The aim is to develop a method for accurately determining trace transition metals in small biological sample volumes.
Utilized micro-ultrasonic single droplet nebulization for sample introduction
Employed ICP-QMS for detection
Addressed challenges related to complex sample matrices
Achieved enhanced sensitivity for trace metals
Reduced sample volume requirements
Overcame matrix effects that hinder analysis
Abstract
The determination of trace transition metals in biological samples is often limited by extremely small sample volumes and complex matrix effects. In this work, a highly sensitive analytical method for...