The chemiluminescence (CL) reaction between lucigenin (Lu) and molybdenum (III) produced by a Jones reductor was investigated using a flow injection system. On the basis of this, a novel method for the determination o...The chemiluminescence (CL) reaction between lucigenin (Lu) and molybdenum (III) produced by a Jones reductor was investigated using a flow injection system. On the basis of this, a novel method for the determination of trace amount of molybdenum has been established. The emission intensity was linear with molybdenum concentration in the range of 0.1-1000 ng/mL; the detection limit was 0.02 ng/mL molybdenum; the relative standard deviation was less than 2% for the determination of 0.1 ng/mL molybdenum (n=11). The method has been applied successfully to the analysis of trace molybdenum in water and steel samples.展开更多
A new chemiluminescence (CL) analytical method for determination of rare earth Ho(Ⅲ) ion is reported. It is based on the quenching effect of Ho(Ⅲ) ion on CL intensity of Luminol H 2O 2 Cr(Ⅲ) system. The detecti...A new chemiluminescence (CL) analytical method for determination of rare earth Ho(Ⅲ) ion is reported. It is based on the quenching effect of Ho(Ⅲ) ion on CL intensity of Luminol H 2O 2 Cr(Ⅲ) system. The detection limit is 3×10 -8 mol/L, the linear range is from 1×10 -7 to 1×10 -4 mol/L; the relative standard deviation is less than 3% (for 2×10 -7 mol/L Ho, n=11). The method was applied to determination of Ho(Ⅲ) in pure samples with satisfactory results.展开更多
A new method for the determination of baicalin with HPLC-CL was developed. The method was based on the chemiluminescence reaction between KMnO4 and baicalin sensitized from HCHO. The linear range was 3.7?0-6~9.8?0-5...A new method for the determination of baicalin with HPLC-CL was developed. The method was based on the chemiluminescence reaction between KMnO4 and baicalin sensitized from HCHO. The linear range was 3.7?0-6~9.8?0-5 mol/L with detection limit of 1.7?0-6 mol/L and the relative standard deviation was 2.5 % (Cs=6.6?0-5 mol/L, n=5). The method has been applied to the determination of baicalin in oral administration, injection, Scutellariae radix and granules with good results.展开更多
Sulfur dioxide has been found to decrease the chemiluminescence of luminol-iodine system.A new determination method for sulfur dioxide in atmosphere is developed by applying this reaction to a flow injection gas diffu...Sulfur dioxide has been found to decrease the chemiluminescence of luminol-iodine system.A new determination method for sulfur dioxide in atmosphere is developed by applying this reaction to a flow injection gas diffusion separation system.This permits the determination of sulfur dioxide selectively and rapidly.展开更多
A novel chemiluminescence (CL) sensor for H2O2 combined with flow injection analysis is described in this paper. H2O2 is sensed by the CL reaction with luminol and Co2+ bleeding from the ion exchange column with immob...A novel chemiluminescence (CL) sensor for H2O2 combined with flow injection analysis is described in this paper. H2O2 is sensed by the CL reaction with luminol and Co2+ bleeding from the ion exchange column with immobilized reagents by hydrolysis. The calibration graph is linear and falls between the range of 4x10(-8) to 1x10(-5) mol/L. A complete analysis could be performed in 1 min. The system was reused for over 50 hours.展开更多
A novel method of flow injection chemiluminescence (CL) analysis for the determination of rare earth La(Ⅲ) ion is prensented. It is based on the quenching effect of La(Ⅲ) ion in the CL system of Luminol H 2O 2 ...A novel method of flow injection chemiluminescence (CL) analysis for the determination of rare earth La(Ⅲ) ion is prensented. It is based on the quenching effect of La(Ⅲ) ion in the CL system of Luminol H 2O 2 Cr(Ⅲ). The CL emission intensity is linear with La(Ⅲ) concentration in the range 1×10 -7 ~1×10 -4 mol/L; the detection limit is 4×10 -8 mol/L, the relative standard deviation is less than 3% (for 2×10 -7 mol/L La, n =11).展开更多
文摘The chemiluminescence (CL) reaction between lucigenin (Lu) and molybdenum (III) produced by a Jones reductor was investigated using a flow injection system. On the basis of this, a novel method for the determination of trace amount of molybdenum has been established. The emission intensity was linear with molybdenum concentration in the range of 0.1-1000 ng/mL; the detection limit was 0.02 ng/mL molybdenum; the relative standard deviation was less than 2% for the determination of 0.1 ng/mL molybdenum (n=11). The method has been applied successfully to the analysis of trace molybdenum in water and steel samples.
文摘A new chemiluminescence (CL) analytical method for determination of rare earth Ho(Ⅲ) ion is reported. It is based on the quenching effect of Ho(Ⅲ) ion on CL intensity of Luminol H 2O 2 Cr(Ⅲ) system. The detection limit is 3×10 -8 mol/L, the linear range is from 1×10 -7 to 1×10 -4 mol/L; the relative standard deviation is less than 3% (for 2×10 -7 mol/L Ho, n=11). The method was applied to determination of Ho(Ⅲ) in pure samples with satisfactory results.
文摘A new method for the determination of baicalin with HPLC-CL was developed. The method was based on the chemiluminescence reaction between KMnO4 and baicalin sensitized from HCHO. The linear range was 3.7?0-6~9.8?0-5 mol/L with detection limit of 1.7?0-6 mol/L and the relative standard deviation was 2.5 % (Cs=6.6?0-5 mol/L, n=5). The method has been applied to the determination of baicalin in oral administration, injection, Scutellariae radix and granules with good results.
文摘Sulfur dioxide has been found to decrease the chemiluminescence of luminol-iodine system.A new determination method for sulfur dioxide in atmosphere is developed by applying this reaction to a flow injection gas diffusion separation system.This permits the determination of sulfur dioxide selectively and rapidly.
文摘A novel chemiluminescence (CL) sensor for H2O2 combined with flow injection analysis is described in this paper. H2O2 is sensed by the CL reaction with luminol and Co2+ bleeding from the ion exchange column with immobilized reagents by hydrolysis. The calibration graph is linear and falls between the range of 4x10(-8) to 1x10(-5) mol/L. A complete analysis could be performed in 1 min. The system was reused for over 50 hours.
文摘A novel method of flow injection chemiluminescence (CL) analysis for the determination of rare earth La(Ⅲ) ion is prensented. It is based on the quenching effect of La(Ⅲ) ion in the CL system of Luminol H 2O 2 Cr(Ⅲ). The CL emission intensity is linear with La(Ⅲ) concentration in the range 1×10 -7 ~1×10 -4 mol/L; the detection limit is 4×10 -8 mol/L, the relative standard deviation is less than 3% (for 2×10 -7 mol/L La, n =11).