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Organometalate

Calcium disodium EDTA

(62-33-9)
Ethylenediaminetetraacetic acid disodium calcium is used as a separating agent. It is a stable and water-soluble metal chelate that can chelate multivalent iron ions. The exchange of calcium and iron forms a more stable chelate. As a trace element nutrient, it is used in the food industry, agriculture and animal husbandry.

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Sodium thioglycolate

(367-51-1)
In cold-waving of hair; as depilatory; in bacteriology for the preparation of thioglycolate media; as analytical reagent, see Thioglycolic Acid.

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Propylparaben sodium

(35285-69-9)
The broad-spectrum antibacterial activity can inhibit Gram-negative and positive bacteria and has a strong inhibitory effect on yeasts and molds. It is widely used in the preservative of cosmetics, medicine, food and other industrial products, and also as a feed preservative. This product can be used alone, or can be compounded with other parabens to achieve a better antiseptic effect.

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Sodium diethyldithiocarbamate

(148-18-5)
An inhibitor of superoxide dismutase, having both antioxidant and oxidant effects.

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Ferrous oxalate dihydrate

(6047-25-2)
Used as analytical reagent and developer, used as a new battery material for the production of lithium ferrous phosphate, also used in the pharmaceutical industry

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N-Hydroxysulfosuccinimide sodium salt

(106627-54-7)
Sulfo-NHS is used for preparing hydrophilic active esters, e.g. for crosslinking agents.

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Organometalate, also known as organic conductor, is a type of conductive organic charge transfer compound. Such complexes are composed of electron donors and electron acceptors. Typical examples are TTF-TCNQ, TTF-TNAF complex. According to the degree of charge transfer, it can be divided into molecular crystals and charge transfer crystals.

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Frequently Asked Questions

What is an Organometalate?

An organometalate is a type of coordination compound that contains at least one direct bond between a metal atom and a carbon atom of an organic group. These compounds are widely used in catalysis, materials science, and pharmaceutical synthesis due to their unique reactivity and structural properties. Organometalates play a critical role in modern organic chemistry, especially in cross-coupling reactions and polymerization processes.

What are common applications of Organometalates in industry?

Organometalates are commonly used in several industrial applications, including:1. Catalysis—particularly in hydrogenation, hydroformylation, and C–C bond-forming reactions like Suzuki or Heck couplings.2. Pharmaceutical manufacturing—as intermediates or catalysts in the synthesis of active pharmaceutical ingredients (APIs).3. Materials science—for developing conductive polymers, OLEDs, and other advanced functional materials.4. Agrochemical production—to enable efficient synthesis of complex organic molecules.Their versatility makes them indispensable in high-value chemical processes.

How do I choose a reliable supplier for Organometalate compounds?

When selecting a supplier for organometalate compounds, consider the following criteria:1. Regulatory compliance—ensure the supplier adheres to ISO, GMP, or REACH standards where applicable.2. Purity and analytical documentation—reputable suppliers provide certificates of analysis (CoA), NMR, HPLC, or GC data.3. Technical support—look for vendors with in-house chemists who can assist with application-specific guidance.4. Scalability and consistency—verify they can reliably supply both R&D quantities and bulk production volumes.5. Safety and handling protocols—especially important for air- or moisture-sensitive organometalates.Choosing a qualified supplier ensures product quality and process reliability.

Are Organometalates hazardous to handle?

Many organometalate compounds can be hazardous due to their reactivity, toxicity, or sensitivity to air and moisture. For example, organolithium or Grignard reagents are pyrophoric, while some transition metal complexes may pose environmental or health risks. Always consult the Safety Data Sheet (SDS) before handling. Use appropriate personal protective equipment (PPE), work under inert atmosphere when required, and follow institutional safety guidelines. Proper storage and disposal procedures are essential to ensure laboratory and workplace safety.

What factors affect the stability of Organometalate reagents?

The stability of organometalate reagents depends on several key factors:1. Metal identity—heavy metals often form more stable complexes than alkali metals.2. Ligand structure—bulky or electron-donating ligands can enhance stability.3. Solvent compatibility—some organometalates decompose in protic solvents but remain stable in dry, aprotic media like THF or toluene.4. Exposure to air or moisture—many are highly sensitive and require handling under nitrogen or argon.5. Temperature—storage at low temperatures (e.g., –20°C) often prolongs shelf life.Understanding these variables helps maintain reagent integrity during storage and use.

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