We describe the application of temperature-controlled ionic liquid based microextraction (TC-IL-ME) of lead(II) ion. The method does not require the use of an organic solvent or a ligand. Rather, the IL is directly added to the aqueous sample containing Pb(II) in a centrifuge tube, and the mixture is heated to 80 A degrees C for 4 min. After cooling at 0 A degrees C, the solution turns cludy due to the formation of fine droplets of the IL containing Pb(II). The IL is separated by centrifugation, acidified, and directly submitted to FAAS by microinjection. The effects of pH value, volume of IL, extraction time, temperature, sample volume and matrix were optimized to result in a preconcentration factor of 30, a detection limit of 5.8 mu g L-1...
825-829Cold induced aggregation microextraction (CIAME) with an ionic liquid has been used as a rap...
A simple and efficient ionic liquid-based ligandless microextraction method has been developed for p...
A new ligandless-dispersive liquid–liquid microextraction method has been developed for the separati...
We describe the application of temperature-controlled ionic liquid based microextraction (TC-IL-ME) ...
This paper described a new approach for the preconcentration of lead (Pb2+) by temperature controlle...
A novel-and rapid microextraction approach termed as ionic liquid-linked dual magnetic microextracti...
A novel separation-preconcentration procedure based on ionic liquid dispersive liquid-liquid microex...
A simple, novel and quick single step in-syringe system for ionic liquid based liquid microextractio...
A simple liquid-liquid microextraction termed as vortex-assisted liquid-liquid microextraction (VLLM...
A new method based on microcolumn packed with ionic liquid-modified silica combined with flame atomi...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
Abstract. Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and disper...
Microextraction procedures for the separation of Pb(II) from water and food samples extracts were de...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
825-829Cold induced aggregation microextraction (CIAME) with an ionic liquid has been used as a rap...
A simple and efficient ionic liquid-based ligandless microextraction method has been developed for p...
A new ligandless-dispersive liquid–liquid microextraction method has been developed for the separati...
We describe the application of temperature-controlled ionic liquid based microextraction (TC-IL-ME) ...
This paper described a new approach for the preconcentration of lead (Pb2+) by temperature controlle...
A novel-and rapid microextraction approach termed as ionic liquid-linked dual magnetic microextracti...
A novel separation-preconcentration procedure based on ionic liquid dispersive liquid-liquid microex...
A simple, novel and quick single step in-syringe system for ionic liquid based liquid microextractio...
A simple liquid-liquid microextraction termed as vortex-assisted liquid-liquid microextraction (VLLM...
A new method based on microcolumn packed with ionic liquid-modified silica combined with flame atomi...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
Abstract. Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and disper...
Microextraction procedures for the separation of Pb(II) from water and food samples extracts were de...
Two liquid-phase microextraction procedures, single-drop microextraction (SDME) and dispersive liqui...
825-829Cold induced aggregation microextraction (CIAME) with an ionic liquid has been used as a rap...
A simple and efficient ionic liquid-based ligandless microextraction method has been developed for p...
A new ligandless-dispersive liquid–liquid microextraction method has been developed for the separati...