998 resultados para TenenBaum, Joshua B.
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本文研究了Se(Ⅳ)-SCN-RhB-吐温20高灵敏显色反应体系。Se(Ⅳ)与SCN~-和RhB~+形成三元离子缔合物,并吸附了染料琉氰酸盐,表观摩尔吸光系数2.0×10~6L·mol~(-1).cm~(-1),是碱性染料类分光光度法中最灵敏的。Se含量在0~2μg/25ml范围内遵从比尔定律。利用巯基棉分离干扰离子,选择性高。测定了食品中总硒,结果满意。
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研究了具有焓效应的聚四氢呋喃-聚甲基丙烯酸甲酯两嵌段共聚物与聚氯乙烯PTHF-b-PMMA/PVC)共混体系的相容性和结晶行为.结果表明,其相容性比AB/A 型嵌段共聚物共混体系的相容性要好得多;与PTHF 部分相容的PVC 对PTHF 微区的结晶行为可产生很大的影响.应用有关理论和模型很好地解释了结晶行为的这种变化.
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A vitamin B-12 chemically modified electrode (CME) was constructed by adsorption of vitamin B-12 onto a glassy carbon surface. The electrode catalyzes the electrooxidation of hydrazine compounds over a wide pH range. The electrocatalytic behavior of hydrazines is elucidated with respect to the CME preparation conditions, solution pH, operating potential, mobile phase flow rate, and other variables. When applied to liquid chromatographic detection of the analytes, the vitamin B-12 CME yielded a linear response range over 2 orders of magnitude, and detection limits at the picomole level. The vitamin B-12 CME offers acceptable catalytic stability in both batch and flow systems.
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Studies using transmission electron microscopy, differential scanning calorimetry, and X-ray diffraction showed correlations between the crystallization behavior of the polydimethylsiloxane (PDMS) block and the morphology of the block copolymer poly (butadiene-b-dimethylsiloxane) (PB-PDMS). When the PDMS component existed as spheres dispersed in a PB matrix, the crystallization rate of the PDMS block was lower than when the PDMS phase existed in rod or cylinder form.
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本文研究了在聚乙稀醇-阿拉伯胶共存下,乙基罗丹明BPbI_4~(2-)的超高灵敏显色反应并制定了新的光度法。缔合物最大吸收为605nm,ε值为1.0×10~6·L·mol~(-1)·cm~(-1)。经巯基棉分离、富集,本法成功地用于硫酸镁、硫酸锌和硫酸亚铁铵等试剂中痕量铅的测定。
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The structure and properties of presumed block copolymers of polypropylene (PP) with ethylene-propylene random copolymers (EPR), i.e., PP-EPR and PP-EPR-PP, have been investigated by viscometry, transmission electron microscopy, dynamic mechanical analysis, differential scanning calorimetry, gel permeation chromatography, wide-angle x-ray diffraction, and other techniques testing various mechanical properties. PP-EPR and PP-EPR-PP were synthesized using delta-TiCl3-Et2AlCl as a catalyst system. The results indicate that the intrinsic viscosity of these polymers increases with each block-building step, whereas the intrinsic viscosity of those prepared by chain transfer reaction (strong chain-transfer reagent hydrogen was introduced between block-building steps during polymerization) hardly changes with the reaction time. Compared with PP / EPR blends, PP-EPR-PP block copolymers have lower PP and polyethylene crystallinity, and lower melting and crystallization temperatures of crystalline EPR. Two relaxation peaks of PP and EPR appear in the dynamic spectra of blends. They merge into a very broad relaxation peak with block sequence products of the same composition, indicating good compatibility between PP and EPR in the presence of block copolymers. Varying the PP and EPR content affects the crystallinity, density, and morphological structure of the products, which in turn affects the tensile strength and elongation at break. Because of their superior mechanical properties, sequential polymerization products containing PP-EPR and PP-EPR-PP block copolymers may have potential as compatibilizing agents for isotactic polypropylene and polyethylene blends or as potential heat-resistant thermoplastic elastomers.
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The morphology and mechanical behaviour of phenolphthalein poly(ether ether ketone) (PEK-C)/poly(2,6-dimethyl-1,4-phenylene oxide) (PPO) blends has been investigated. A poly(ethylene oxide)-b-polystyrene-b-poly(ethylene oxide) (PEO-PS-PEO) triblock copolymer was used as compatibilizer. It was found that PEO-PS-PEO has a compatibilizing effect on the PEK-C/PPO blends. The addition of PEO-PS-PEO to the blends greatly improves phase dispersion and interfacial interfacial adhesion and also enhances the ultimate tensile strength and Young's modulus at compositions ranging from 30 to 70% PEK-C. However, all the values of the ultimate tensile strength within the whole composition range are lower than those expected by simple additivity, probably owing to the poor mechanical properties of PEO-PS-PEO copolymer.
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结晶嵌段共聚物具有一般均聚物所没有的许多特殊结晶行为。虽然,人们很早就已开始对聚氧化乙烯/聚苯乙烯诸类嵌段共聚物的结晶行为进行研究,但对这类体系相分离规律及结晶行为的认识仍很不够。这主要是因为已研究的体系非常有限,此外,大都为对体系非平衡态结构的研究。所以,尽管Whitmore和Noolandi最近提出了结晶嵌段共聚物及其共混物的平衡形态理论,但缺乏实验数据与之比较。
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本文研究了Au(Ⅲ)-KSCN-罗丹明B-阿拉伯树胶水相显色体系和光度特性。缔合物的λ_(max)为595nm,表现摩尔吸光系数ε=1.23×10~5L mol~(-1).cm~(-1).Au(Ⅲ)浓度在0.0~8.0μg/25mL时服从比耳定律。所制定的测金光度法,结合巯基棉分离技术,已试用于金精矿的分析,获得了较好结果
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L-B即 Langmuir-Blodgett单分子膜,它是人为地利用分子间相互作用而建立起来的特殊分子体系。在L-B中分子是有序的准晶体排列,其性质有别于固体和晶体,因而有人将其称为物质的第五相。用米制备L-B的技术称为L-B术。
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本文研究了丁基罗丹明 B-磷钼杂多酸-PVA_124超高灵敏显色反应,提出了测定痕量磷新的分光光度法,缔合物的最大吸收波长位于588nm 处,表观摩尔吸光系数ε值为1.1×10~6L·mol~(-1)·cm,研究了缔合物的组成比和红外光谱,并初步讨论了反应机理,本法直接用于钢、试剂和水样的分析,结果较为满意,测定下限分别可达4ppb(10ml 水)和2×10~(-6)%(1g 试剂)。
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LaF_3作为离子选择性电极和对气体的敏感性质已进行了一定的研究,但其他稀土氟化物的敏感性质却未见报道。本文合成了RE_(1-x)B_xF_(3-y),研究了它们的结构、电学性质及敏感性质,得到有可能在150℃使用的固体电解质氧敏材料。 (一) RE_(1-x)B_xF_(3-y)的结构分析 结构分析表明,Ca、Ba置换RE的含量少时,如La_(0.95)Ba_(0.05)F_(3-y)、Ce_(0.95)Ca_(0.05)F_(3-y)的X射线衍射分析结果与LaF_3、CeF_3相似,说明它们是固溶体。而Ca置换RE含量较多时,如Y_(0.71)Ca_(0.29)F_(3-y)、Gd_(0.85)Ca_(0.15)F_(3-主)的X射线衍射分析结果却与相应的YF_3和GdF_3完全不
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本文研究了丁基罗丹明B-砷钼杂多酸-PVA-124体系,由于形成高取代氢原子的杂多酸而使反应灵敏度大增,ε值高达6.9×10~5 L·mol~(-1)·cm~(-1)。缔合物的组成比As(V):BRB=1:7。红外光谱研究证明,染料和杂多酸形成了离子对缔合物。本法可成功地用于水样和试剂中痕量砷的测定。测定下限分别为2.0ppb(水样)和2×10~(-6)%(试剂)。
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本文研究了在聚乙烯醇-124存在下,钨(V)-SCN~--乙基罗丹明B高灵敏显色体系。缔合物λ_(max)=585nm,表观摩尔吸光系数ε_(585)=1.9×10~6L·mol~(-1)·cm~(-1)。钨浓度在0.1~1.5μg/25ml范围内符合比尔定律,方法曾用于水样及钢样中痕量钨的测定,结果较满意。