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Home > Inorganic Chemistry > Elementary Substance (Find 11 items)

Elementary Substance

Explore elementary substances, including the versatile boron element and uncover the benefits of boron and its diverse applications. Check the CAS NO., properties, and SDS of each. Procure raw copper wire and other elementary substances from accredited suppliers, accessing comprehensive product details.

Titanium

(7440-32-6)
As alloy with copper and iron in titanium bronze; as addition to steel to impart great tensile strength; to aluminum to impart resistance to attack by salt solutions and by organic acids; to remove traces of oxygen and nitrogen from incandescent lamps.Surgical aid (fracture fixation).

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Tungsten

(7440-33-7)
To increase hardness, toughness, elasticity, and tensile strength of steel; manufacture of alloys; manufacture of filaments for incandescent lamps and in electron tubes; in contact points for automotive, telegraph, radio and television apparatus; in phonograph needles.Tungsten carbides (W2C, WC) used in rock drills, metal-cutting tools, wire-drawing dies.WC used as catalyst instead of platinum:Bennett et al., Science 184, 563 (1974).

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Tellurium

(13494-80-9)
As coloring agent in chinaware, porcelains, enamels, glass; reagent in producing black finish on silverware; in manufacture of special alloys of marked electrical resistance; in semiconductor research.

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Tantalum

(7440-25-7)
In pen points; analytical weights; apparatus and instruments for chemical, surgical, and dental use instead of platinum, in tantalum capacitors (a type of electrolytic condenser, trademarked "Tantalytic").

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Terbium

(7440-27-9)
Terbium is primarily used in phosphors, particularly in fluorescent lamps and as the high intensity green emitter used in projection televisions, such as the Yttrium-Aluminum-Garnet (Tb:YAG) variety.
Terbium responds efficiently to x-ray excitation and is, therefore, used as an x-ray phosphor.
Terbium compounds are useful biological probes due to the long emission lifetime of terbium.
Terbium alloys are also used in magneto-optic recording films, such as TbFeCo.
Terbium i

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Thulium

(7440-30-4)
Thulium is relatively scarce and expensive, which limits its commercial uses. Thulium-170,which is a radioactive isotope of thulium produced by fission in nuclear reactors, can be usedas small, portable X-ray sources. It also has limited use as an alloy metal with other metals andhas experimentally been used in lasers. (Note: Of all the isotopes of thulium, only thulium-169 is stable and nonradioactive.) Thulium(III) carbonate hydrate has specialized uses in ceramics, glass, phosphors, lasers, a

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t-Boc-N-Amido-PEG4-Azide

(940951-99-5)

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A substance composed of atoms of an element that exists in a stable form in a free form is called an Elementary Substance. The element must be a pure substance composed of one element, so the mixture cannot be element. Generally speaking, the nature of the element is closely related to the nature of its elements.

More Information

Elementary substances are fundamental components utilized in various fields, ranging from industry to scientific research. The synthesis of elementary substances typically involves intricate processes wherein raw materials undergo transformations to yield pure elemental forms. These processes may include extraction, purification, and refining techniques tailored to the specific properties of each substance.

Different classes of elementary substances exist, each with distinct characteristics and applications. For instance, metals such as iron, copper, and aluminum are utilized in construction, manufacturing, and electronics due to their conductivity and strength. Non-metals like sulfur and phosphorus find applications in agriculture, pharmaceuticals, and chemical synthesis. In scientific research, elementary substances serve as fundamental components for studying chemical reactions, elucidating atomic structures, and advancing our understanding of the natural world.

Common elementary substances include:
● Hydrogen
● Oxygen
● Carbon
● Nitrogen
● Boron

Frequently Asked Questions

What is an elementary substance?

An elementary substance, also known as a chemical element in its pure form, consists of only one type of atom and cannot be broken down into simpler substances by chemical means. Examples include oxygen (O₂), nitrogen (N₂), iron (Fe), and gold (Au). These substances are fundamental building blocks in chemistry and play essential roles in industrial, scientific, and commercial applications.

How are elementary substances used in industry?

Elementary substances have diverse industrial applications. For instance, pure metals like copper and aluminum are used in electrical wiring and construction due to their conductivity and strength. Gaseous elements such as hydrogen and oxygen are critical in chemical synthesis, fuel cells, and medical applications. Noble gases like argon are used in lighting and welding. Understanding the properties of each elementary substance helps optimize their use across sectors.

What’s the difference between an elementary substance and a compound?

An elementary substance contains atoms of only one chemical element and cannot be chemically decomposed into simpler substances. In contrast, a compound consists of two or more different elements chemically bonded in fixed proportions—such as water (H₂O) or sodium chloride (NaCl). While compounds can be broken down into their constituent elements through chemical reactions, elementary substances remain unchanged under normal chemical processes.

Where can I buy high-purity elementary substances for laboratory or industrial use?

High-purity elementary substances can be sourced from certified chemical suppliers and specialty gas companies that comply with international quality standards such as ISO 9001 and ISO 17025. Look for vendors offering detailed product specifications, safety data sheets (SDS), and batch-specific Certificates of Analysis. Reputable suppliers often provide various purity grades tailored to applications in electronics, metallurgy, catalysis, or academic research.

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