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81.
Reaction between the title compounds gave the unexpected 3-[5,5-dimethyl-2,5-dihydrofur-4-yl-2-(3-isopropanol-2-propenonitrile)imino]benzothiazol-2-one, as a result of the addition of two cyanoacetylene molecules.Irkutsk Institute of Organic Chemistry, Siberian Branch, Russian Academy of Sciences, Irkutsk 664033. Translated from Izvestiya Akademii Nauk, Seriya Khimicheskaya, No. 4, pp. 1003–1005, April, 1992. 相似文献
82.
David Valade Frédéric Boschet Stéphanie Roualdès Bruno Ameduri 《Journal of polymer science. Part A, Polymer chemistry》2009,47(8):2043-2058
A membrane or an electrode binder to be used in a solid alkaline fuel cell (SAFC) needs to (i) be insoluble in both aqueous solutions and the required fuels, and (ii) exhibit an hydroxide ion conductivity. To achieve these goals, two pathways were employed: (i) one consists of the radical copolymerization of diallyldimethylammonium chloride (DADMAC) with chlorotrifluoroethylene (CTFE) while (ii) the other one is based on the counter‐ion exchange of a poly(DADMAC) by fluorinated anions. First, the radical copolymerization of CTFE with DADMAC under various experimental conditions was achieved in yields up to 85%, and DADMAC percentages in the copolymers were higher than those in the feed compositions. To obtain insoluble copolymers, high CTFE feed contents (>70 mol %) were required. The other route consisting in the partial replacement of the Cl? counter‐ions in the water‐soluble poly(DADMAC) by bistrifluoromethanesulfonimide (TFSI?) did confer the starting material insolubility in water while maintaining its conductivity. When the fluorinated poly(DADMAC) was obtained from concentrated solutions of fluorinated surfactant, it was observed that the amount of counter‐ions exchanged was difficult to control, which limits optimization. Nevertheless, under diluted conditions, membranes with ion exchange capacity up to 0.7 meq g?1, and conductivities close to 1 mS cm?1 were obtained. Although their conductivities were low, these membranes fulfill the requirements for a SAFC membrane in terms of solubility in DMSO, water insolubility, and thermal stability (Td,10% > 320 °C). When used in a fuel cell, as a binder in the membrane‐electrode assembly (MEA), significant improvements were noted (+50% of the open circuit voltage, +580% in current density, and +540% in accessible power). © 2009 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 47: 2043–2058, 2009 相似文献
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Sin-Hong Chen Ya-Chi Lin Ming-Kuei Shih Li-Fei Wang Shyh-Shyan Liu Jue-Liang Hsu 《Molecules (Basel, Switzerland)》2020,25(22)
Protein phosphorylation is a crucial post-translational modification that plays an important role in the regulation of cellular signaling processes. Site-specific quantitation of phosphorylation levels can help decipher the physiological functions of phosphorylation modifications under diverse physiological statuses. However, quantitative analysis of protein phosphorylation degrees is still a challenging task due to its dynamic nature and the lack of an internal standard simultaneously available for the samples differently prepared for various phosphorylation extents. In this study, stable-isotope dimethyl labeling coupled with phosphatase dephosphorylation (DM + deP) was tried to determine the site-specific degrees of phosphorylation in proteins. Firstly, quantitation accuracy of the (DM + deP) approach was confirmed using synthetic peptides of various simulated phosphorylation degrees. Afterwards, it was applied to evaluate the phosphorylation stoichiometry of milk caseins. The phosphorylation degree of Ser130 on α-S1-casein was also validated by absolute quantification with the corresponding synthetic phosphorylated and nonphosphorylated peptides under a selected reaction monitoring (SRM) mode. Moreover, this (DM + deP) method was used to detect the phosphorylation degree change of Ser82 on the Hsp27 protein of HepG2 cells caused by tert-butyl hydroperoxide (t-BHP) treatment. The results showed that the absolute phosphorylation degree obtained from the (DM + deP) approach was comparable with the relative quantitation resulting from stable-isotope dimethyl labeling coupled with TiO2 enrichment. This study suggested that the (DM + deP) approach is promising for absolute quantification of site-specific degrees of phosphorylation in proteins, and it may provide more convincing information than the relative quantification method. 相似文献
88.
金福江 《西南科技大学学报》2005,20(1):6-10,14
根据脱木素反应动力学理论,建立了脱木素反应的双输入双输出数学模型,设计了用有效碱浓度和卡伯值作为控制变量的多变量推断控制系统。对实际连续蒸煮过程脱木素反应控制的测试结果表明,该控制系统可以很好的克服各种不可测扰动对脱木素反应的影响,提高脱木素反应生成纸浆的质量和纸浆得率,同时降低反应生成副产品蒸煮黑液中的残碱浓度,减少蒸煮过程的用碱量,达到保护环境、清洁生产的目的。 相似文献
89.
Alan R. Kennedy Dr. Prokopis C. Andrikopoulos Dr. Jean‐Baptiste Arlin David R. Armstrong Dr. Neil Duxbury David V. Graham Jennifer B. A. Kirkhouse Dr. 《Chemistry (Weinheim an der Bergstrasse, Germany)》2009,15(37):9494-9504
The first solid‐state structures of ortho‐sulfonated monoazo dyestuffs are reported and compared to those of their para‐ and meta‐sulfonated analogues. The structures of the 16 Na, K, Cs, Mg, Ca, Sr, and Ba ortho‐sulfonated salts are found to have fewer M? O3S bonds than their isomeric equivalents and this in turn means that the metal type is no longer the prime indicator of which structural type will be adopted. M? O3S bonds are replaced by M? OH2, M? HOR and M–π interactions, apparently for steric reasons. As well as new bonding motifs, the changed dye shape also leads to new packing motifs. The simple organic/inorganic layering ubiquitous to the para‐ and meta‐sulfonated dye salt structures is replaced by variations (organic bilayers, inorganic channels), each of which correlates with a different degree of molecular planarity in the sulfonated azo dye anion. 相似文献
90.
提出以2_磷酸抗坏血酸酯为碱性磷酸酯酶(ALP)底物微分脉冲伏安法测定ALP的方法 ;2_磷酸抗坏血酸酯在ALP的催化作用下发生水解反应生成抗坏血酸 ,抗坏血酸在玻碳电极上 +0.40V(vsAg/AgCl)被氧化而产生一个灵敏的氧化峰 ,氧化峰电流随着酶浓度的增大而增大 ,借助此氧化峰电流可以测定ALP ,进而可用于以ALP为标记酶的酶免疫分析 ;用微分脉冲伏安法对酶催化反应条件和酶催化反应产物的测定条件进行了详细的研究 ,建立了以2_磷酸抗坏血酸酯为底物的伏安酶联免疫分析新体系 ,测定游离ALP的线性范围是0.4~2.0×103 U/L,检测限为0.3U/L,对游离的IgG_ALP的测定最大稀释比为1∶200000。 相似文献