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Fumed Silica Surface Treatment Comparison: DDS vs HMDS vs PDMS

Hydrophobic fumed silica grades differ not only in BET surface area but in the chemistry of surface treatment. DDS (DMDCS), HMDS, and PDMS treatments each create a distinct surface structure with different residual Si-OH levels, hydrophobicity, and compatibility with polymer/filler systems. Choosing the wrong treatment can undermine rheology control in ATH-filled composites or cause compatibility failures in silicone matrices.

SpecZEMSIL FH-200DZEMSIL FH-200MZEMSIL FH-200V
Treatment agentDMDCS (dimethyldichlorosilane)HMDS (hexamethyldisilazane)Polydimethylsiloxane (PDMS)
Reaction typeCovalent substitution / both endsCovalent substitution / one endCovalent anchor + physical coverage
Residual surface Si-OHNone – fully replacedLow – partially replacedYes – buried under PDMS chain
Hydrophobicity★★★★★★★★★★★★
Methanol wettability≥40%≥50%≥30%
BET after treatment~110 m²/g~150 m²/g~100 m²/g
Styrene/UPR compatibilityExcellentGoodModerate
Performance in ATH-filled UPRBest – zero Si-OH affinityGoodPoor – residual Si-OH risk
Best applicationUPR/ATH FRP, toners, hydrophobic coatingsUPR, epoxy, PU, inksSilicone RTV, defoamers, silicone sealants
Equivalent AerosilR972R805R202

How to choose

  • Choose DDS (FH-200D) when formulating ATH-filled UPR or any system where competitive adsorption with polar fillers must be avoided.
  • Choose HMDS (FH-200M) for organic resin systems (epoxy, polyurethane) where moderate hydrophobicity and good resin compatibility are the priority.
  • Choose PDMS (FH-200V) exclusively for silicone matrices (RTV, defoamers, silicone sealants) where PDMS chain compatibility with the silicone backbone is an advantage.
  • PDMS-treated grades carry residual buried Si-OH: avoid them in systems with polar competing surfaces (ATH, CaCO₃, BaSO₄) at high loadings.

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