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Porous magnetized carbon sheet nanocomposites for dispersive solid-phase microextraction of organophosphorus pesticides prior to analysis by gas chromatography-ion mobility spectrometry
Solgel/nanoclay composite as a sorbent for microextraction in packed syringe combined with corona discharge ionization ion mobility spectrometry for the determination of diazinon in water samples
Solgel/nanoclay composite as a sorbent for microextraction in packed syringe combined with corona discharge ionization ion mobility spectrometry for the determination of diazinon in water samples
Simultaneous Optimization of Adsorption Capacity and Stability of Hydrothermally Synthesized Spinel Ion Sieve Composite Adsorbents for Selective Removal of Lithium from Aqueous Solutions
Rapid Screening of Methamphetamines in Human Serum by Headspace Solid-Phase Microextraction using a Dodecylsulfate-doped Polypyrrole Film Coupled to Ion Mobility Spectrometry
Effect of electrolyte transport properties and variations in the morphological parameters on the variation of side reaction rate across the anode electrode and the aging of lithium ion batteries
Anticodeine aptamer immobilized on a Whatman cellulose paper for thin-film microextraction of codeine from urine followed by electrospray ionization ion mobility spectrometry
Anticodeine aptamer immobilized on a Whatman cellulose paper for thin-film microextraction of codeine from urine followed by electrospray ionization ion mobility spectrometry
Modified multiwall carbon nanotubes supported on graphite as a suitable solid nano-sorbent for selective separation and preconcentration of trace amounts of cadmium and lead ions
Modified multiwall carbon nanotubes supported on graphite as a suitable solid nano-sorbent for selective separation and preconcentration of trace amounts of cadmium and lead ions
Adsorption of Zinc and Lead Ions from Aqueous Solutions Using Chitosan/Polyvinyl Alcohol Membrane Incorporated via Acid-Functionalized Carbon Nanotubes
The Effect of Heat Treatment Parameters on electrospinning-derived Carbon Nanofiber Web as the Substrate of High Capacity Alloys for Anode Material of Lithium Ion Batteries
The Effect of Heat Treatment Parameters on electrospinning-derived Carbon Nanofiber Web as the Substrate of High Capacity Alloys for Anode Material of Lithium Ion Batteries
The Effect of Heat Treatment Parameters on electrospinning-derived Carbon Nanofiber Web as the Substrate of High Capacity Alloys for Anode Material of Lithium Ion Batteries
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