Products Lab Consumables & Materials Lab Materials High Purity Lutetium (Lu) Sputtering Target / Powder / Wire / Block / Granule
High Purity Lutetium (Lu) Sputtering Target / Powder / Wire / Block / Granule

Lab Materials

High Purity Lutetium (Lu) Sputtering Target / Powder / Wire / Block / Granule

Item Number : LM-LU

Price varies based on specs and customizations


Chemical Formula
Lu
Purity
3N
Shape
discs / wire / block / powder / plates / column targets / step target / custom-made
ISO & CE icon

Shipping:

Contact us to get shipping details Enjoy On-time Dispatch Guarantee.

We are pleased to offer laboratory-grade Lutetium (Lu) materials at competitive prices. Our strength lies in the production and customization of Lutetium (Lu) materials with varying purities, shapes, and sizes, tailored to meet your specific needs.

We offer an extensive selection of sputtering targets (circular, square, tubular, irregular), coating materials, cylinders, cones, particles, foils, powders, 3D printing powders, nanometer powders, wire rods, ingots, blocks, and other specifications to choose from.

Details

Lutetium (Lu) Sputtering Target
Lutetium (Lu) Sputtering Target

About Lutetium (Lu)

Lutetium is an important material in the field of material science due to its unique properties. One of its notable properties is its high density, making lutetium tantalate an ideal host for x-ray phosphors. Moreover, lutetium is used as a dopant in matching lattice parameters of certain substrate garnet crystals.

Lutetium is available in different forms, including high purity sputtering targets, metal and compounds with purities ranging from 99% to 99.999%. High purity lutetium oxide powder is also available in elemental or metallic forms, such as pellets, rod, wire, and granules for evaporation source material purposes.

Additionally, lutetium oxide is available in powder and dense pellet form for optical coating and thin film applications. Lutetium fluorides, another insoluble form of lutetium, are also utilized in metallurgy, chemical and physical vapor deposition, and some optical coatings.

Finally, lutetium can be manufactured as soluble compounds, such as chlorides, nitrates, and acetates at specified stoichiometries.

FAQ

What is Physical vapor deposition (PVD)?

Physical vapor deposition (PVD) is a technique for depositing thin films by vaporizing a solid material in a vacuum and then depositing it onto a substrate. PVD coatings are highly durable, scratch-resistant, and corrosion-resistant, making them ideal for a variety of applications, from solar cells to semiconductors. PVD also creates thin films that can withstand high temperatures. However, PVD can be costly, and the cost varies depending on the method used. For instance, evaporation is a low-cost PVD method, while ion beam sputtering is rather expensive. Magnetron sputtering, on the other hand, is more expensive but more scalable.

What is sputtering target?

A sputtering target is a material used in the process of sputter deposition, which involves breaking up the target material into tiny particles that form a spray and coat a substrate, such as a silicon wafer. Sputtering targets are typically metallic elements or alloys, although some ceramic targets are available. They come in a variety of sizes and shapes, with some manufacturers creating segmented targets for larger sputtering equipment. Sputtering targets have a wide range of applications in fields such as microelectronics, thin film solar cells, optoelectronics, and decorative coatings due to their ability to deposit thin films with high precision and uniformity.

What are high purity materials?

High purity materials refer to substances that are free from impurities and possess a high level of chemical homogeneity. These materials are essential in various industries, particularly in the field of advanced electronics, where impurities can significantly affect the performance of devices. High purity materials are obtained through various methods, including chemical purification, vapor-phase deposition, and zone refining. In the preparation of electronic grade single crystal diamond, for example, a high-purity raw material gas and an efficient vacuum system are necessary to achieve the desired level of purity and homogeneity.

What is magnetron sputtering?

Magnetron sputtering is a plasma-based coating technique used to produce very dense films with excellent adhesion, making it a versatile method for creating coatings on materials that have high melting points and cannot be evaporated. This method generates a magnetically confined plasma near the surface of a target, where positively charged energetic ions collide with the negatively charged target material, causing atoms to be ejected or "sputtered." These ejected atoms are then deposited on a substrate or wafer to create the desired coating.

What are high purity metals?

High purity metals are single element materials with minimal impurities, making them ideal for use in research, development, and production of advanced technologies. These metals are used in the creation of advanced ceramics, electronic sensors, high-precision lenses and optics, LEDs, lasers, thermal barrier coatings, plasma screens, and more. KINTEK offers a diverse range of high-purity metals and binary and ternary metal compounds in various forms, compositions, dispersions, particle sizes, and weights for research and commercial applications. Strategic special metals are used in high-tech applications and can be expensive due to their elaborate processing.

How are sputtering targets made?

Sputtering targets are made using a variety of manufacturing processes depending on the properties of the target material and its application. These include vacuum melting and rolling, hot-pressed, special press-sintered process, vacuum hot-pressed, and forged methods. Most sputtering target materials can be fabricated into a wide range of shapes and sizes, with circular or rectangular shapes being the most common. Targets are usually made from metallic elements or alloys, but ceramic targets can also be used. Compound sputtering targets are also available, made from a variety of compounds including oxides, nitrides, borides, sulphides, selenides, tellurides, carbides, crystalline, and composite mixtures.

Why magnetron sputtering?

Magnetron sputtering is preferred due to its ability to achieve high precision in film thickness and density of coatings, surpassing evaporation methods. This technique is especially suitable for creating metallic or insulating coatings with specific optical or electrical properties. Additionally, magnetron sputtering systems can be configured with multiple magnetron sources.

What are high purity metals used for?

High purity metals are used in various advanced technologies that require specific properties, performance and quality. They are used to create fluorescent lighting, plasma screens, LEDs, high-precision lenses and optics, electronic sensors, advanced ceramics, thermal barrier coatings, lasers, and more. These metals are also used in the production of high-quality magnetic, thermoelectric, phosphor and semiconducting materials. KINTEK offers a diverse portfolio of high-purity metals, binary and ternary metal compounds, magnetic alloys, metal oxides, nanomaterials, and organometallic precursors in various forms, compositions, dispersions, particle sizes and weights for all research and commercial applications.

What is sputtering target used for?

Sputtering targets are used in a process called sputtering to deposit thin films of a material onto a substrate using ions to bombard the target. These targets have a wide range of applications in various fields, including microelectronics, thin film solar cells, optoelectronics, and decorative coatings. They allow for the deposition of thin films of materials onto a variety of substrates with high precision and uniformity, making them an ideal tool for producing precision products. Sputtering targets come in various shapes and sizes and can be specialized to meet the specific requirements of the application.

What are the materials used in thin film deposition?

Thin film deposition commonly utilizes metals, oxides, and compounds as materials, each with its unique advantages and disadvantages. Metals are preferred for their durability and ease of deposition but are relatively expensive. Oxides are highly durable, can withstand high temperatures, and can be deposited at low temperatures, but can be brittle and challenging to work with. Compounds offer strength and durability, can be deposited at low temperatures and tailored to exhibit specific properties.

The selection of material for a thin film coating is dependent on the application requirements. Metals are ideal for thermal and electrical conduction, while oxides are effective in offering protection. Compounds can be tailored to suit specific needs. Ultimately, the best material for a particular project will depend on the specific needs of the application.

What are the benefits of using high-purity metals?

Using high-purity metals offers several benefits. First, they provide consistent and reliable performance due to the absence of impurities that can cause variations in material properties. Second, high-purity metals enable the production of high-quality and high-performance products, ensuring better functionality and durability. Third, their low impurity levels reduce the risk of contamination in sensitive applications. High-purity metals also exhibit improved electrical conductivity, thermal conductivity, and corrosion resistance. Additionally, they are often preferred for their enhanced adhesion properties, making them suitable for various coating and thin film deposition processes.

What are sputtering targets for electronics?

Sputtering targets for electronics are thin discs or sheets of materials such as aluminum, copper, and titanium that are used to deposit thin films onto silicon wafers to create electronic devices like transistors, diodes, and integrated circuits. These targets are used in a process called sputtering, in which atoms of the target material are physically ejected from the surface and deposited onto a substrate by bombarding the target with ions. Sputtering targets for electronics are essential in the production of microelectronics and typically require high precision and uniformity to ensure quality devices.

What are the methods to achieve optimal thin film deposition?

To achieve thin films with desirable properties, high-quality sputtering targets and evaporation materials are essential. The quality of these materials can be influenced by various factors, such as purity, grain size, and surface condition.

The purity of sputtering targets or evaporation materials plays a crucial role, as impurities can cause defects in the resulting thin film. Grain size also affects the quality of the thin film, with larger grains leading to poor film properties. Additionally, the surface condition is crucial, since rough surfaces can result in defects in the film.

To attain the highest quality sputtering targets and evaporation materials, it is crucial to select materials that possess high purity, small grain size, and smooth surfaces.

Uses of Thin Film Deposition

Zinc Oxide-Based Thin Films

ZnO thin films find applications in several industries such as thermal, optical, magnetic, and electrical, but their primary use is in coatings and semiconductor devices.

Thin-Film Resistors

Thin-film resistors are crucial for modern technology and are used in radio receivers, circuit boards, computers, radiofrequency devices, monitors, wireless routers, Bluetooth modules, and cell phone receivers.

Magnetic Thin Films

Magnetic thin films are used in electronics, data storage, radio-frequency identification, microwave devices, displays, circuit boards, and optoelectronics as key components.

Optical Thin Films

Optical coatings and optoelectronics are standard applications of optical thin films. Molecular beam epitaxy can produce optoelectronic thin-film devices (semiconductors), where epitaxial films are deposited one atom at a time onto the substrate.

Polymer Thin Films

Polymer thin films are used in memory chips, solar cells, and electronic devices. Chemical deposition techniques (CVD) offer precise control of polymer film coatings, including conformance and coating thickness.

Thin-Film Batteries

Thin-film batteries power electronic devices such as implantable medical devices, and the lithium-ion battery has advanced significantly thanks to the use of thin films.

Thin-Film Coatings

Thin-film coatings enhance the chemical and mechanical characteristics of target materials in various industries and technological fields. Anti-reflective coatings, anti-ultraviolet or anti-infrared coatings, anti-scratch coatings, and lens polarization are some common examples.

Thin-Film Solar Cells

Thin-film solar cells are essential to the solar energy industry, enabling the production of relatively cheap and clean electricity. Photovoltaic systems and thermal energy are the two main applicable technologies.

Which industries commonly use high-purity metals?

High-purity metals find application in a wide range of industries. The semiconductor and electronics industries extensively use high-purity metals for integrated circuits, microprocessors, and other electronic components. The aerospace industry relies on high-purity metals for their lightweight and high-strength properties. Optics and photovoltaic industries utilize high-purity metals for precision optics and solar cells. High-purity metals also play a significant role in medical devices, automotive components, research laboratories, and advanced manufacturing processes.

What is the lifetime of a sputtering target?

The lifetime of a sputtering target depends on factors such as the material composition, purity, and the specific application it is being used for. Generally, targets can last for several hundred to a few thousand hours of sputtering, but this can vary widely depending on the specific conditions of each run. Proper handling and maintenance can also extend the lifetime of a target. In addition, the use of rotary sputtering targets can increase runtimes and reduce the occurrence of defects, making them a more cost-effective option for high volume processes.

Factors and Parameters that Influence Deposition of Thin Films

Deposition Rate:

The rate at which the film is produced, typically measured in thickness divided by time, is crucial for selecting a technology suitable for the application. Moderate deposition rates are sufficient for thin films, while quick deposition rates are necessary for thick films. It is important to strike a balance between speed and precise film thickness control.

Uniformity:

The consistency of the film across the substrate is known as uniformity, which usually refers to film thickness but can also relate to other properties such as the index of refraction. It is important to have a good understanding of the application to avoid under- or over-specifying uniformity.

Fill Capability:

Fill capability or step coverage refers to how well the deposition process covers the substrate's topography. The deposition method used (e.g., CVD, PVD, IBD, or ALD) has a significant impact on step coverage and fill.

Film Characteristics:

The characteristics of the film depend on the application's requirements, which can be categorized as photonic, optical, electronic, mechanical, or chemical. Most films must meet requirements in more than one category.

Process Temperature:

Film characteristics are significantly affected by process temperature, which may be limited by the application.

Damage:

Each deposition technology has the potential to damage the material being deposited upon, with smaller features being more susceptible to process damage. Pollution, UV radiation, and ion bombardment are among the potential sources of damage. It is crucial to understand the limitations of the materials and tools.

View more faqs for this product

4.8

out of

5

Excellent quality of Lu sputtering target, works well for our application.

Dr. Luna Ross

4.9

out of

5

KINTEK SOLUTION's Lu powder is highly pure and consistent. Great choice for our research.

Dr. Ayesha Elias

4.7

out of

5

Fast delivery and responsive customer service. Highly recommend their Lu wire.

Prof. Sebastian Nunez

4.8

out of

5

Great value for money. The Lu block is well-made and durable.

Dr. Ahmed Khan

4.6

out of

5

KINTEK SOLUTION's Lu sputtering target is of exceptional quality. Highly satisfied.

Prof. Maria Garcia

4.9

out of

5

The Lu granule is of high purity and precisely manufactured. Perfect for our thin film application.

Dr. Samuel Patel

4.7

out of

5

KINTEK SOLUTION's Lu sputtering target is reliable and produces consistent results. Great product.

Prof. Isabella Johnson

4.8

out of

5

Excellent quality and fast delivery. Highly recommend their Lu powder.

Dr. Oliver Chen

PDF of LM-LU

Download

Catalog of Lab Materials

Download

Catalog of Sputtering Targets

Download

Catalog of High Purity Materials

Download

Catalog of Thin Film Deposition Materials

Download

Catalog of High Pure Metals

Download

REQUEST A QUOTE

Our professional team will reply to you within one business day. Please feel free to contact us!

Related Products

High Purity Lanthanum (La) Sputtering Target / Powder / Wire / Block / Granule

High Purity Lanthanum (La) Sputtering Target / Powder / Wire / Block / Granule

Get high-quality Lanthanum (La) materials at affordable prices for your laboratory needs. Choose from our wide range of tailored purities, shapes, and sizes to suit your specific requirements. Explore our selection of sputtering targets, coating materials, powders, wire rods, and more.

High Purity Tungsten (W) Sputtering Target / Powder / Wire / Block / Granule

High Purity Tungsten (W) Sputtering Target / Powder / Wire / Block / Granule

Find high-quality Tungsten (W) materials for your laboratory needs at affordable prices. We offer customized purities, shapes, and sizes of sputtering targets, coating materials, powders, and more.

Lithium Titanate (Li2TiO3) Sputtering Target / Powder / Wire / Block / Granule

Lithium Titanate (Li2TiO3) Sputtering Target / Powder / Wire / Block / Granule

Get high-quality Lithium Titanate materials for your lab needs at affordable prices. We offer tailored solutions with different shapes, sizes, and purities. Find sputtering targets, powders, and more in various specifications.

High Purity Europium (Eu) Sputtering Target / Powder / Wire / Block / Granule

High Purity Europium (Eu) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Europium (Eu) materials for your lab? Check out our affordable options, tailored to your needs with various purities, shapes, and sizes. Choose from a range of sputtering targets, coating materials, powders, and more.

Lanthanum Fluoride (LaF3) Sputtering Target / Powder / Wire / Block / Granule

Lanthanum Fluoride (LaF3) Sputtering Target / Powder / Wire / Block / Granule

Looking for affordable Barium Titanate (LaF3) materials for your lab? Our tailored solutions fit your unique needs, with a wide range of shapes, sizes, and purities available. Explore our selection of sputtering targets, coating materials, powders, and more.

High Purity Terbium (Tb) Sputtering Target / Powder / Wire / Block / Granule

High Purity Terbium (Tb) Sputtering Target / Powder / Wire / Block / Granule

Buy high-quality Terbium (Tb) materials at affordable prices for your laboratory needs. We offer custom shapes, sizes, and purities to fit your unique requirements. Explore our range of sputtering targets, coatings, powders, and more.

Lithium Tantalate (LiTaO3) Sputtering Target / Powder / Wire / Block / Granule

Lithium Tantalate (LiTaO3) Sputtering Target / Powder / Wire / Block / Granule

Find affordable Lithium Tantalate materials for laboratory use at our company. We specialize in producing tailored shapes and sizes to suit your unique needs, including sputtering targets, coating materials, and more.

Iithium titanate (LiTiO3) Sputtering Target / Powder / Wire / Block / Granule

Iithium titanate (LiTiO3) Sputtering Target / Powder / Wire / Block / Granule

Get high-quality Iithium Titanate (LiTiO3) materials for your laboratory at reasonable prices. Our tailored solutions cater to different purities, shapes, and sizes, including sputtering targets, coating materials, powders, and more. Order now!

High Purity Erbium (Er) Sputtering Target / Powder / Wire / Block / Granule

High Purity Erbium (Er) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Erbium materials for your lab? Look no further than our affordable selection of tailored Erbium products, available in a range of purities, shapes, and sizes. Shop sputtering targets, coating materials, powders, and more today!

High Purity Lead (Pb) Sputtering Target / Powder / Wire / Block / Granule

High Purity Lead (Pb) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Lead (Pb) materials for your laboratory needs? Look no further than our specialized selection of customizable options, including sputtering targets, coating materials, and more. Contact us today for competitive pricing!

High Purity Titanium (Ti) Sputtering Target / Powder / Wire / Block / Granule

High Purity Titanium (Ti) Sputtering Target / Powder / Wire / Block / Granule

Shop for high-quality Titanium (Ti) materials at reasonable prices for laboratory use. Find a wide range of tailored products to suit your unique needs, including sputtering targets, coatings, powders, and more.

High Purity Tellurium (Te) Sputtering Target / Powder / Wire / Block / Granule

High Purity Tellurium (Te) Sputtering Target / Powder / Wire / Block / Granule

Discover our range of high-quality Tellurium (Te) materials for laboratory use at affordable prices. Our expert team produces custom sizes and purities to fit your unique needs. Shop sputtering targets, powders, ingots, and more.

High Purity Neodymium (Nd) Sputtering Target / Powder / Wire / Block / Granule

High Purity Neodymium (Nd) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Neodymium (Nd) materials? Our lab-grade Nd materials come in a variety of purities, shapes, and sizes to suit your needs. Shop sputtering targets, coatings, particles, and more today.

High Purity Cerium Oxide (CeO2) Sputtering Target / Powder / Wire / Block / Granule

High Purity Cerium Oxide (CeO2) Sputtering Target / Powder / Wire / Block / Granule

High-quality Cerium Oxide (CeO2) materials for laboratory use at affordable prices. Customizable shapes & sizes. Sputtering targets, powders, 3D printing powders & more. Order now!

High Purity Ytterbium (Yb) Sputtering Target / Powder / Wire / Block / Granule

High Purity Ytterbium (Yb) Sputtering Target / Powder / Wire / Block / Granule

Looking for Ytterbium (Yb) materials for your laboratory? Our expertise is in producing tailored Yb materials of various purities, shapes, and sizes. Choose from our wide range of specifications and sizes, including sputtering targets, coating materials, powders, and more. Affordable prices.

Yttrium Fluoride (YF3) Sputtering Target / Powder / Wire / Block / Granule

Yttrium Fluoride (YF3) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Yttrium Fluoride (YF3) materials for laboratory use? Our affordable prices and expertise in producing custom shapes and sizes make us the ideal choice. Shop sputtering targets, coating materials, powders, and more today.

Ytterbium Fluoride (YbF3) Sputtering Target / Powder / Wire / Block / Granule

Ytterbium Fluoride (YbF3) Sputtering Target / Powder / Wire / Block / Granule

Buy high-quality Ytterbium Fluoride (YbF3) materials for your laboratory needs at affordable prices. We offer customized shapes and sizes, including sputtering targets, coating materials, powders, and more. Contact us today!

High Purity Cerium (Ce) Sputtering Target / Powder / Wire / Block / Granule

High Purity Cerium (Ce) Sputtering Target / Powder / Wire / Block / Granule

Looking for high-quality Cerium (Ce) materials for your laboratory? Our expertise lies in producing and tailoring materials of different purities, shapes, and sizes to suit your unique requirements. We offer a range of specifications and sizes, including sputtering targets, coating materials, powders, and more, all at reasonable prices.

Lithium cobaltate (LiCoO2) Sputtering Target / Powder / Wire / Block / Granule

Lithium cobaltate (LiCoO2) Sputtering Target / Powder / Wire / Block / Granule

Find high-quality Lithium cobaltate (LiCoO2) materials tailored to your needs at reasonable prices. Discover our range of sizes and specifications for sputtering targets, coatings, powders, and more.