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X-ray absorption fine structure (XAFS) spectrometer
XAFS mainly measures the absorption rate changes at and near the K/L absorption edge of elements, and is widely used to diagnose the local characteristics of materials, such as the valence state, coordination number, configuration and bond length of core atoms.
Low energy X-ray absorption spectrometer
The low-energy X-ray absorption spectrometer uses X-ray fluorescence spectroscopy (XRF) technology to excite fluorescence by irradiating X-rays onto the sample. It uses Johansson bent crystals to gather the fluorescence onto the detector, which can detect real-time spectra. At the same time, the bent crystals move linearly to Change the Bragg angle at different positions to obtain the full energy spectrum.
crystal orientation finder
The high-precision two-dimensional crystal orientation instrument uses the principle of X-ray diffraction (XRD) to invert the angle Δθ between the local crystal surface and the mirror by measuring the Bragg angle change when the crystal rotates around the normal line to different azimuth angles, and achieves this through two-dimensional scanning The depiction of the entire crystal plane Δθ ultimately enables two-dimensional, crystal plane error detection.
Electrochemical in situ cell H type
The electrochemical in-situ cell H type is an in-situ experimental device designed for carrying out desktop XAFS spectrometer experiments or synchrotron radiation XAFS experiments. This in situ cell is mainly used in XAFS transmission mode. Equipped with Kapton film window, three-electrode design, and adjustable liquid layer thickness. Equipped with an ion exchange membrane, it can realize the function of H-type electrode. It is compatible with strong acid/strong alkali electrolytes and can carry out various electrochemical experiments.
Electrochemical in situ cell
The electrochemical in-situ cell is an in-situ experimental device designed for carrying out desktop XAFS spectrometer experiments or synchrotron radiation XAFS experiments. This in-situ cell is mainly used in XAFS transmission mode. Equipped with a Kapton membrane window, a three-electrode design, and the liquid layer thickness is adjustable. It is compatible with strong acid/strong alkali electrolytes and can carry out various electrochemical experiments.
High temperature in situ pool
The high-temperature in-situ cell is designed for gas-solid in-situ XAFS experiments. Various high-temperature gas catalytic reactions such as Fischer-Tropsch synthesis at high temperatures can be carried out in an in-situ environment. The in-situ cell is equipped with a Kapton film window, which can be used in XAFS transmission mode; it is equipped with a heating resistor water cooling system and a control system to achieve a high temperature environment of up to 500°C.
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