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231.
交联壳聚糖在痕量钨(Ⅵ)分析中的应用   总被引:7,自引:0,他引:7  
提出了用交联壳聚糖(CCTS)预富集、分光光度法测定痕量钨的新方法。研究了CCTS对钨(Ⅵ)的吸附行为,结果表明:在pH=4.5的条件下,交联壳聚糖对钨(Ⅵ)的吸附率最大,可达96%。考察了吸附时间、吸附剂用量、样品体积以及共存元素对吸附率的影响,探讨了吸附机理。方法的检出限(3σ)为0.65μg/L,相对标准偏差(RSD)小于0.75%(n=6),富集倍数为20倍。用于温泉水和海水中痕量钨的测定,结果满意。  相似文献   
232.
Introduction Tremendous advances have been witnessed during the last decade in the syntheses and application of Group 4 metal complexes because of the motivity which comes from both academic and industrial field. Among them, studies have been dominated by the complexes supported by bis or mono cyclopentadienyl ligands, such as Cp2MX2 or half sandwich amide (CGC) com-plexes.1-6 At that time chemists paid a little attention to the non-cyclopentadienyl complexes, but in recent years, many chem…  相似文献   
233.
黄宪  吴金龙 《有机化学》1991,11(2):207-209
α-烷基戊二酸二乙酯是合成天然香料3-烷基-1,2-环戊二嗣的重要中间体[1]。虽然,α-甲基戊二酸二乙酯可由丙二酸二乙酯与α-甲基丙烯酸酯进行 Michael 加成,再经水解、脱羧和酯化制得,但有关其它烃基取代的α-烃基戊二酸二乙酯报道甚少。这可能由于其它α-烷基取代的丙烯酸酯不如α-甲基丙烯酸酯易于获得。也有报道利用烷基取代的丙二酸二乙酯与丙烯醛进行 Michael 加成,继而经氧化、水解、脱羧或利用烷基取代的乙酰乙酸乙。酯与丙烯腈进行 Michael 加成,再经腈的水解和羰基的裂  相似文献   
234.
1INTRoDUCTIoNThiomolybdate(thiotungstate)isafundamentalunitoPsomemolybdenumen-zymesandplaysanimportantroleincoordinationchemistryasaligandforothermet-alstoformanalogouscompoundsofmetalloproteinst'3.Recentlyinterestingnonlinearoptical(NLO)propertieshavebeendiscoveredforthetypeofMo(W)-Cu(Ag)-Sclusterst2.33.Bythevarioussyntheticmethodsseveralhundredmixedmetalclustersandcomplexes,Mo(W)-M-S(M=transitionmetal),havebeensynthesizedt'i.AmongthesecompoundsthecasesofMbeingCu,Ag,Feareusualwhile…  相似文献   
235.
A flexible approach to ethyl (3R,4S)-N-Boc-4-amino-3-hydroxy-5-phenylpentanoate (N-Boc-AHPPA-OEt), the γ-amino-β-hydroxy acid moiety of hapalosin is described. The synthetic method features a ring-opening ethanolysis of an activated N-Boc-lactam, which is obtained via a diastereoselective reductive-alkylation of (R)-malimide derivative. The flexibility of the method resides in the introduction of the alkyl side chain by Grignard reagent addition.  相似文献   
236.
Propargylic alcohols are versatile precursors to many organic molecules including natural products and pharmaceutical compounds.[1] In our continuing interest in the development of practical methods for synthesis of ferrocene derivatives, we decided to investigate the efficiencies of ferrocenylacetylene addition to aromatic aldehydes under t-BuOKcatalyzed condition.[2] Interestingly, we found that the usually reliable coupling reaction between terminal alkyne of type 1 and aromatic aldehydes of type 2 does not furnish the expected propargylic alcohols, but that the isomeric aryl enones 3are found in high yield and very short reaction time (10~20 min). This provided a promising protocol for preparation of ferrocenyl chalcones in a practical, economical and mild sense compared with the traditional method. To the best of our knowledge, this unusual reaction was first observed for the addition of ferrocenylacetylene to aldehyde in a base-catalyzed manner (Eq. 1).  相似文献   
237.
采用与文献不同的路线合成了4,4′-二(p-甲基苯基)-2,2′-二联吡啶,与文献结果相比,总收率由4.0%提高至15.3%.该化合物和4,4′-二羧基-2,2′-二联吡啶组成混合配体与金属钌配位,合成了两亲性、混配型配合物cis-N,N-4,4′-二(p-甲基)苯基-2,2′-二联吡啶-N,N-4,4′-二羧基-2,2′-二联吡啶-N,N-二异硫氰钌配合物,并用IR,UV-Vis,NMR和Maldi-TOF等手段进行表征.将该两亲性混配钌配合物首次用于对Hg2+的识别中,发现此配合物对Hg2+表现出灵敏的选择性“肉眼”识别:在DMF/乙醇溶液(体积比1∶9)中加入Hg2+后,MLCT态吸收由530nm蓝移到485nm.该配合物与Hg2+以1∶1(摩尔比)结合,检测限可低至0.5×10-6mol/L.  相似文献   
238.
Synthesis and Structural Characterization of [Mn(sapn)(H2O)2]Br   总被引:1,自引:0,他引:1  
1 INTRODUCTION Many of the recent advances in the coordination chemistry of manganese have been driven by the involvement of the manganese in several biological redox-active systems[1,2], of which the most important is the oxygen-evolving complex (EOC) of photosystem II (PS II) in green plants [3]. Since the preparations and structural characterizations of the complexes containing N,O-donor ligands have been studied extensively as simple active-site models for the photosystem II[4,5]…  相似文献   
239.
The biaryl unit is extensively presented in many classes of natural products, such as polyketides, terpenes, lignanes,coumarins, flavonoids, tannins, and many alkaloids.[1] It has long been recognized that an intramolecular oxidative phenolic or nonphenolic coupling reaction serves as the key step in the biosynthesis of these natural products, and the non-enzymic analogue of this transformation can lead the elegantly simple syntheses of these compounds.[2] During the last decade, a large number of oxidative coupling reagents, such as ferric chloride (FeCl3), phenyliodine(Ⅲ)bis(trifluoroacetate) (PIFA), lead(Ⅳ) tetraacetate [Pb(OAc)4], thallium(Ⅲ) triflouroacetate (TTFA), as well as vanadium oxytrifluoride (VOF3),[3,4] have been developed for this target. However, extensive application of this synthetic potential has been limited by low yields and unexpected side reactions usually encountered.  相似文献   
240.
A series of [tetra-α-(2,2,4-tirmethyl-3-pentoxy) phthalocyaninato] metal complexes(M=Co, Ni, Cu, Zn)were prepared by cyclotetramerization of 3-(2,2,4-tirmethyl-3-pentoxy)phthalonitrile with corresponding anhydrous metal salts, using 1.8-diazabicyclo[5.4.0] undec-7-ene (DBU) as the catalyst. HPLC analysis shows that one isomer predominates in the product of nickel complex, while at least two main constitutional isomers exist in the product of other metal complexes. The complexes (in the form of mixture of constitutional isomers) were characterized by elemental analyses, MS, IR and UV-Vis spectroscopy.  相似文献   
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