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teflon autoclave

teflon autoclave

Scope of application

The autoclave for hydrothermal synthesis is an indispensable tool for researchers engaged in nanomaterial synthesis, crystal growth, and chemical reaction studies.

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Teflon autoclave

A Teflon autoclave reactor is an advanced laboratory device designed for high-temperature and high-pressure chemical reactions. With a stainless-steel shell and Teflon inner chamber, it offers a perfect combination of durability and chemical resistance. This equipment is essential for hydrothermal and solvothermal synthesis, used extensively in materials science and nanotechnology research.

Teflon lined stainless steel autoclave

Construction and Material Design

The outer body is made from 304 or 316 stainless steel, ensuring strength and heat tolerance. Inside, the PTFE (polytetrafluoroethylene) liner acts as a non-reactive container that isolates the sample from metal contact. This dual-layer structure allows for safe reactions under pressures up to 3 MPa and temperatures up to 300°C.


Main Benefits

  • Chemical Stability – Teflon resists corrosion from almost all chemicals.
  • Excellent Temperature Endurance – Suitable for hydrothermal synthesis processes.
  • Leak-Proof Design – Reliable sealing ring ensures safety during reactions.
  • Various Volume Options – From 25 mL mini types to 500 mL large capacity.
  • Customizable Solutions – OEM services available for research institutions and laboratories.

Typical Applications

  • Nanomaterial production (e.g., TiO₂, ZnO, Fe₃O₄ nanoparticles)
  • Synthesis of catalysts and ceramics
  • Crystallization and mineral growth experiments
  • Pharmaceutical and chemical compound synthesis
  • Environmental material testing

Operation Precautions

  • Do not exceed the rated temperature and pressure.
  • Avoid quick cooling or sudden opening.
  • Clean the PTFE liner after every use.
  • Inspect the sealing ring regularly to maintain airtightness.
  • Store in a dry, ventilated environment.

Why Teflon Autoclave Is Essential in Modern Research

The Teflon lined reactor offers a controlled, contaminant-free environment for precision synthesis. Its anti-corrosive and non-stick features make it indispensable for advanced research in chemistry, materials engineering, and nanotechnology. High-quality models provide enhanced safety and reproducibility, ensuring reliable experimental outcomes.


Teflon autoclave Technical parameters

ModelVolume(mL)pressure(MPa)temperature(℃)Lining material(PTFE)
YHHW-5PTFE53220polytetrafluoroethylene
YHHW-10PTFE103220polytetrafluoroethylene
YHHW-15PTFE153220polytetrafluoroethylene
YHHW-25PTFE253220polytetrafluoroethylene
YHHW-50PTFE503220polytetrafluoroethylene
YHHW-100PTFE1003220polytetrafluoroethylene
YHHW-150PTFE1503220polytetrafluoroethylene
YHHW-200PTFE2003220polytetrafluoroethylene
YHHW-250PTFE2503220polytetrafluoroethylene
YHHW-300PTFE3003220polytetrafluoroethylene
YHHW-400PTFE4003220polytetrafluoroethylene
YHHW-500PTFE5003220polytetrafluoroethylene
YHHW-1000PTFE10003220polytetrafluoroethylene
YHHW-1500PTFE15003220polytetrafluoroethylene
YHHW-2000PTFE20003220polytetrafluoroethylene
YHHW-2500PTFE25003220polytetrafluoroethylene
YHHW-3000PTFE30003220polytetrafluoroethylene
ModelVolume(mL)pressure(MPa)temperature(℃)Lining material(PPL)
YHHB-5PPL53300Para-polyphenylene
YHHB-10PPL103300Para-polyphenylene
YHHB-15PPL153300Para-polyphenylene
YHHB-25PPL253300Para-polyphenylene
YHHB-50PPL503300Para-polyphenylene
YHHB-100PPL1003300Para-polyphenylene
YHHB-150PPL1503300Para-polyphenylene
YHHB-200PPL2003300Para-polyphenylene
YHHB-250PPL2503300Para-polyphenylene
YHHB-300PPL3003300Para-polyphenylene
YHHB-400PPL4003300Para-polyphenylene
YHHB-500PPL5003300Para-polyphenylene
YHHB-1000PPL10003300Para-polyphenylene

Teflon autoclave video

hydrothermal autoclave

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