A dispersive liquid-liquid microextraction based on solidification of floating organic droplet (DLLME-SFO) has been developed as a new approach for the extraction of trace copper in water and beverage samples followed by the determination with flame atomic absorption spectrometry. In the DLLME-SFO, 8-hydroxy quinoline, 1-dodecanol, and methanol were used as chelating agent, extraction solvent and dispersive solvent, respectively. The experimental parameters related to the DLLME-SFO such as the type and volume of the extraction and dispersive solvent, extraction time, sample volume, the concentration of chelating agent and salt addition were investigated and optimized. Under the optimum conditions, the enrichment factor for copper was 122. T...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
In this study a dispersive liquid-liquid microextraction (DLLME) method based on the dispersion of a...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple and novel vortex-assisted dispersive liquid-liquid microextraction method for the preconcen...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A dispersive liquid-liquid microextraction based on solidification of floating organic drop for simu...
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 new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...
In this study a dispersive liquid-liquid microextraction (DLLME) method based on the dispersion of a...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple, rapid and inexpensive solidified floating organic drop microextraction (SFODME) and flow i...
A simple and novel vortex-assisted dispersive liquid-liquid microextraction method for the preconcen...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A simple, environmentally friendly, and efficient dispersive liquid-liquid microextraction method co...
A rapid, simple, selective, economical, and sensitive dispersive liquid-liquid microextraction metho...
A dispersive liquid-liquid microextraction based on solidification of floating organic drop for simu...
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 new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A new, simple, and rapid ionic liquid based dispersive liquid-liquid microextraction method is repor...
A novel dispersive liquid-liquid microextraction (DLLME) procedure was developed using 3hydroxy-4-me...