Used BRUKER LC-MALDI #9127231 for sale
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BRUKER LC-MALDI is an innovative x-ray equipment used for material characterization in scientific laboratories and industrial environments. The system consists of a highly sensitive detection unit, a laser ablation source, and a range of high-performance optics. This enables users to detect and quantify a range of chemical and physical properties from surfaces or bulk materials. The key components of the machine include the laser ablation source, which is used to ablate the sample material, a reflectron tool, which is used to direct and guide the x-rays, and a vacuum chamber which keeps the air out and allows for the sample to be placed inside for analysis. The asset also uses a silicon drift detector (SDD) for capturing high-resolution x-ray data. The laser ablation source is used to perform direct, laser-induced x-ray fluorescence (LIF), which allows for more in-depth chemical characterization of the samples. It is capable of producing short pulses of high-energy lasers, which is used to ablate the sample and release x-ray emission. This ablation process is typically used to monitor the surface composition or the elemental concentration of the sample. The reflectron model then receives the x-ray data and redirect it into the vacuum chamber. This is useful for performing highly accurate and precise analysis of the sample. The vacuum chamber also enables efficient collection and transfer of the sample, making it easy for researchers to keep track of the sample online. Finally, the silicon drift detector (SDD) is used to capture high-resolution x-ray data. This allows for high-speed detection and characterization of the sample. The data is then processed and analyzed using software that is specifically designed for LC-MALDI equipment. This software is used to identify the elemental concentrations, chemical composition, and information about nanostructure of the sample. In conclusion, BRUKER LC-MALDI is a highly advanced x-ray system used for material characterization in scientific and industrial settings. The highly sensitive detection unit, laser ablation source, and range of optics allow for high-speed, accurate, and detailed analysis of samples.
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