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N-Hexylphosphonic Acid (HPA) CAS 4721-24-8 Scale Inhibitor Corrosion Inhibitor and Surfactant for Water Treatment

起源の場所 中国
ブランド名 HOYOSHEE
証明 ISO9001
モデル番号 HYX-WT08
最小注文数量 1KG
価格 交渉可能
パッケージの詳細 1kg;|25kg;|100kg
受渡し時間 5~8営業日
支払条件 L/C、D/A、D/P、T/T、ウェスタンユニオン
供給の能力 500トン/月
商品の詳細
CAS 4721-24-8 MF C6H15O3P
製品カテゴリー 有機ホスホン酸 融点 108~110℃
沸点 299.7±23.0℃(予測値) 保管温度 保管温度2~8℃
形状 白からオフホワイトまで
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Scale Inhibitor N-Hexylphosphonic Acid

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Corrosion Inhibitor HPA

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Surfactant Hexylphosphonic Acid

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製品の説明
N-HEXYLPHOSPHONIC ACID CAS 4721-24-8

High-performance scale inhibitor, corrosion inhibitor, and surfactant for advanced materials applications.

Product Identification
Product Name N-HEXYLPHOSPHONIC ACID
Synonyms N-HEXYLPHOSPHONIC ACID; LABOTEST-BB LT00408920; n-Hexylphosphonic acid, min.97%; 1-Hexylphosphonic acid; Hexanephosphonic acid; NSC 222656
Chemical Properties
IUPAC Name Hexylphosphonic acid
CAS Number 4721-24-8
Molecular Formula C₆H₁₅O₃P
Molecular Weight 166.16 g/mol
SMILES CCCCCCP(=O)(O)O
Physical Characteristics
Appearance White to off-white powder/crystalline solid
Melting Point 97-110°C
Boiling Point 299.7°C at 760 mmHg
Density 1.132 g/cm³
Flash Point 135°C
Water Solubility Insoluble in water
Quality & Storage
Typical Purity 95% to ≥97%
Storage Conditions Store in cool, dry, well-ventilated area; keep container tightly sealed
Stability Stable under normal storage conditions
Primary Applications
Nanoparticle Manufacturing
  • Quantum Dots: Capping agent for size control and aggregation prevention
  • Metal Nanoparticles: Surface stabilization for gold, silver, and other metals
  • Nano-ceramics: Manufacturing of ceramic nanoparticles
Surface Coating & Functionalization
  • Forms condensed hydrophobic monolayers on metal oxide surfaces
  • Anchors to TiO₂, Al₂O₃, Fe₂O₃ surfaces via phosphonic acid group
  • Provides hydrophobic outer layer via hexyl chain
  • Dispersion agent for carbon nanotubes (MWCNTs)
  • Surface modification of barium titanate for dielectric pastes
Surfactant & Capping Agent Functions
  • Controls particle size and morphology during synthesis
  • Prevents nanoparticle agglomeration in suspension
  • Tunes surface hydrophobicity/hydrophilicity
Surface Binding Mechanism

The phosphonic acid group binds strongly to metal oxide surfaces through:

  • Condensation reactions with surface hydroxyl groups (M-OH)
  • Formation of P-O-M bonds (M = Ti, Al, Fe, Zr metal atoms)
  • Multidentate binding as mono-, bi-, or tridentate ligand

This strong binding combined with the hydrophobic hexyl chain enables creation of self-assembled monolayers with controlled surface properties.