Our Potassium Persulfate (K₂S₂O₈) is a premium-grade oxidizing agent widely used as a polymerization initiator, etching agent, and disinfectant. With exceptional purity and stability, it serves critical functions in chemical synthesis, electronics, and water treatment industries.
✅ Chemical Formula: K₂S₂O₈
✅ Purity: ≥99% (ACS Reagent Grade)
✅ Appearance: White crystalline powder
✅ Active Oxygen: ≥5.6%
✅ Solubility: 50g/L (20°C in water)
✅ Decomposition Temp.: ≥100°C
✅ Packaging: 25kg/drum or customized
✔ Strong Oxidizing Power - Standard redox potential of 2.01V
✔ Excellent Thermal Stability - Safe handling at room temperature
✔ High Purity - Low heavy metal content (<5ppm)
✔ Water-Soluble - Easy to prepare working solutions
✔ Multi-Industry Applications - Versatile performance
Primary initiator for acrylic, PVC, and styrene polymerization
Essential for emulsion polymerization processes
PCB etchant and microelectronics cleaner
Silicon wafer surface treatment
Advanced oxidation process (AOP) reagent
Degrades organic pollutants in wastewater
Hair bleach activator
Textile desizing and bleaching agent
❋ Aliases: Potassium Peroxydisulfate
❋ English Name: Potassium Persulfate
❋ Chemical Formula: K₂S₂O₈
❋ Molecular Weight: 270.32
❋ CAS Number: 7727-21-1
Key Properties: Strong oxidizing capacity, high thermal stability, moderate water solubility, high free radical yield
Frontier Application Scenarios
"Micro-etching Specialist" in Electronic Fine Processing
High-frequency circuit board manufacturing: Achieves precise copper foil micro-etching in 5G communication substrate processing with line width accuracy of ±1.5μm;
Semiconductor packaging: Used for chip carrier surface roughening to enhance adhesion between molding compound and substrate.
"Deep Oxidation Core" in Environmental Remediation
Soil in-situ remediation: Generates sulfate radicals through activation to efficiently degrade stubborn pollutants like petroleum hydrocarbons and chlorinated organics;
Industrial wastewater advanced treatment: Achieves over 95% removal rate for refractory organic compounds in pharmaceutical and pesticide wastewater.
"Low-temperature Initiation Engine" for Polymer Materials
Specialty emulsion polymerization: Serves as low-temperature initiator for high-end polymer synthesis including fluorocarbon resins and silicone-acrylic emulsions;
Hydrogel synthesis: Provides mild and efficient cross-linking initiation in medical dressing hydrogel preparation.
"Interface Modifier" for New Energy Materials
Lithium battery current collector treatment: Performs surface activation on aluminum foil to enhance cathode material adhesion;
Fuel cell catalytic layer optimization: Used for catalyst support surface modification to improve noble metal dispersion.
Technological Breakthroughs and Sustainable Development
Crystal engineering innovation: Prepares specific crystal form products through solvent-antisolvent crystallization technology, significantly improving solubility and reaction activity;
Composite activation technology: Develops UV-ultrasound synergistic activation systems, increasing free radical yield by over 40%;
Green process upgrade: Adopts ion membrane electrolysis technology, reducing energy consumption by 25% while increasing product purity to 99.9%;
Safe formulation development: Researches microencapsulated potassium persulfate to effectively control reaction rate and enhance usage safety.