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Octyltin catalysts

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Octyl Tin Catalysts

Our octyl tin catalysts offer remarkable versatility, excellent overall properties and an impressive cost-benefit ratio. Of particular note is the significantly lower toxicity rating compared to butyl tin catalysts, without compromising on performance. Trust in an advanced solution that is versatile and at the same time meets the highest security standards.

Trade name Description Other Names Chem. formula CAS No. TDS (PDF)

TIB KAT 213

REAXIS C320 22205-30-7

Dioctyltin dilaurylmercaptide

Dioctyltin dilaurylmercaptide REAXIS C320 22205-30-7

TIB KAT 214

REAXIS C214 - 26401-97-8

Dioctyltin dithioglycolate

Dioctyltin dithioglycolate REAXIS C214 - 26401-97-8

TIB KAT 216

REAXIS C216 - 3648-18-8

Dioctyltin dilaurate (DOTL)

Dioctyltin dilaurate (DOTL) REAXIS C216 - 3648-18-8

TIB KAT 223

REAXIS C2013 - 54068-28-9

Dioctyltin diketanoate

Dioctyltin diketanoate REAXIS C2013 - 54068-28-9

TIB KAT 229

REAXIS C228 - 17586-94-6

Dioctyltin diacetate (DOTA)

Dioctyltin diacetate (DOTA) REAXIS C228 - 17586-94-6

TIB KAT 229 S 20

- 17586-94-6

Dioctyltin diacetate (DOTA) formulation

Dioctyltin diacetate (DOTA) formulation - 17586-94-6

TIB KAT 232

- 870-08-6

Dioctyltinoxide (DOTO)

Dioctyltinoxide (DOTO) - 870-08-6

TIB KAT 314

REAXIS C314 - 10039-33-5

Dioctyltin bis-2-ethylhexyl maleate

Dioctyltin bis-2-ethylhexyl maleate REAXIS C314 - 10039-33-5

TIB KAT 316

REAXIS C416 - 15571-58-1

Dioctyltin bis(2-ethylhexylmercaptoacetate)

Dioctyltin bis(2-ethylhexylmercaptoacetate) REAXIS C416 - 15571-58-1

TIB KAT 318

REAXIS C318 - 68299-15-0

Dioctyltin dineodecanoate

Dioctyltin dineodecanoate REAXIS C318 - 68299-15-0

TIB KAT 324

- -

Dioctyltin stannoxane

Dioctyltin stannoxane - -

TIB KAT 410

- 870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation - 870-08-6

TIB KAT 411

870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation 870-08-6

TIB KAT 417

REAXIS C417 - 870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation REAXIS C417 - 870-08-6

TIB KAT 422

- 870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation - 870-08-6

TIB KAT 423

- 870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation - 870-08-6

TIB KAT 425

C417V - 870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation C417V - 870-08-6

TIB KAT 425 M60

870-08-6

Dioctyltin oxide (DOTO) formulation

Dioctyltin oxide (DOTO) formulation 870-08-6

TIB KAT 460

- -

DOT-oxide and - carboxylate-silane blend

DOT-oxide and - carboxylate-silane blend - -

TIB KAT P 216

3648-18-8

Dioctyltin dilaurate (DOTL) powder blend

Dioctyltin dilaurate (DOTL) powder blend 3648-18-8

Octyltin catalysts –
Our products

Octyl tin catalysts play an essential role in the polymer industry. They are particularly effective in the production and modification of polyurethane systems, elastomers and polyolefins. By promoting fast and consistent reactions, our catalysts help shorten production times and improve material properties. This leads to higher consistency and quality of the end products that meet the high requirements of our customers.

 

In the coatings and paints industry, our octyl tin catalysts help develop products with outstanding durability and longevity. They enable the production of coatings that perform exceptionally well in extreme conditions, whether in automotive, construction or other demanding applications. The catalysts improve the hardening and adhesion of the coatings, resulting in durable and resilient surfaces.

 

Our octyl tin catalysts offer significant advantages in adhesive production. They accelerate curing and improve the mechanical properties of adhesives. This is particularly important for industrial applications where the reliability and strength of adhesive bonds are critical. Curing of silicone resins and RTV silicones, 1-component MS/STP systems, curing of alkoxy-based RTV silicones, curing of oxime-based RTV silicones, catalyst for 1-component MS silyl systems.

 

By optimizing the curing processes, our catalysts help increase efficiency and reduce costs in production.

 

In addition, our octyl tin catalysts promote sustainable production methods. Their ability to catalyze chemical reactions at lower temperatures, including transesterification and esterification reactions, results in significant energy savings and reductions in emissions. This supports our customers' environmental goals and promotes sustainable and environmentally friendly, CMR -free production.