№Determination of Trace Arsenic by Solid Substrate-Room Temperature Phosphorescence Quenching Method Based on the Catalyzed Reaction of H2O2 Oxidizing 9-Hyd roxy-2,3,4,9-tet rahyd ro-1,10-anth raquinone  

№Determination of Trace Arsenic by Solid Substrate-Room Temperature Phosphorescence Quenching Method Based on the Catalyzed Reaction of H2O2 Oxidizing 9-Hyd roxy-2,3,4,9-tet rahyd ro-1,10-anth raquinone

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作  者:胡世荣 温泉 孔祥斌 骆彩颖 陈惠华 陈丽芬 张玉平 

机构地区:[1]Department of Chemistry and Environment Science, Zhangzhou Normal College, Zhangzhou, Fujian 363000, China [2]Department of Applied Chemistry, Liaoning Petroleum Chemical Industry Professional Technology College, Jinzhou, Liaoning 121001, China

出  处:《Chinese Journal of Chemistry》2007年第4期527-530,共4页中国化学(英文版)

摘  要:A new solid substrate-room temperature phosphorescence (SS-RTP) quenching method for the determination of trace As(V) has been developed, based on the facts that 9-hydroxy-2,3,4,9-tetrahydro-1,10-anthraquinone (R) can emit intense and stable SS-RTP on solid substrate, and α,α'-dipyridyl can activate As(V) catalysis of the reaction of H2O2 oxidizing R to non-phosphorescence compound R', which can cause the sharp quenching of SS-RTP. Under the optimum condition, the relationship between the ΔIp of the emitting intensity and 1.60-160 fg·spot^-1 As(V) (corresponding concentration: 0.0040-0.40 ng·mL^-1, sample volume: 0.4 μL·spot^-1) conformed to Beer' law. The regression equation of working curve can be expressed as ΔIp= 20.46+0.5492CAs(v) fig·spot^-1) (r= 0.9995, n = 6). The limit detection (LD) is 0.27 fg·spot^-1 [As(V) corresponding concentration: 6.8 × 10^-13 g·mL^-1, n=11]. The samples containing 0.0040 and 0.40 ng·mL^-1 As(V) were repeatedly determined for 11 times. RSD are 3.0% and 2.7% respectively. The SS-RTP mechanism was also discussed. R was synthesized in this paper. Meanwhile, the structure was determined by NMR, IR, mass spectra and elemental analysis.A new solid substrate-room temperature phosphorescence (SS-RTP) quenching method for the determination of trace As(V) has been developed, based on the facts that 9-hydroxy-2,3,4,9-tetrahydro-1,10-anthraquinone (R) can emit intense and stable SS-RTP on solid substrate, and α,α'-dipyridyl can activate As(V) catalysis of the reaction of H2O2 oxidizing R to non-phosphorescence compound R', which can cause the sharp quenching of SS-RTP. Under the optimum condition, the relationship between the ΔIp of the emitting intensity and 1.60-160 fg·spot^-1 As(V) (corresponding concentration: 0.0040-0.40 ng·mL^-1, sample volume: 0.4 μL·spot^-1) conformed to Beer' law. The regression equation of working curve can be expressed as ΔIp= 20.46+0.5492CAs(v) fig·spot^-1) (r= 0.9995, n = 6). The limit detection (LD) is 0.27 fg·spot^-1 [As(V) corresponding concentration: 6.8 × 10^-13 g·mL^-1, n=11]. The samples containing 0.0040 and 0.40 ng·mL^-1 As(V) were repeatedly determined for 11 times. RSD are 3.0% and 2.7% respectively. The SS-RTP mechanism was also discussed. R was synthesized in this paper. Meanwhile, the structure was determined by NMR, IR, mass spectra and elemental analysis.

关 键 词:arsenic PHOSPHORESCENCE α α'-dipyridyl ANTHRAQUINONE 

分 类 号:X132[环境科学与工程—环境科学] O613.63[理学—无机化学]

 

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