The internal surface of a fused-silica capillary was made much more porous, more adsorptive and resistant to chemical and mechanical stresses by chemical coating using nanostructured octadecyl silica particles. The modification process was conducted using a simple and green nucleosynthesis procedure. The internally modified capillary was used as an in-tube solid-phase microextraction (IT-SPME) device for the extraction and preconcentration of ultratrace levels of polycyclic aromatic hydrocarbons (PAHs) in aqueous samples, followed by determination using gas chromatography-flame ionization detection (GC-FID) system. Morphology and structure of the sorbent was characterized by FT-IR, SEM and energy dispersive X-ray techniques. The effects of ...
A capillary atmospheric pressure photoionization (cAPPI) source was used to analyze polycyclic aroma...
Abstract A new sensitive, selective, fast and accurate technique for online sample preparation was d...
Fabric phase sorptive extraction (FPSE) combines the advanced material properties of sol–gel derived...
The internal surface of a fused-silica capillary was made much more porous, more adsorptive and resi...
An efficient and robust solid-phase microextraction (SPME) fiber was developed for vacuum-assisted s...
An array capillary in-tube solid phase microextration (ACIT-SPME) technique was developed and evalua...
To improve the extraction performance of the silica aerogel, a melamine-terephthalaldehyde polymer w...
[[abstract]]©2000 Elsevier - A solid-phase microextraction (SPME) procedure has been developed for t...
[[abstract]]©2000 Elsevier - A solid-phase microextraction (SPME) procedure has been developed for t...
A rapid sample preparation technique, namely array capillary in-tube solid-phase microextraction (AC...
This research introduces a novel solid-phase microextraction technology, in which the features of he...
In this study, the use of bracts as a natural sorbent in solid-phase microextraction was exploited f...
A novel alternative is presented for the extraction and preconcentration of polycyclic aromatic hydr...
A novel alternative is presented for the extraction and preconcentration of polycyclic aromatic hydr...
A compact, simple, and reliable low-pressure headspace solid-phase microextraction (LP-HS-SPME) devi...
A capillary atmospheric pressure photoionization (cAPPI) source was used to analyze polycyclic aroma...
Abstract A new sensitive, selective, fast and accurate technique for online sample preparation was d...
Fabric phase sorptive extraction (FPSE) combines the advanced material properties of sol–gel derived...
The internal surface of a fused-silica capillary was made much more porous, more adsorptive and resi...
An efficient and robust solid-phase microextraction (SPME) fiber was developed for vacuum-assisted s...
An array capillary in-tube solid phase microextration (ACIT-SPME) technique was developed and evalua...
To improve the extraction performance of the silica aerogel, a melamine-terephthalaldehyde polymer w...
[[abstract]]©2000 Elsevier - A solid-phase microextraction (SPME) procedure has been developed for t...
[[abstract]]©2000 Elsevier - A solid-phase microextraction (SPME) procedure has been developed for t...
A rapid sample preparation technique, namely array capillary in-tube solid-phase microextraction (AC...
This research introduces a novel solid-phase microextraction technology, in which the features of he...
In this study, the use of bracts as a natural sorbent in solid-phase microextraction was exploited f...
A novel alternative is presented for the extraction and preconcentration of polycyclic aromatic hydr...
A novel alternative is presented for the extraction and preconcentration of polycyclic aromatic hydr...
A compact, simple, and reliable low-pressure headspace solid-phase microextraction (LP-HS-SPME) devi...
A capillary atmospheric pressure photoionization (cAPPI) source was used to analyze polycyclic aroma...
Abstract A new sensitive, selective, fast and accurate technique for online sample preparation was d...
Fabric phase sorptive extraction (FPSE) combines the advanced material properties of sol–gel derived...