In this study a dispersive liquid-liquid microextraction (DLLME) method based on the dispersion of an extraction solvent into aqueous phase in the presence of a dispersive solvent was investigated for the preconcentration of Cu2+ ions. 8-Hydroxy quinoline was used as a chelating agent prior to extraction. Flame atomic absorption spectrometry using an acetylene-air flame was used for quantitation of the analyte after preconcentration. The effect of various experimental parameters on the extraction was investigated using two optimization methods, one variable at a time and central composite design. The experimental design was performed at five levels of the operating parameters. Nearly the same results for optimization were obtained using bot...
A switchable solvent-based liquid phase microextraction (SS-LPME) procedure has been established for...
Sample preparation is a critical step of any analytical protocol. Nowadays the goals to be reached a...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
We report a simple and sensitive microextraction system for the preconcentration and determination o...
A dispersive liquid-liquid microextraction based on solidification of floating organic droplet (DLLM...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
Abstract A new, simple, rapid, selective, and environmentally friendly method is proposed for the de...
A simple and novel vortex-assisted dispersive liquid-liquid microextraction method for the preconcen...
A microextraction method, based on the complexation of Cu(II) with N-Benzoyl-N,N-diisobutylthiourea,...
A microextraction method, based on the complexation of Cu(II) with N-Benzoyl-N,N-diisobutylthiourea,...
A switchable solvent-based liquid phase microextraction (SS-LPME) procedure has been established for...
Sample preparation is a critical step of any analytical protocol. Nowadays the goals to be reached a...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
We report a simple and sensitive microextraction system for the preconcentration and determination o...
A dispersive liquid-liquid microextraction based on solidification of floating organic droplet (DLLM...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
Abstract A new, simple, rapid, selective, and environmentally friendly method is proposed for the de...
A simple and novel vortex-assisted dispersive liquid-liquid microextraction method for the preconcen...
A microextraction method, based on the complexation of Cu(II) with N-Benzoyl-N,N-diisobutylthiourea,...
A microextraction method, based on the complexation of Cu(II) with N-Benzoyl-N,N-diisobutylthiourea,...
A switchable solvent-based liquid phase microextraction (SS-LPME) procedure has been established for...
Sample preparation is a critical step of any analytical protocol. Nowadays the goals to be reached a...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...