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Address
Room 401, Fengtai Science and Technology Innovation Center, No. 7 Kexing Road, Fengtai District, Beijing
Beijing Zhongjiao Jinyuan Technology Co., Ltd
Room 401, Fengtai Science and Technology Innovation Center, No. 7 Kexing Road, Fengtai District, Beijing
CEL-ISC-PME01 Metal Electrode Plasma In Situ Cell
1. Parameters
Material: PEEK
Temperature resistance: -20-150 ℃
Pressure resistance: atmospheric pressure
Pool cap: infrared three window pool cap, Raman single window pool cap
Mirror: Can be equipped with barium fluoride, zinc selenide, quartz, sapphire and other mirrors. Special mirror requirements can be customized.
Discharge gap: 2mm (customizable)
Catalyst filling volume: outer diameter 7, inner diameter 3, height 5mm filling (outer diameter 6, inner diameter 2, height 5mm filling)
Barrier medium:Single medium barrier quartz/dual medium barrier quartz
Controllable temperature: -20~80 ℃, liquid bath temperature control
Positive and negative electrode forms: Positive electrode: Metal electrode
Negative electrode: metal electrode
2. Operating environment
By connecting to a low-temperature plasma power supply, this reactor can provide a low-temperature plasma external field environment, which is suitable for most gas-solid catalytic reactions in the synergistic catalytic experiments of plasma external field and catalyst. Cooperate with infrared spectrometer, laser Raman spectrometer (laser Raman spectrometer testing can be carried out by replacing the mirror pool cap) and other equipment to achieve in-situ detection.
The reactor can provide liquid bath temperature control, balance plasma heat release, or provide a plasma catalytic environment at the target temperature.
Used in conjunction with Harrick infrared accessories and low-temperature plasma power supply.
Compatible with Fourier transform infrared spectrometers from domestic and foreign brands such as Bruker, Thermo Fisher, and Gangdong.
3. Product features
1. The three/single window cover and window transparent medium can be flexibly replaced, and the plasma infrared spectroscopy in-situ cell can be expanded to in-situ Raman and in-situ atomic emission spectroscopy.
2. Adjust the discharge spacing, high and low voltage electrode materials, etc. to meet the needs of simulating different discharge reactions.
3. The temperature can be adjusted from -20 to 80 ℃, and a circulating water machine can be optionally equipped. It can be connected to the system for cooling or heating to maintain the plasma discharge at the target temperature and eliminate (regulate) the influence of temperature on the plasma reaction.
4. Uniform discharge and wide range of discharge power regulation.