Atomization of arsine in a novel hydride atomizer for atomic absorption spectrometry (HG-AAS) was thoroughly optimized. This plasma atomizer is based on a dielectric barrier discharge (DBD). Sensitivity and detection limit reached 0.48 s ng-1 As and 0.16 ng ml-1 As, respectively, under optimum atomization conditions (Ar discharge using a flow rate of 60 ml min-1 Ar, DBD power 17 W). Analytical figures of merit reached in DBD are comparable to those found in an externally heated quartz tube multiatomizer (MMQTA) that was chosen as a model of conventional approach to hydride atomization in HG-AAS. An extent of interferences (Se, Sb, Bi) during As determination was investigated comparing both MMQTA and DBD atomizers. The later one was found to...
A simple and inexpensive hydride generation system that uses a pyrex boiling tube as a reduction ves...
Atomization of bismuth hydride in a 17 W planar quartz dielectric barrier discharge (DBD) atomizer w...
XXXIth Colloquium Spectroscopicum Internationale -- SEP, 1999 -- ANKARA, TURKEYWOS: 000088353100023I...
The aim of this diploma thesis was to optimize in detail atomization conditions for antimony hydride...
Atomization of plumbane in a novel dielectric barrier discharge (DBD) plasma atomizer has been optim...
Atomization conditions for tin hydride in the planar dielectric barrier discharge (DBD) plasma atomi...
Five designs of dielectric barrier discharge (DBD) atomizers have been constructed and optimized emp...
Atomization conditions for selenium and lead hydrides in a dielectric barrier discharge (DBD) plasma...
The aim of this diploma thesis was to optimize the atomization conditions of two hydride forming ele...
Speciation analysis of arsenic based on selective hydride generation and detection by atomic fluores...
Atomization of bismuthane in a planar dielectric barrier discharge (DBD) atomizer was investigated u...
The presented thesis deals with optimization of parameters speciation analysis based on a selective ...
Atomization of bismuth hydride in a 17 W planar quartz dielectric barrier discharge (DBD) atomizer w...
*S Supporting Information ABSTRACT: This work describes the method of a selective hydride generation...
A simple and inexpensive hydride generation system that uses a pyrex boiling tube as a reduction ves...
A simple and inexpensive hydride generation system that uses a pyrex boiling tube as a reduction ves...
Atomization of bismuth hydride in a 17 W planar quartz dielectric barrier discharge (DBD) atomizer w...
XXXIth Colloquium Spectroscopicum Internationale -- SEP, 1999 -- ANKARA, TURKEYWOS: 000088353100023I...
The aim of this diploma thesis was to optimize in detail atomization conditions for antimony hydride...
Atomization of plumbane in a novel dielectric barrier discharge (DBD) plasma atomizer has been optim...
Atomization conditions for tin hydride in the planar dielectric barrier discharge (DBD) plasma atomi...
Five designs of dielectric barrier discharge (DBD) atomizers have been constructed and optimized emp...
Atomization conditions for selenium and lead hydrides in a dielectric barrier discharge (DBD) plasma...
The aim of this diploma thesis was to optimize the atomization conditions of two hydride forming ele...
Speciation analysis of arsenic based on selective hydride generation and detection by atomic fluores...
Atomization of bismuthane in a planar dielectric barrier discharge (DBD) atomizer was investigated u...
The presented thesis deals with optimization of parameters speciation analysis based on a selective ...
Atomization of bismuth hydride in a 17 W planar quartz dielectric barrier discharge (DBD) atomizer w...
*S Supporting Information ABSTRACT: This work describes the method of a selective hydride generation...
A simple and inexpensive hydride generation system that uses a pyrex boiling tube as a reduction ves...
A simple and inexpensive hydride generation system that uses a pyrex boiling tube as a reduction ves...
Atomization of bismuth hydride in a 17 W planar quartz dielectric barrier discharge (DBD) atomizer w...
XXXIth Colloquium Spectroscopicum Internationale -- SEP, 1999 -- ANKARA, TURKEYWOS: 000088353100023I...