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Dehydrogenation of alcohols into aldehydes and ketones by Ru3(CO)12/PPh3 based homogeneous catalysis has been investigated as an alternative for the classical Oppenauer oxidation. Several catalytic systems have been screened in the Oppenauer-like oxidation of alcohols. A systematic study of various combinations of Ru3(CO)12, mono- and bidentate ligands and hydride acceptors was performed to enable dehydrogenation of primary alcohols to stop at the aldehyde stage. Among many H-acceptors screened, diphenylacetylene (tolane) proved the most suitable judged from its smooth reduction. Electron rich and deficient analogues of tolane have been synthesized and, based on competition experiments between these H-acceptors, a tentative catalytic cycle for the Ru3(CO)12/PPh3-catalyzed dehydrogenations has been proposed. 相似文献
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Mitsunori Oda Yosuke Fukuchi Satoshi Ito Nguyen Chung Thanh Shigeyasu Kuroda 《Tetrahedron letters》2007,48(52):9159-9162
Reactions of pyrrolidine with 2 equiv of aldehydes without any catalyst in a pressurized vessel at 140–200 °C yielded 1,3-disubstituted pyrroles. -Branched aldehydes gave fairly good yields of the corresponding products by this method, which provides a facile non-oxidative procedure for synthesizing 1,3-dialkylpyrroles from inexpensive pyrrolidine and aldehydes. 相似文献
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本文采用氢化物-非色散原子荧光光谱法研究了十几种饲料矿物添加剂中金属离子对砷测定的干扰,采用加入硫脲-抗坏血酸混合溶液、碘化钾分离、加热蒸干等方法消除干扰。同时本文还对测定砷的酸度、硼氢化钾浓度和仪器工作参数进行了研究和优化。方法相对标准偏差(RSD)为0.54%,检出限(D.L)为54.5ng/L,样品国.加标回收率为102.9%。实际样品测定结果与胂斑法相比具有很好的一致性。 相似文献
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用新型氢化物发生喇叭口Ⅱ型同心雾化器替代Meinhard同心雾化器,溶液雾化为气溶胶和氢化物发生反应生成氢化物气体就可以在雾化系统中同时进行,选用L-巯基丙氨酸(L-cysteine)和硫脲(thiourea)作为基体铜的掩蔽剂,无需分离基体铜,实现了电感耦合等离子体原子发射光谱(ICP-AES)同时测定纯铜样品中氢化物和非氢化物形成元素的目的。研究了酸度、NaBH4的浓度、载气流速及清洗时间对氢化物形成元素的影响,考察了铜基体对氢化物形成元素的化学干扰情况。用本方法测定了纯铜标准样品(NIST SRM400),结果令人满意。在1000mg/L纯铜样品溶液中,其氢化物形成元素As、Bi、Sb、Sn、Se和Te的检出限分别为0.08、0.15、0.10、0.17、0.21和0.23μg/L。 相似文献
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The thermodynamic model of inorganic arsenic was validated by comparing the predicted As(III) concentration with the experimentally determined one in several river waters samples of the Basque Country (Spain) collected in two sampling campaigns: spring and autumn 2000. This model takes into account the acid-base equilibria of As(III) and As(V) together with the redox equilibria between the H3AsO3 and H3AsO4 species. A correct prediction of As(III) concentration requires the knowledge of the total concentration of arsenic, pH, redox potential (referred to hydrogen electrode), and ionic strength values of the solution. The estimation of the activity coefficients of the arsenic species was performed by means of the Modified Bromley’s Methodology (MBM).In order to perform the experimental As(III) determination, an analytical method was implemented by using an ion exchange separation of As(III)/As(V) on a continuous FIA-IE-HG-AAS system. The total arsenic concentration was determined together with total concentration of the main alkaline or alkaline-earth metals and anions in the natural waters. Temperature compensated measurements of the pH and redox potentials were made in-situ at the sampling sites.For both seasonal campaigns, the agreement between predicted and experimental As(III) is really high for those samples belonging to non polluted river waters. 相似文献
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Patricia Cava-Montesinos Agustin Pastor Miguel de la Guardia 《Analytica chimica acta》2003,481(2):291-300
A sensitive procedure has been developed for selenium and tellurium determination in milk by hydride generation atomic fluorescence spectrometry (HG-AFS) after microwave-assisted sample digestion. The method provides sensitivity values of 1591 and 997 fluorescence units ng−1 ml−1 with detection limits of 0.005 and 0.015 ng ml−1 for Se and Te, respectively. The application of the developed methodology to the analysis of cow milk samples of the Spanish market evidenced the presence of concentration ranges from 11.1 to 26.0 ng ml−1 for Se, and from 1.04 to 9.7 ng ml−1 for Te having found a good comparability with data obtained after dry-ashing of samples. 相似文献
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用从头计算方法对硝基氢(HNO2)体系的异构化及分解反应进行了研究,在6-31G水平上,该化合物异构化为反式来酸的势垒为292kJ/mol,且不易分解为H+NO2或O+HNO。 相似文献