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51.
酞菁氧钛/卟啉氧钒复合体系光导性能的协同增强效应 总被引:9,自引:0,他引:9
在酞菁氧钛(TiOPc)/卟啉氧钒(VOTPP)复合光生材料中发现了光敏性的非线性增强现象,对复合体系的电子跃迁光谱和X射线衍射图的研究结果表明,在基态下两种材料之间没有明显相互作用,光致放电研究说明,该现象来自光激发状态下复合体系中的隙间态跃迁对光导的贡献,XPS测试结果表明酞菁氧钛与卟啉氧钒分子之间存在着定向的部分电荷转移,光致激发状态下的电荷转移是协同增强效应的起因,这种协同增强效应为利用弱的电子给体与弱的受体复合体系设计新型光导材料与器件提供了新方法。 相似文献
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Complexation of AlIIIby 8-hydroxyquinoline and fluorescence behavior of the quinolinate(s) were studied in reverse micellar systems at low water content, and compared to aqueous media. Two surfactants were used: one was cationic (CTAC: cetyltrimethylammonium chloride) and the other was anionic (AOT: sodium bis(2-ethylhexyl)sulfosuccinate). The results obtained in the CTAC/dichloromethane system (W= [H2O]/[surfactant] = 0.9) showed that complexation occurred very likely in the oil phase and no micellar effect was observed. On the contrary, in the presence of AOT, specific micellar effects were observed due to the presence of the anionic polar heads: stabilization of the positively charged 1:1 and 1:2 chelates, at the expense of the neutral water-insoluble 1:3 chelate which is formed in aqueous solutions under similar conditions;drastic fluorescence enhancement factorsof 120 and 100 in AOT/heptane (W= 1.5) and AOT/dichloromethane (W= 1.6), respectively. Such factors have never been reported so far in either hydroorganic or direct micellar systems. In return, the length of time for the production of the complex(es) is increased because of the microheterogeneity of the medium and the small sizes of the water pools. 相似文献
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The digital filter described provides optimal enhancement of the signal-to-noise ratio by using prior information about peak shape and type of noise. The filter, based onthe matched-filter principle, is applied to chromatographic data, but is also suitable for optimal processing of similar noisy signals. The current implementation of the filter permits the specific reduction of different types of noise. Several theoretical aspects concerning the interpretation and use of this advanced filter are discussed. Some calculations on peaks with Gaussian and Gamma distribution shape are given. 相似文献
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建立了一种同时检测塑料食品接触材料中13种紫外吸收剂的超高效合相色谱法。以甲醇为溶剂对塑料食品接触材料样品进行超声提取,经C18固相萃取柱净化,过0.22 μm有机滤膜,采用超高效合相色谱仪分析。选择ACQUTY UPC2 HSS C18 SB色谱柱(150 mm×3.0 mm,1.8 μm),以超临界二氧化碳为流动相,异丙醇为改性剂进行梯度洗脱,在最优色谱条件下,13种紫外吸收剂能够在4 min内实现有效分离。结果表明,在各自线性范围内,13种紫外吸收剂的线性关系良好,标准曲线相关系数不低于0.9985,检出限(S/N=3)为0.05~0.15 mg/kg,加标回收率为86.8%~115.7%,相对标准偏差为0.73%~5.61%。该方法快速简便,准确可靠,同时大大减少了有机溶剂的消耗,可用于塑料食品接触材料中13种紫外吸收剂的快速检测。 相似文献
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A method of ultrasonic treatment (UST) was first used to modify the structure and electrochemical performance of nickel hydroxide for the active material of nickel series alkaline batteries. The experimental results showed that UST was an effective method to improve the electrochemical performance of β-Ni(OH)2 such as specific discharge capacity, discharge potential, electrochemical reversibility and oxygen evolution over-potential. The results of electrochemical impedance spectroscopy, powder X-ray diffraction and particle size distribution indicated that the improvement of the performance of β-Ni(OH)2 through UST was attributed to the reduction of the charge-transfer resistance (Rt) and the diffusion impedance (Zw), which resulted from the decrease of the crystallite and particle size and the increase of interlayer spacing. Diffusion coefficient of proton DH of ultrasonic treated β-Ni(OH)2 gained by CV tests was 1.13 × 10^-11 cm^2/s, and the average discharge specific capacity of ultrasonic treated β-Ni(OH)2 electrode was 301 mAh/g. 相似文献
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In the present study, we demonstrate the benefits of a shear-driven rotating microchamber system for the enhancement of microarray hybridizations, by comparing the system with two commonly used hybridization techniques: purely diffusion-driven hybridization under coverslip and hybridization using a fully automated hybridization station, in which the sample is pumped in an oscillating manner. Starting from the same amount of DNA for the three different methods, a series of hybridization experiments using mouse lung and testis DNA is presented to demonstrate these benefits. The gain observed using the rotating microchamber is large: both in terms of analysis speed (up to tenfold increase) and in final spot intensity (up to sixfold increase). The gain is due to the combined effect of the hybridization chamber miniaturization (leading to a sample concentration increase if comparing iso-mass conditions) and the transport enhancement originating from the rotational shear-driven flow induced by the rotation of the chamber bottom wall. 相似文献
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