowing for responsiveness under an external magnetic field, enhancing the effectiveness of applications.

Applications

  • Magnetic Hyperthermia: Used for tumor and disease treatment through heat generation when exposed to an external magnetic field.
  • Biomolecule or Cell Separation: Used in separating specific biomolecules or cells, widely applied in biomedical fields.
  • Magnetic-responsive Smart Materials: Utilized in the development of smart materials that respond to magnetic fields, suitable for various high-tech applications.
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PEG-Modified Magnetic Manganese-Zinc Ferrite Nanocrystals (Methoxy-Terminated) https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-methoxy-terminated https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-methoxy-terminated#respond Thu, 08 May 2025 02:27:36 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5086
PEG-modified magnetic manganese-zinc ferrite nanocrystals (methoxy-terminated) provide optimized colloidal stability, superior magnetic responsiveness, and enhanced surface functionalization. Designed for advanced applications, they ensure efficient dispersion, extended durability, and high-performance adaptability.
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Product Overview

PEG-modified magnetic manganese-zinc ferrite nanocrystals (methoxy-terminated) are magnetic nanomaterials derived from manganese-zinc ferrite through PEG methoxy modification. PEG, a polymer with excellent water solubility and biocompatibility, improves the water solubility, stability, and biocompatibility of the nanocrystals when applied to their surface. The PEG modification also reduces non-specific interactions with biological systems, lowers toxicity, and extends the circulation time in vivo. This material can undergo further functionalization, such as the attachment of targeting groups or drug molecules, enabling precise diagnostics and therapy.

Features

  • Good Water Solubility: PEG modification enhances the dispersion of the nanocrystals, allowing for better solubility in water.
  • Enhanced Biocompatibility: PEG treatment reduces potential biological risks, improving safety.
  • Magnetic Responsiveness: Retains the magnetic properties of manganese-zinc ferrite, responding to external magnetic fields, offering broad application potential.

Applications

  • Magnetic Hyperthermia: Generates heat under an external magnetic field, widely used in the treatment of tumors and other diseases.
  • Biomolecule and Cell Separation: Used to separate specific biomolecules or cells, important for biomedical research and clinical applications.
  • Magnetic-Responsive Smart Materials: Used in the development of smart materials that respond to magnetic fields, suitable for high-tech applications.

 

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PEG-Modified Magnetic Manganese-Zinc Ferrite Nanocrystals (Amino-Terminated) https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-amino-terminated https://www.hi-tech-materials.com/zh/product/peg-modified-magnetic-manganese-zinc-ferrite-nanocrystals-amino-terminated#respond Thu, 08 May 2025 02:25:06 +0000 https://www.hi-tech-materials.com/?post_type=product&p=5084
PEG-modified magnetic manganese-zinc ferrite nanocrystals (amino-terminated) provide optimized biocompatibility, superior magnetic responsiveness, and enhanced colloidal stability. Designed for advanced applications, they ensure efficient dispersion, extended durability, and high-performance adaptability.
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Product Overview

PEG-modified magnetic manganese-zinc ferrite nanocrystals (amino-terminated) are magnetic nanomaterials derived from manganese-zinc ferrite through PEG amination modification. PEG, a polymer with excellent water solubility and biocompatibility, enhances the solubility, stability, and biocompatibility of the nanocrystals when applied to their surface. The PEG modification also helps reduce non-specific interactions with biological systems, lowers toxicity, and extends the circulation time in vivo. The material can undergo further functional modification, such as the attachment of targeting groups or drug molecules, enabling more precise diagnostics and therapies.

Features

  • Good Water Solubility: PEG modification allows the nanocrystals to disperse more effectively in aqueous solutions, making them suitable for a variety of solution environments.
  • Enhanced Biocompatibility: PEG treatment significantly reduces potential biological risks, improving safety.
  • Magnetic Responsiveness: Retains the magnetic properties of manganese-zinc ferrite, allowing for responsiveness to an external magnetic field, making it suitable for magnetic field-related applications.

Applications

  • Magnetic Hyperthermia: Generates heat under an external magnetic field, widely used in the treatment of tumors and other diseases.
  • Biomolecule and Cell Separation: Used for separating specific biomolecules or cells, applied in biomedical and life sciences fields.
  • Magnetic-Responsive Smart Materials: Used to develop smart materials that respond to magnetic fields, suitable for various high-tech applications.
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