Coaxial laser desorption and ablation analyze organic and inorganic components without repositioning the sample, reducing matrix effects.
Offsetting the ion pathway from the desolvation gas stream reduces noise from incompletely desolvated droplets entering the vacuum chamber.
Atmospheric pressure LAESI preserves specimen viability and eliminates vacuum-induced artifacts while providing high-resolution depth profiling of biomolecules.
Ultraviolet matrix imaging identifies optimal laser irradiation spots, eliminating repeated spectral acquisition trials.
Segmented gas circulation purifies interfering water vapor from sample streams, resolving the trade-off between rapid response speed and measurement precision.
A radical generation chamber uses vacuum discharge to produce reactive species from safe gases for ion analysis.
An ion analyzer radical generation unit introduces inert rare gases to prevent electrode oxidation and preserve detection sensitivity.
Parallel capillaries feed a mixing space where gas converts liquid samples into droplets, resolving laminar flow mixing issues.
A sample support body uses through-holes in an ionization substrate to manage excess liquid samples during mass spectrometry analysis.
A mass spectrometer uses a UV lamp to pre-excite particles before laser ionization, enhancing the detection of high ionization energy elements.
Segmented deceleration and acceleration stages using sheath gas reduce droplet agglomeration to improve signal quality.
A detachable cover seals the sample container, isolating the specimen from ambient air during transfer.
A substrate-based apparatus directs air through a collection medium for paper spray mass spectrometry analysis.
A mass spectrometer integrates an ionizing chamber with a vacuumed chamber via an opening and closing mechanism to control pressure conditions.
A mass spectrometer uses a pulse valve to introduce ions into the analysis chamber.
A structured semiconductor substrate with microscale pillars enhances ionization efficiency using a fluorinated initiator.
An optical reader eliminates manual identifier entry errors by associating plate IDs with analysis data.
A fully enclosed trace detection device isolates ion migration tubes and circuit boards from humidity using sealed compartments.