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In this application note, a method is described using the Agilent 6546 LC/Q-TOF to separate and qualitatively identify the main anions of lithium salts in lithium-ion battery electrolytes, including degradation mechanisms.
With exceptional selectivity and sensitivity, the 6560 Ion Mobility LC/Q-TOF can detect, identify, and characterize the components of your most complex samples.
This application note showcases the reproducibility, robustness, and sensitivity of MRM-based LC/MS analysis of human plasma proteins using the Agilent 6495B triple quadrupole LC/MS with the Evosep One LC system.
This document details the minimum
hardware, software, and network
requirements, as well as minimum firmware
required to run an Agilent MassHunter
Workstation, and lists supported
instruments. It includes operating system
configuration.
This application note demonstrates an oligonucleotide sequence confirmation workflow using Agilent BioConfirm software with an Agilent 1290 Infinity II LC and Agilent 6545XT AdvanceBio LC/Q-TOF.
This application note describes a high-throughput, ion-pairing-free method for oligonucleotide characterization using the Agilent RapidFire high-throughput MS system.
Improved Metabolomic Analysis Using an Iron-Free Flow Path: Comparing the Agilent 1290 Infinity II Bio LC System and Agilent 1290 Infinity II LC System for metabolomics
In 2021 Agilent announced HRdm 2.0 enabling researchers to obtain drift resolutions as high as 250 on an LC time scale, while continuing to obtain accurate, precise, and reproducible CCS values. HRdm 2.0, combines demultiplexing and deconvolution...
This application note describes a method for the routine screening of drugs and their related metabolites in whole blood, using the 6546 LC/Q-TOF and Bravo automated linquid handling platform.
This application note describes an automated 2D-LC workflow for the reduction of mAbs using Protein A affinity chromatography in the first dimension and MS-compatible size exclusion chromatography (SEC) in the second dimension.
This application note describes the assignment of exact structures of N-glycan released from glycoproteins of complex biological sample using ion mobility-mass spectrometry (IM-MS) exploiting unique arrival time distributions (ATDs) for each glycan.