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Home > Organic Chemistry > Organometallic Compounds (Find 143 items)

Organometallic Compounds

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Trisodium citrate

(68-04-2)
Trisodium citrate has the chemical formula of Na3C6H5O7. It is sometimes referred to simply as sodium citrate, though sodium citrate can refer to any of the three sodium salts of citric acid. It possesses a saline, mildly tart flavor. It is mildly basic and can be used along with citric acid to make biologically compatible buffers.

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Tin

(7440-31-5)
Tin is primarily produced from the ore cassiterite (SnO2). It has a variety of industrial and domestic uses; its usefulness stems from its pliability and ability to readily form compounds and alloys with other metals, inorganic compounds, and organic compounds. Tin metal is used to line cans for storing and transporting food, beverages, and aerosols. Bronze is an alloy of tin and copper; pewter is an alloy of tin with various amounts of antimony, copper, bismuth, and sometimes lead. Soldering co

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Tetrasodium EDTA

(64-02-8)
Ethylenediaminetetraacetic acid disodium is used in detergents, dyeing aids, fiber treatment agents, cosmetic additives, food additives, agricultural fertilizers and marine aquaculture.

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Tripotassium citrate monohydrate

(6100-05-6)
As a food additive, food-grade potassium citrate can be used to adjust acidity and the source of potassium nutrition; it is used in the pharmaceutical industry for hypokalemia and potassium deficiency and alkalization of Chemicalbook urine. It helps to reduce the acidity of urine and has treatment Kidney disease and gout; it can also be made into high-efficiency compound fertilizers, and can also be used in papermaking, gilding and other industries.

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Titanium tetrabutoxide

(5593-70-4)
Used in transesterification reaction, used in coatings to improve heat resistance (heat-resistant to 500°C), improve the adhesion of coatings, rubber and plastics to metal surfaces, and also used as a condensation catalyst and crosslinking agent.

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Titanocene dichloride

(1271-19-8)
Catalyst; with aluminum alkyls as Ziegler-Natta polymerization catalyst.

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Triethylaluminum

(97-93-8)
It can be used for the preparation of tertiary alcohols, secondary alcohols and polyolefin catalysts, and can also be used as a raw material for the preparation of other metal organic compounds and aluminum plating. The pure product can be used in metal organic chemical vapor deposition (MOCVD) process and can be used as rocket fuel.

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Trimethylaluminum

(75-24-1)
Trimethylaluminum is used as an olefin polymerization catalyst and a pyrotechnic fuel. It is also used to produce linear primary alcohols and olefins, etc. It can be used for vapor deposition of metal organic compounds.

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An organic compound formed by directly connecting a metal atom and a carbon atom to form a bond is called an organometallic compound, that is, a compound containing an M-C bond. Organometallic compounds are also called metallo-organic compounds. Organometallic compounds are a class of extremely useful synthetic reagents. In recent years, due to the promotion and application of various organometallic compounds in the study of biological activity, the research and application of the bioactivity and pharmacological effects of organometallic compounds have been increasingly developed.

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Organic compounds and organometallic compounds

In the most restrictive way, organic compounds are substances that are primarily made up of carbon and hydrogen elements. Research has proven that organic compounds are composed of very few elements, in addition to carbon and hydrogen, there are oxygen, sulfur, nitrogen, phosphorus, halogens, and other elements.

Organic compounds that contain at least one bond between a carbon atom and a metal atom are organometallic compounds. The different ways in which organometallic compounds are transforming our lives are remarkable. In addition to being key ingredients in adhesives, composites, and coatings, they are also at the forefront of the pharmaceutical industry. They are well stabilized in solution. Organolithium compounds, organomagnesium compounds, and organoaluminum compounds are strongly reducing agents and can be used as catalysts in many pharmaceutical projects.

Here are several organometallic compounds examples:

● Molasses

● Calcium stearate

● Dibutyltin dilaurate

● Trisodium citrate

Frequently Asked Questions

What are organometallic compounds and why are they important in chemical synthesis?

Organometallic compounds are chemical substances that contain at least one bond between a carbon atom of an organic molecule and a metal atom. They play a crucial role in modern synthetic chemistry, especially in catalysis, pharmaceutical manufacturing, and materials science. Common examples include Grignard reagents, organolithium compounds, and transition metal complexes like palladium catalysts used in cross-coupling reactions. Their unique reactivity enables the formation of complex molecular structures with high selectivity and efficiency.

What are common applications of organometallic compounds in industry?

Organometallic compounds are widely used across several industries:1. In pharmaceuticals, they serve as key reagents or catalysts in synthesizing active pharmaceutical ingredients (APIs).2. In agrochemicals, they help build complex molecules for pesticides and herbicides.3. In polymer production, they act as catalysts for creating specialty plastics and elastomers.4. In electronics, certain organometallics are used in OLEDs and semiconductor manufacturing.Their versatility makes them indispensable in advanced chemical manufacturing processes.

How should organometallic compounds be handled and stored safely?

Due to their high reactivity—often with air, moisture, or water—organometallic compounds require careful handling and storage. Best practices include:1. Storing under inert atmospheres such as nitrogen or argon.2. Using airtight, moisture-resistant containers, often with septum seals.3. Keeping them in cool, dry environments away from oxidizers or protic solvents.4. Following strict safety protocols, including the use of personal protective equipment (PPE) and working in fume hoods.Always consult the Safety Data Sheet (SDS) for specific handling instructions before use.

What factors should buyers consider when sourcing high-quality organometallic compounds?

When sourcing organometallic compounds, buyers should evaluate:1. Purity and assay specifications, as impurities can significantly affect reaction outcomes.2. Supplier certifications, such as ISO or REACH compliance, and adherence to Good Manufacturing Practices (GMP) where applicable.3. Packaging integrity and shipping conditions, especially for air- or moisture-sensitive materials.4. Technical support availability and batch-to-batch consistency.5. Regulatory documentation and traceability of raw materials.Selecting a reputable supplier ensures reliability, safety, and performance in sensitive chemical applications.

Are organometallic compounds used in green chemistry initiatives?

Yes, organometallic compounds are integral to many green chemistry strategies. Transition metal catalysts—such as those based on palladium, nickel, or iron—enable reactions with higher atom economy, lower energy requirements, and reduced waste generation. For example, cross-coupling reactions using organometallic catalysts allow chemists to construct complex molecules in fewer steps and with less solvent use. Additionally, research into earth-abundant and less toxic metals aims to replace rare or hazardous metals, further aligning organometallic chemistry with sustainability goals.

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