SEMITECH
Silicone Curing Catalysts

T-9 Stannous Octoate

T-9 — stannous octoate, also written as tin(II) 2-ethylhexanoate or stannous 2-ethylhexanoate, CAS 301-10-0 — is a divalent tin compound formed from tin(II) oxide and 2-ethylhexanoic acid. Molecular formula C₁₆H₃₀O₄Sn, m

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T-9 (Stannous Octoate, Tin(II) 2-Ethylhexanoate, CAS 301-10-0): Divalent Tin Catalyst for PU Foam and Skin-Contact Silicone

SEMITECH supplies T-9 at ≥95% active content (Sn ≈28%) — a divalent Sn(II) carboxylate that acts as the gel catalyst in flexible polyurethane foam and as the lower-toxicity tin catalyst for dental, prosthetic, and skin-contact RTV silicones where DBTDL would fail REACH downstream-use review. 5 kg / 25 kg HDPE jerrycans, 2–4 week ex-China lead time.

Contents

301-10-0≥95%~28%
CAS numberActive contentSn content

Chemistry & Specifications

Divalent tin(II) bis(2-ethylhexanoate); MW 405.1; clear yellow viscous liquid; air- and moisture-sensitive.

T-9 (CAS 301-10-0) — MW 405.1, density 1.25 g/cm³, viscosity 250–400 cP. SEMITECH supplies at ≥95% active, Sn 27.5–28.5% (ICP-OES), water ≤0.2%, acid value 5–15 mg KOH/g. The divalent Sn(II) state oxidises to Sn(IV) on air exposure (brown-black precipitate = catalyst death). Sn(II) species are not subject to REACH organotin Annex XVII restrictions, making T-9 preferred for skin- and food-contact applications.

Cure Mechanism: PU Foam Gel Catalysis and Silicone Condensation

Catalyses urethane (NCO+OH) formation in flexible PU foam and condensation cure in dental/skin-contact RTV.

In PU foam, T-9 selectively catalyses the urethane gel reaction over the blowing reaction. In RTV silicone, it catalyses silanol-alkoxysilane condensation at substantially lower activity than DBTDL — tack-free times 90–180 min at 0.30% loading.

  • Loading 0.10–0.30 phr — flexible slab-stock and moulded PU foam (mattress, seating, automotive)
  • Loading 0.05–0.20 phr — semi-rigid integral-skin foam, microcellular elastomer
  • Loading 0.20–0.50% — RTV silicone for dental impression, skin-contact prosthetics
  • Loading 0.10–0.40% — neutral-cure RTV-1 for medical-device assembly

Like all tin catalysts, T-9 poisons platinum addition-cure systems; cross-contamination must be eliminated on shared equipment.

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Applications & Formulation Guidance

Flexible PU foam (largest), dental and prosthetic silicone, skin-contact RTV, lower-toxicity replacement for DBTDL.

Flexible PU foam (~80% of global T-9 demand) — slab-stock at 0.15–0.25 phr, moulded automotive at 0.20–0.40 phr, integral-skin at 0.10–0.20 phr. Dental impression silicone — T-9 at 0.30–0.50%, lower toxicity required for oral cavity use. Prosthetic/cosmetic silicone — 0.20–0.60% in low-viscosity RTV. Medical device assembly — T-9 at 0.10–0.30% paired with alkoxysilane crosslinker.

Procurement, Storage and Quality Control

Mandatory nitrogen blanket; CoA per shipment; 5 kg / 25 kg HDPE; 9-month shelf life sealed.

CoA per batch: Sn assay (27.5–28.5%), active content (≥95%), water (≤0.2%), acid value, viscosity, APHA colour. MOQ 5 kg sample, 25 kg production. Lead time 1–2 weeks Asia, 4–6 weeks Europe/North America. Mandatory: store sealed under nitrogen below 25°C; re-blanket after every draw; consume opened drums within 30 days. Shelf life 9 months (vs 12 months for Sn(IV) grades). T-9 is REACH-registered; Sn(II) species exempt from dialkyltin(IV) Annex XVII restrictions.

T-9 Specification Sheet

SEMITECH stocked grade; CoA per batch.

PropertySpecificationTest Method
Chemical nameStannous octoate / Tin(II) 2-ethylhexanoate
CAS number301-10-0
Molecular formulaSn(C₈H₁₅O₂)₂
Molecular weight405.1 g/mol
Active content≥95%Iodine titration
Tin (Sn) content27.5–28.5%ICP-OES
AppearanceClear pale-yellow viscous liquidVisual
Density (20°C)1.24–1.26 g/cm³ASTM D1475
Viscosity (25°C)250–400 cPBrookfield
Water content≤0.2%Karl Fischer
Acid value5–15 mg KOH/gASTM D974
APHA colour≤200ASTM D1209
SolubilitySoluble in plasticisers, esters; insoluble in water
Packaging5 kg / 25 kg HDPE under nitrogen
Shelf life9 months sealed below 25°C

FAQ

+Why does my T-9 turn dark brown after a few weeks?

Brown-to-black discolouration signals Sn(II) → Sn(IV) oxidation. The catalyst loses 30–60% activity once visible. Dispose and prevent recurrence by re-blanketing with nitrogen after every draw, consuming within 30 days.

+How much T-9 for a flexible PU mattress slab-stock?

Standard 30 kg/m³ density uses T-9 at 0.18–0.22 phr paired with DABCO 33LV at 0.10–0.14 phr. Higher density (45 kg/m³) seating: 0.25–0.30 phr.

+Is T-9 acceptable for dental impression silicone under EU MDR?

Yes. T-9 is the standard catalyst for condensation-cure dental impression silicone, accepted under EU MDR Class IIa. Sn(II) falls outside REACH Annex XVII organotin restrictions.

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