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991.
0 引言 最近,我们对2,6-吡啶二酸的衍生物4-羟基-2,6-吡啶二酸(2,6-HAD)的配合物进行了一系列的研究,结果发现2,6-HAD是一个优良的刚性配体,其配位方式种类繁多,特别是配体上的4位羟基,既具有较强的配位能力[1],又可以形成分子间氢键[2,3],影响和控制配合物的超分子结构,4-羟基-2,6-吡啶二酸不仅能与过渡金属、镧系金属离子分别形成稳定的配合物[1-3],而且能同时与稀土和过渡金属形成具有纳米孔穴的混金属配合物,这些配合物在磁性、光学等方面都显示出优异的性能[4].  相似文献   
992.
The water-soluble CdS nanoparticles were synthesized in aqueous solution. A novel fluorescence resonance energy transfer (FRET) system with CdS nanoparticles as energy donors and 3,30-diethyl-oxadicarbocyanine iodide (DOCAI) dyes as energy accepter has been developed.  相似文献   
993.
维多利亚蓝B双波长叠加吸光光度法测定微量亚硝酸根   总被引:7,自引:0,他引:7  
在稀盐酸介质中 ,维多利亚蓝B(VBB)的最大吸收峰位于 6 13nm ,当与NO- 2 反应后发生颜色变化 ,最大吸收峰红移 ,以试剂空白为参比 ,可观察到在 6 39nm处出现一新的最大吸收峰 ,同时在 5 6 0nm处发生褪色反应 ,最大褪色波长和最大吸收波长处吸光度均与溶液中NO- 2 的浓度成正比 ,其线性范围在 0~ 2 0 μg/ 2 5mlNO- 2 ,摩尔吸光系数分别为ε56 0 =2 .96× 10 4 L·mol- 1·cm- 1,ε6 39=3.2 3× 10 4 L·mol- 1·cm- 1,用双波长叠加法ε56 0 +6 39=6 .19× 10 4 L·mol- 1·cm- 1,相关系数为 0 .9999。由于显色反应在较强的酸性介质中进行 ,方法具有良好的选择性 ,用于环境水中微量NO- 2 的测定 ,结果满意。  相似文献   
994.
Dong X  Wang W  Ma S  Sun H  Li Y  Guo J 《Journal of chromatography. A》2005,1070(1-2):125-130
Method of molecularly imprinted solid phase extraction (MISPE) of (-)-ephedrine from Chinese Ephedra has been developed in the research. The molecularly imprinted polymer (MIP) with good selectivity and affinity for (-)-ephedrine was synthesized with (-)-ephedrine as the template, methacrylic acid as the functional monomer. The washing and elution conditions in MISPE were selected and optimized for efficient analyte extraction and sample clean-up. A clean analytical HPLC base line of ephedra extract was obtained after MISPE, which indicated that the sample pre-treatment was efficient. Good recovery and precision were obtained in the assessment for the MISPE-HPLC procedure, which demonstrated it is a reliable method and can be used for the determination of (-)-ephedrine in herbal ephedra.  相似文献   
995.
Polyoxometalates(POMs0) containing Keggin moieties exhibit a wide variety of compositions and have considerable structrral versatility as well as important magnetic, optical,and catalytic proper-ties[1-6].  相似文献   
996.
3,19-二羟基-1-硫杂-5,8,11,14,17-五氧杂环二十烷(简称二羟基硫杂20-冠-6)在一缩二乙二醇二甲醚和氢化钠存在下可与卤代烷顺利地进行醚化反应,得到双己氧基、双十二烷氧基、双十六烷氧基、双节氧基和双烯丙氧基硫杂20-冠-6,同时也得到了单己氧基、单十二烷氧基、单十六烷氧基和单辛氧基单羟基疏杂20-冠-6副产物。二羟基硫杂冠醚可顺利地与丁二酰氯缩聚,得到主链含硫杂冠醚基团的聚酯  相似文献   
997.
Reaction of arylidenemalononitriles, 1,3-indanedione, and mercaptoacetic acid or 4-methylbenzenethiol is successfully carried out using microwave heating. It is an efficient and promising synthetic strategy to build the indenopyridine skeleton.  相似文献   
998.
苑伟康  吴洪  姜忠义  许松伟 《有机化学》2006,26(11):1508-1517
碳纳米管(carbon nanotubes, CNTs)的溶解性和分散性较差是目前制约其广泛应用及在一些有特殊要求的领域(如生物技术)应用的主要原因之一. 对CNTs进行共价修饰是改善其溶解性和分散性的有效方法之一. 目前CNTs的共价修饰主要通过两类反应来实现: 羧基的衍生反应和直接加成反应. 介绍了基于这两种反应的几种共价修饰方法, 比较了各种修饰方法的优缺点及其对CNTs的溶解性和分散性的改善效果.  相似文献   
999.
This paper is focused on in situ preparation of melamine cyanurate (MCA) nanoparticles from reaction of melamine (MEL) and cyanuric acid (CA) and their flame retardant polyamide 6 (PA6) composite in the extrusion process through a novel reactive processing method. Fourier transform infrared (FT-IR), X-ray diffraction (XRD), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA) and scanning electron microscopy (SEM) were utilized to characterize the in situ formed MCA nanoparticles and their blends with PA6. Introduction of pentaerythritol (LTP) and water-bound plasticizer dioctyl phthalate (DPT) into the extrusion reaction system greatly inhibits the evaporation of water required for melamine and cyanuric acid reaction at high temperature (higher than 180 °C), laying a foundation for successful in situ preparation of MCA through reactive processing. XRD and FT-IR measurements indicate that under the effect of pentaerythritol, dioctyl phthalate and water, melamine really reacts with cyanuric acid to in situ form MCA in extrusion process. The reaction degree is close to 100%. A very important finding through SEM is that the in situ formed MCA particles, which were found to have aspect ratio of about 7.5, radial size in the range of 70-300 nm (mostly 70-90 nm) and crystallite size of less than 22 nm, are uniformly dispersed in the matrix PA6 at nanoscale. The in situ formed MCA nanoparticles greatly improve the flame retardancy and the mechanical properties of flame-retarded PA6 materials, and the introduced plasticizer dioctyl phthalate also ameliorates the related impact property. The obtained flame-retarded PA6 materials have good comprehensive performance with flame retardancy UL-94 V-0 rating at 1.6 and 3.2 mm thickness, tensile strength 48.0 MPa, elongation at break 106.3% and Izod notched impact strength 8.92 kJ/m2. Compared with flame-retarded PA6 material with in situ formed MCA, the one prepared through conventional blending of PA6 with commercial MCA product has improved tensile strength but deteriorated impact strength and flame retardancy.  相似文献   
1000.
In this paper, the spectral behavior of protein and Poniacyl Carmine 2B (PC 2B) has been studied by spectrophotometric method. The conditional constants, apparent combination constant K and maximum binding number n, were used to express the combination ability of the reactions between PC 2B and protein under a set of given conditions. The Sandell index s was used to express the sensitivity of the determination of protein. The factors, acidity, PC 2B concentration and the ionic strength, were discussed by the change of apparent combination constant and maximum binding number. It was found that acidity of the solution, PC 2B concentration and ionic strength had a significant effect on the sensitivity of the assay of protein. Under the optimal conditions, the apparent combination constant K and the maximum binding number n were 2.36 × 106 L mol?1 and 95, respectively. With further investigation, it was found that the Scatchard model was suitable in treating the data obtained in the experiments. In the buffer medium of HCl‐KCl at 1.87, the addition of protein made the maximum absorption of the system move from 527 nm to 513 nm. Its apparent molar absorptivity is 4.46 × 105 Lmol?1 cm?1 at 513 nm. Beer's law is obeyed in the range of 0 ? 55 μg mL?1. The system developed in this paper has been used for the determination of protein in milk powder successfully.  相似文献   
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