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Praseodymium Calcium Manganate Sputtering Targets

Praseodymium Calcium Manganate Sputtering Targets

Praseodymium Calcium Manganate is a compound with good electrical and magnetic properties. It is a mixture of praseodymium, calcium, manganese, and oxygen. Usage in semiconductors and optical applications is ideal due to its various forms of utilization. Production of praseodymium calcium manganate thin films involved different methods such as pulsed laser deposition, molecular beam epitaxy, and magnetron sputtering. Its applications include ferroelectric, gate dielectric and CMOS (complementary metal-oxide-semiconductor). Sputtering Targets are available in large quantities for a commercial reason and also in smaller amounts for research purposes. Provisions are tested in the state-of-the-art laboratories to maintain high standards of quality with more than 99.9 % purity of elements. These ultra-thin films work with not only old devices but also with contemporary equipment. It will guarantee perfect outcomes every time. The range of targets is also provided in several sizes and shapes to cater to all your needs. We ensure protection from environmental contaminants and protection during shipment.

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  • Praseodymium Calcium Manganate (indium)(Pr0.7Ca0.3MnO3) Sputtering Targets, Size:2'' ,Thickness:0.125'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, indium, Purity: 99.9%, Size: 2'', Thickness: 0.125''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, indium Purity: 99.9%, Size: 2'', Thickness: 0.125''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse...
    NG0ST01PR21
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:4'' ,Thickness:0.250'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 4'', Thickness: 0.250''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 4'', Thickness: 0.250''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR20
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:4'' ,Thickness:0.125'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 4'', Thickness: 0.125''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 4'', Thickness: 0.125''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR19
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:3'' ,Thickness:0.250'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 3'', Thickness: 0.250''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 3'', Thickness: 0.250''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR18
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:3'' ,Thickness:0.125'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 3'', Thickness: 0.125''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 3'', Thickness: 0.125''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR17
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:2'' ,Thickness:0.250'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 2'', Thickness: 0.250''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 2'', Thickness: 0.250''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR16
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:2'' ,Thickness:0.125'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 2'', Thickness: 0.125''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 2'', Thickness: 0.125''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR15
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  • Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:1'' ,Thickness:0.250'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 1'', Thickness: 0.250''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 1'', Thickness: 0.250''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR14
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  •  Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Size:1'' ,Thickness:0.125'' , Purity: 99.9%

    Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets, Purity: 99.9%, Size: 1'', Thickness: 0.125''

      Praseodymium Calcium Manganate (Pr0.7Ca0.3MnO3) Sputtering Targets Purity: 99.9%, Size: 1'', Thickness: 0.125''  Sputtering is a proven technology capable of depositing thin films from a wide variety of materials on to diverse substrate...
    NG0ST01PR13
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What are Graphene Nanoplatelets?

Graphene nanoplatelets (GNPs) are nanoscale particles made of multiple stacked layers of graphene, typically a few nanometers thick with diameters ranging from submicron to several microns. They deliver much of graphene's performance, including high electrical and thermal conductivity and excellent mechanical strength, while remaining easier to produce and more cost-effective for large-scale use. Their platelet shape and high aspect ratio make them especially valuable as additives, as explained in our overview of graphene nanoplatelet properties and applications.

Properties of Graphene Nanoplatelets

  • High electrical conductivity for conductive composites and coatings
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Applications of Graphene Nanoplatelets

Graphene nanoplatelets are used across a wide range of industries, thanks to their balance of performance and cost. They reinforce polymer and composite materials, improve electrical and thermal conductivity in coatings and inks, and enhance electrode performance in batteries and supercapacitors. Their conductive network also supports EMI shielding, anti-static coatings, and thermal interface materials, and you can explore some of the best application areas of graphene nanoplatelets in more detail. The electrical properties of GNPs make them a practical choice wherever conductivity and mechanical strength are needed together.

Graphene Nanoplatelets vs Graphene Oxide

Graphene nanoplatelets and graphene oxide serve different needs. GNPs are conductive, hydrophobic, and ideal for reinforcement and thermal or electrical enhancement, while graphene oxide is oxygen-rich, water-dispersible, and better suited to functionalization and membranes. Our comparison of GNPs versus graphene oxide for composites can help you choose the right material for your formulation.

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The global graphene nanoplatelets market continues to grow rapidly, driven by demand from composites, coatings, energy storage, and automotive sectors. Graphene nanoplatelet price varies depending on surface area, thickness, purity, and order volume, from research-scale grams to bulk industrial quantities. As a trusted graphene nanoplatelets supplier, Nanografi offers transparent, competitive pricing across a range of grades, so you can source the right material for your budget and application. Check the product listings above for up-to-date prices and specifications.

Frequently Asked Questions

Where can I buy graphene nanoplatelets?

You can buy graphene nanoplatelets directly from Nanografi. We supply GNPs in various surface areas and thicknesses for both research and industrial use, with worldwide shipping.

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Graphene is a single atomic layer of carbon, while graphene nanoplatelets consist of multiple stacked graphene layers. GNPs are more cost-effective and easier to process at scale, making them ideal for composites and coatings.

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