Equipped with quartz optical fibers specifically designed for microwave environments, it enables the synergistic reaction of microwave radiation and in-situ illumination. It can be used in conjunction with quartz high-pressure reaction vessels and, under high-pressure conditions, work together with magnetic stirring to promote chemical reactions. The module has a light loss rate of less than 1%, and can provide high-power density (365nm, 385nm, 395nm, 405nm) and medium-power density (405nm, 420nm, 450nm, etc.) monochromatic light options. Different wavelengths of light sources use different optical fiber modules, and light sources of various power densities can be compatible with the same power supply module, thereby meeting diverse experimental requirements and enhancing the efficiency and selectivity of chemical reactions.
Microwave Source | |
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Power Supply | |
Microwave Frequency | |
Microwave Input Power | |
Microwave Output Power | |
Microwave power adjustment method | |
Material of Microwave Resonant Cavity | |
Microwave Resonant Cavity Volume | |
Microwave Cavity Modes | |
Continuous Working Time |
Primary Temperature Measurement Method | |
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Temperature Sensor Range | |
Maximum Operating Temperature | |
Operating Temperature Control Range | |
Temperature Control Accuracy | |
Response Speed |
Pressure Measurement Method | |
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Pressure Sensor Range | |
Maximum Working Pressure | |
Working Pressure Control Range | |
Pressure Measurement Accuracy | |
Response Speed |
Norm | |
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Material | |
Maximum withstand voltage | |
Frequency of use |
Rotary table station | |
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Temperature and pressure measurement and control system | |
Whole Tank Temperature and Pressure Measurement System | |
Full tank planetary magnetic stirring | |
High Pressure Reaction Vessel Specification |
Ultrasound source | |
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Ultrasonic frequency | |
Ultrasonic power | |
Ultrasonic power adjustment method | |
Ultrasonic probe material | |
Ultrasonic Probe Specifications | |
Ultrasonic mode | |
Ultrasonic high pressure reaction vessel |
Fixed-position magnetic stirring | |
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Mechanical stirring | |
Digital Mechanical Stirring |
Development Platform | |
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Screen | |
Processing Unit | |
Random Access Memory | |
Memory | |
Real-time Monitoring System | |
USB interface | |
Temperature-Pressure Coordinated Control | |
Microwave-Ultrasonic Synergistic Control |
Cooling System |
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Wavelength | |
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Power | |
Reaction Vessel Material | |
Light Intensity Detection |
Pre-Injection Booster System | |
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Solid Phase Reaction Apparatus | |
Photocatalytic Module | |
Microwave Radiation Synchronized Cooling | |
Helical Tube Flow Reactor |
ID | Organization/Institution/Company | Sector | Purchase date |
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