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51.
于铂电极上修饰一层N-(3-二茂铁乙酰胺基)丙基吡咯聚合物膜,应用循环伏安法对聚合物的电化学性能进行研究,发现了N-位取代吡咯聚合物的电活性大大降低,聚合物中 二茂铁基团氧化还原性能稳定,制成酶电极后,在+0.2V以葡萄糖有一明显的催化峰,而对抗坏血酸,尿酸则几乎没有呼应,该葡萄糖电极性能稳定,连续工作十天,响应值基本不变。 相似文献
52.
壳聚糖修饰玻碳电极卷积伏安法测定环境水中的EDTA 总被引:1,自引:0,他引:1
制备了壳聚糖修饰玻碳电极 ,研究了Fe(EDTA) -在修饰电极上的吸附还原行为 ,用卷积伏安法通过Fe(EDTA) -的检测测定了环境水中的EDTA。在优化的实验条件下 ,峰电流值与 8.0× 1 0 -7~ 5 .0× 1 0 -6mol L的EDTA呈线性关系 ,回归方程为epp′ =0 .75 2 5c - 0 .661 3,r =0 .991 ,最低检出限为 5 .0× 1 0 -7mol L ,5次测定的相对标准偏差小于 5 .8%。对实际样品测定的回收率为98 1 %~ 1 0 5 % ,对比HPLC的结果 ,相对偏差小于 5 %。 相似文献
53.
MAO Mingfei LUO Jianguang REN Li CHEN Zhequan LIU Zhifang College of Materials South China University of Technology Guangzhou China Department of Chemical Engineering Nanhua University Hengyang China 《Chinese Journal of Reactive Polymers》2002,(1)
1. INTRODUCTION Poly (diphenyl oxide) (DPO) resins are a series of heat-resisting thermosetting resins. In 1960s, the West House Company applied them to make H class insulting materials and got an extensive use successfully [1]. But due to the three main… 相似文献
54.
《Arabian Journal of Chemistry》2020,13(12):8848-8887
Phthalocyanine (Pc) complexes are an important class of dyes with numerous (e.g., biological, photophysical, and analytical) applications. Among the methods used to improve the properties of these complexes, one should mention the introduction of different substituents, variation of the central metal ion, ligand exchange, and conjugation to nanomaterials (e.g., carbon-based nanomaterials and metal nanoparticles (NPs)). This work briefly reviews Pc complex conjugation to Ag and Au NPs, highlights the different NP shapes, and discusses the diversity of conjugation approaches. Moreover, the use of UV–Vis spectroscopy, powder X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, atomic force microscopy, dynamic light scattering and Fourier transform infrared spectroscopy to characterize Pc-NP hybrids is summarized. The effect of conjugation on Pc photo-physicochemical properties (fluorescence, singlet oxygen generation, triplet state formation, and optical limiting behavior) is discussed, and future perspectives for the synthesis and applications of new hybrids are provided. 相似文献
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A renewable three-dimensional chemically modified carbon ceramic electrode containing Ru [(tpy)(bpy)Cl] PF6 was constructed by sol-gel technique. It exhibits an excellent electro-catalytic activity for oxidation of l-cysteine and glutathione at pH range 2-8. Cyclic voltammetry was employed to characterize the electrochemical behavior of the chemically modified electrode. The electrocatalytic behavior is further exploited as a sensitive detection scheme for l-cysteine and glutathione by hydrodynamic amperometry. Optimum pH value for detection is 2 for both l-cysteine and glutathione. The catalytic rate constants for l-cysteine and glutathione were determined, which were about 2.1×103 and 2.5×103 M−1 s−1, respectively. Under the optimized condition the calibration curves are linear in the concentration range 5-685 and 5-700 μM for l-cysteine and glutathione determination, respectively. The detection limit (S/N=3) and sensitivity is 1 μM, 5 nA/μM for l-cysteine and 1 μM, 7.8 nA/μM for glutathione. The relative standard deviation (RSD) for the amperogram's currents with five injections of l-cysteine or glutathione at concentration range of linear calibration is <1.5%. The advantages of this amperometric detector are: high sensitivity, good catalytic effect, short response time (t<3 s), remarkable long-term stability, simplicity of preparation and reproducibility of surface fouling (RSD for six successive polishing is 3.31%). This sensor can be used as a chromatographic detector for analysis of l-cysteine and glutathione. 相似文献
60.
《Electroanalysis》2003,15(9):787-796
The use of [Cu(bipy)2]Cl2?6H2O as a biomimetic catalyst in the construction of an amperometric sensor for dopamine determination is reported. The sensor was prepared modifying a glassy carbon electrode with a Nafion membrane doped with [Cu(bipy)2]Cl2?6H2O complex. The sensor presented a higher response in 0.25 mol L?1 phosphate buffer solution (pH 7.0), with an applied potential of ?50 mV (vs. SCE). In the optimized operational conditions, a linear response range between 35 and 240 μmol L?1, with a sensitivity of 2.02±0.07 nA l μmoL?1 cm?2 and detection limit of 8.0 μmol L?1 were typically observed for the sensor. The response time presented for this sensor was 0.5 s, presenting the same response for at least 40 successive measurements, with good repeatability (3.0%) expressed as relative standard deviation for n=6. The difference of the response between four sensor preparations was 4%. A detailed investigation about the sensor response for other sixteen phenolic compounds and interfering species were carried out. The sensor was applied in the determination of dopamine in pharmaceutical preparation with success. 相似文献