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Then the obtained PEDOT/GO nanocomposites were utilized to modify glassy carbon electrode and designed for the trace level sensing of rutin.
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A substoichiometric radiochemical displacement method has been designed for the estimation of trace quantities of iron.
A novel method was designed for the determination of trace protein with high sensitivity.
FP-XRF units often include analysis modes specifically designed for the quantification of trace elements in soils.
SPME is an appealing method for sample collection because it is designed for the sampling of trace level analytes with short sampling times in a variety of environments.
From these observations, a glassy carbon electrode coated with Langmuir Blodgett film of p-tert-butylthiacalix[4]arene is designed for the determination of trace amounts of Ag+.
Indium-thin oxide (ITO) electrode coated with the thin films of MEH-PPV and composite MEH-PPV/ß-ketoimine Cal[4] are designed for the determination of trace amounts of Hg2+ ions.
From these observations, a glassy carbon electrode coated with Langmuir Blodgett film of p-tert-butylthiacalix[4] arene as a new voltammetric sensor is designed for the determination of trace amounts of Hg2+.
A novel method with high sensitivity was designed for the determination of trace nucleic acids by using cationic surfactant cetylpyridinium chloride (CPC) and camellia sinensis (CS) as resonance Rayleigh light scattering (RLS) probes.
A novel thermal desorption unit (TDU) has been developed and specifically designed for the detection of trace quantities of explosives using a proton transfer reaction mass spectrometer (PTR-MS).
Detection limits on the order of nanogram per liter (ng/L) were achieved in CME GC flame ionization detection experiments designed for the preconcentration and trace analysis of both highly polar and moderately polar compounds extracted directly from aqueous media using sol gel short-chain PEG coated microextraction capillaries.
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