Catalyst and Auxiliary
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- • Polymer (472)
- • Precious Metal Catalysts (242)
- • Coupling Agent (8)
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- • Flame Retardants (11)
- • Petrochemical (28)
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Octadecanoic acid, reaction products with 2-[(2-aminoethyl)amino]ethanol and urea, di-Me sulfate-quaternized
CAS No: 71342-92-2
Formula: C18H36O2.C4H12N2O.C2H6O4S.CH4N2O
Categories: Catalyst and Auxiliary > UV Absorbers
Ethanol, 2,2′-iminobis-, compd. with α-fluoro-ω-[2-(phosphonooxy)ethyl]poly(difluoromethylene) (2:1)
CAS No: 65530-63-4
Formula: C4H11NO2.1/2(CF2)nC2H6FO4P
Categories: Catalyst and Auxiliary > Polymer
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DEA-C8-18 PERFLUOROALKYLETHYL PHOSPHATE
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N-(2,4-dimethylphenyl)morpholine-4-carboxamide
CAS No: 90053-14-8
Formula: C13H18N2O2
Categories: Catalyst and Auxiliary > Flame Retardants
Benzene, 1-isocyanato-2-(isocyanatomethyl)-
CAS No: 1026296-29-6
Formula: C9H6N2O2
Categories: Catalyst and Auxiliary > Polymer
5-Hexyl-2-[(1R,6R)-3-methyl-6-(1-methylethenyl)-2-cyclohexen-1-yl]-1,3-benzenediol
CAS No: 2552798-21-5
Formula: C22H32O2
Categories: Catalyst and Auxiliary > Petrochemical
Sodium;4-tetradecylbenzenesulfonic acid;hypochlorite
CAS No: 52906-84-0
Formula: C20H34ClNaO4S
Categories: Catalyst and Auxiliary > Antioxidants
DOWEX(R) 1X8
CAS No: 69772-06-1
Categories: Catalyst and Auxiliary > Polymer
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Frequently Asked Questions
When selecting a catalyst, it is important to consider the type of reaction, operating temperature, pressure, solvents involved, and desired selectivity. Other key factors include catalyst lifetime, regeneration ability, and compatibility with your process. On ECHEMI, you can browse a wide range of catalyst and auxiliary products and compare specifications from multiple global suppliers to find the best option for your needs.
Synonyms for catalyst include accelerator, promoter, stimulant, etc. A catalyst is a substance that speeds up a chemical reaction without undergoing any permanent changes. According to the catalyst definition, it doesn't alter the thermodynamics or the catalyst meaning of the reaction, but it lowers the activation energy required for the reaction to occur. Basically, a catalyst facilitates the reaction process and increases the conversion rate without being consumed in the reaction itself. It may exist in a variety of forms, including enzymes, metals, or complex compounds.
The function of a catalyst is to provide an alternative pathway for a chemical reaction to take place. It reduces the activation energy required for the reaction to begin, thus speeding up the rate of the reaction. The catalyst apex is the point at which the catalyst's effect on the reaction reaches maximum efficiency. It diminishes existing chemical bonds or establishes intermediary structures, so simplifying the reaction process, consequently expediting the production of substances. This mechanism, often utilized by catalyst companies, leads to accelerated product formation.
Yes, according to the catalyst definition, enzymes are biological catalysts. Enzymes, considered protein-based catalyst synonym, facilitate biochemical reactions within living organisms. Within defined temperature and pH parameters, enzymes function as exceedingly efficient catalysts, diminishing the activation energy necessary for reactions to occur. These auxiliaries, when integrated into biological systems, demonstrate specificity and selectivity in catalyzing particular reactions, rendering them pivotal as key catalysts across diverse biological processes.