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Home > Catalyst and Auxiliary > Precious Metal Catalysts (Find 13 items)

Precious Metal Catalysts

Silver triflate

(2923-28-6)
light beige crystalline powder

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Silver acetate

(563-63-3)
Oxidizing agent for use in liquid ammonia: Kline, Kershner, Inorg. Chem. 5, 932 (1966). In the health field, silver acetate-containing products have been used in gum, spray, and lozenges to deter smokers from smoking. The silver in these products, when mixed with smoke, creates an unpleasant metallic taste in the smoker's mouth, thus deterring them from smoking. Lozenges containing 2.5 mg of silver acetate showed "modest efficacy" on 500 adult smokers tested over a three-month period. However,

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Sodium isopropyl xanthate

(140-93-2)
Mainly used for flotation collection of various non-ferrous metal sulfide ores.

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Silver methanesulfonate

(2386-52-9)
Gold Catalysts—21st Century'Gold Rush' Catalyst for: .Heterocyclization reactions . CO2-mediated rearrangement of propargyl alcohols for the synthesis of a,?-unsaturated ketones and esters

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stereoisomer of Hexacarbonyldi-μ-chlorodichlorodiruthenium

(22941-53-3)

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Precious metal catalyst is a precious metal material that can change the speed of a chemical reaction without itself participating in the final product of the reaction. Almost all precious metals can be used as catalysts, but commonly used are platinum, palladium, rhodium, silver, ruthenium, etc. Among them, platinum and rhodium are the most widely used. According to the type of catalytic reaction, precious metal catalysts can be divided into two categories: homogeneous catalysis and heterogeneous catalysis. "Precious Metal Catalysts" on ECHEMI mainly supplies raw materials for Precious Metal Catalysts.

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Frequently Asked Questions

What are Precious Metal Catalysts and how do they work?

Precious Metal Catalysts are substances—typically based on metals like platinum, palladium, rhodium, or ruthenium—that accelerate chemical reactions without being consumed in the process. They are widely used in industries such as petrochemicals, automotive (e.g., catalytic converters), and pharmaceuticals due to their high efficiency, selectivity, and stability under demanding conditions. These catalysts lower activation energy, enabling faster and cleaner reactions with reduced byproducts.

What are the most common applications of Precious Metal Catalysts?

Precious Metal Catalysts are essential in several key applications:1. Automotive exhaust systems, where they convert harmful gases like CO, NOx, and hydrocarbons into less toxic emissions.2. Chemical synthesis, especially in hydrogenation, oxidation, and cross-coupling reactions in fine chemicals and APIs.3. Fuel cells, where platinum-based catalysts facilitate oxygen reduction.4. Environmental remediation processes, including VOC abatement and industrial emission control.Their versatility makes them indispensable in sustainable and high-performance industrial processes.

How do I choose a reliable supplier for Precious Metal Catalysts?

When selecting a supplier for Precious Metal Catalysts, consider these critical factors:1. Certifications and compliance with international standards (e.g., ISO, REACH, RoHS).2. Technical expertise and ability to provide customized catalyst formulations.3. Traceability and purity documentation for the precious metals used.4. Recycling or recovery programs, which are important due to the high cost and scarcity of these metals.5. Proven track record in your specific industry (e.g., pharma, automotive, or chemical manufacturing).A trustworthy supplier ensures consistent performance, regulatory compliance, and long-term cost efficiency.

Why are Precious Metal Catalysts more expensive than other catalysts?

Precious Metal Catalysts command higher prices primarily due to the rarity and market value of metals like platinum, palladium, and rhodium. Additionally, their superior catalytic activity, longevity, and selectivity often justify the cost by reducing waste, energy consumption, and the need for frequent replacement. In many high-value applications—such as pharmaceutical synthesis or emission control—the performance benefits outweigh the initial investment, making them economically viable over time.

Can Precious Metal Catalysts be recycled or reused?

Yes, Precious Metal Catalysts can and should be recycled due to the high economic and environmental value of the metals involved. Specialized recovery processes—such as pyrometallurgy, hydrometallurgy, or leaching—can extract and purify the active metals from spent catalysts. Many reputable suppliers offer take-back or recycling services, ensuring resource sustainability and cost recovery. Proper recycling also supports compliance with environmental regulations and circular economy initiatives.

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