The column was maintained at a temperature of 40 ° C and the sample at 15 ° C. The capillary voltage of Waters Xevo TQD was set at 3.5 kV for ESI -. The source temperature was set at 130 ° C and the desolvation gas temperature at 350 ° C, with a ow of 1000 L/h and a cone gas ow of 100 L/h. To obtain greater sensitivity of the two drugs, conditions such as precursor ion, retention times, cone voltage, collision energy, and ion ratios were optimized, and are described in detail in Table 3.
Triple quadrupole mass spectrometry acquity h class
The Acquity H-Class Triple Quadrupole Mass Spectrometry is a high-performance liquid chromatography (HPLC) system designed for sensitive and reliable quantitative analysis. It features a quaternary solvent manager, a sample manager, and a triple quadrupole mass spectrometer capable of precise and accurate compound identification and quantification.
Lab products found in correlation
2 protocols using triple quadrupole mass spectrometry acquity h class
Quantification of Ibuprofen and Diclofenac
The column was maintained at a temperature of 40 ° C and the sample at 15 ° C. The capillary voltage of Waters Xevo TQD was set at 3.5 kV for ESI -. The source temperature was set at 130 ° C and the desolvation gas temperature at 350 ° C, with a ow of 1000 L/h and a cone gas ow of 100 L/h. To obtain greater sensitivity of the two drugs, conditions such as precursor ion, retention times, cone voltage, collision energy, and ion ratios were optimized, and are described in detail in Table 3.
Quantification of Ibuprofen and Diclofenac
The column was maintained at a temperature of 40 ° C and the sample at 15 ° C. The capillary voltage of Waters Xevo TQD was set at 3.5 kV for ESI -. The source temperature was set at 130 ° C and the desolvation gas temperature at 350 ° C, with a ow of 1000 L/h and a cone gas ow of 100 L/h. To obtain greater sensitivity of the two drugs, conditions such as precursor ion, retention times, cone voltage, collision energy, and ion ratios were optimized, and are described in detail in Table 3.
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