A furnace atomization plasma emission spectrometry (FAPES) system was assembled using a two-step graphite furnace which consisted of a spatially isothermal tube positioned at the top of a cup. It was possible to ignite and stabilize an He 50 W r.f. plasma, tuned for a reflected power of less than 5 W, inside the tube, at temperatures of 2500\u20132600 K and subsequently heat the cup to vaporize the sample. Detection limits for Cr and Al were 298 and 30 pg, respectively. Sensitivities and detection limits for Pb, Cd and Sn were comparable to previously published values using a Massmann-type FAPES system employing a platform and Pd modifier.NRC publication: Ye
A low power atmospheric pressure plasma source, furnace atomization plasma emission spectrometry (FA...
Detection of molecular emission from analyte species introduced into the source of a furnace atomiza...
The effect of Ar\u2013He mixed gas plasmas on analyte signal intensities generated in a furnace atom...
Figures of merit (limit of detection, sensitivity and precision) for eight elements (Ag, Cd, Pb, Mn,...
Furnace Atomization Plasma Excitation Spectrometry (FAPES) is a relatively new atomic emission spec...
Furnace Atomization Plasma Excitation Spectrometry (FAPES) is a new emission spectrochemical method ...
Development and initial characterization of FAPES as an ion source for elemental mass spectrometry i...
Temporally and spatially integrated intensities of a number of atomic and ionic lines emitted by the...
Furnace Atomization Plasma Excitation Spectrometry ( FAPES ) is a relatively new emission spectroch...
Furnace atomization plasma excitation spectrometry (FAPES) is a relatively new atomic emission elem...
The influence of plasma gas composition on the operating and analytical characteristics of a furnace...
A furnace atomization plasma emission source was operated in a controlled pressure He environment (2...
Improvements to the FAPES 12mass spectrometer interface permit high-sensitivity elemental analysis w...
The spatial distribution of background species and analyte in a He FAPES source have been determined...
Interactions of molecular and atomic analyte species released from the primary site of deposition of...
A low power atmospheric pressure plasma source, furnace atomization plasma emission spectrometry (FA...
Detection of molecular emission from analyte species introduced into the source of a furnace atomiza...
The effect of Ar\u2013He mixed gas plasmas on analyte signal intensities generated in a furnace atom...
Figures of merit (limit of detection, sensitivity and precision) for eight elements (Ag, Cd, Pb, Mn,...
Furnace Atomization Plasma Excitation Spectrometry (FAPES) is a relatively new atomic emission spec...
Furnace Atomization Plasma Excitation Spectrometry (FAPES) is a new emission spectrochemical method ...
Development and initial characterization of FAPES as an ion source for elemental mass spectrometry i...
Temporally and spatially integrated intensities of a number of atomic and ionic lines emitted by the...
Furnace Atomization Plasma Excitation Spectrometry ( FAPES ) is a relatively new emission spectroch...
Furnace atomization plasma excitation spectrometry (FAPES) is a relatively new atomic emission elem...
The influence of plasma gas composition on the operating and analytical characteristics of a furnace...
A furnace atomization plasma emission source was operated in a controlled pressure He environment (2...
Improvements to the FAPES 12mass spectrometer interface permit high-sensitivity elemental analysis w...
The spatial distribution of background species and analyte in a He FAPES source have been determined...
Interactions of molecular and atomic analyte species released from the primary site of deposition of...
A low power atmospheric pressure plasma source, furnace atomization plasma emission spectrometry (FA...
Detection of molecular emission from analyte species introduced into the source of a furnace atomiza...
The effect of Ar\u2013He mixed gas plasmas on analyte signal intensities generated in a furnace atom...