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1.
张先梓 《化学学报》1984,42(2):183-188
前言自从发现协同萃取以来,许多作者对协同萃取进行了广泛的研究。Reddy等人应用亚砜等中性萃取剂研究了两种中性萃取剂的协同萃取(以下简称B-B类协萃),认为在第一萃取剂(S~Ⅰ)浓度([S~Ⅰ])固定时,萃取分配比D的对数值对第二萃取剂(S~Ⅱ)的浓度([S~Ⅱ])的对数值作图是直线,其斜率为S~Ⅱ的溶剂化数n,随[S~Ⅰ]的增加直线斜率逐渐下降。似乎难以用斜率分析法来确定溶剂化数目。本文研究了二-正-辛基亚砜(以下简称DOSO),TBP和TOPO从NH_4SCN溶液中萃取Ce(Ⅲ)。分析了实验数据,提出了B-B类协萃分配比D的计算公式。  相似文献   

2.
共萃取     
共萃取是萃取化学中经常发生的现象。所谓共萃取是指某一元素(通常为微量元素)单独存在时不被萃取或萃取率很低,但有另一元素(通常为常量元素)存在时,难萃元素的萃取率大增,这一现象称之为共萃取。有时,在萃取某一元素时,另外一些元素也或多或少地混同萃取,称之为带同萃取。前者是有规律的现象,后者目前还无规可循。但是这两类现象很难截然分清,因此统称为共萃取进行讨论。共萃取机理比较复杂,但是,许多情况下,是由于生成异金属多核络合物、复杂离子缔合物和混配络合物等多元络合物,增加了可萃性。共萃取在痕量元素的分析化学中有实际意义。近年来研究工作逐渐增加。现就共萃  相似文献   

3.
3-86普及型油脂快速萃取装置是日本MRK公司的产品。该仪器对索氏提取器进行了改进,增加了煮沸萃取装置及程序定时器,使萃取时间大大减少,操作易于标准化。但对不同含油量的样品,说明书中没有  相似文献   

4.
本文测定了1-苯基-3-甲基-4-苯甲酰基吡唑啉酮-5(HPZL)-Zn2+萃取体系在不同溶剂中的萃取平衡常数以及其他几个协萃体系的协萃平衡常数,结果列于表4~8.证实惰性溶剂对萃取平衡常数的影响可以近似地用正规溶液理论解释,非惰性溶剂的影响则和它们的配位作用有关.对于协萃体系,协萃平衡常数βn0k0随溶剂不同有很大变化,其中中性协萃剂活度系数的变化起重要作用.  相似文献   

5.
新型的萃取技术——双水相萃取   总被引:4,自引:0,他引:4  
李伟  柴金玲  谷学新 《化学教育》2005,26(3):7-8,12
本文介绍了双水相萃取技术的原理与特点及近年来该技术在生命科学,复杂中药体系的分离以及抗生素药物提取等方面的研究进展。并探讨了其今后的发展趋势。  相似文献   

6.
早在1897年,J. B. Hannay与J. Hogarth就已经发现超临界状态的压缩气体对于固体的特殊溶解作用,在高于临界点的条件下,金属卤化物能分别溶于乙醇或四氯化碳。通过后继的研究工作进一步发现,具有可变密度、介电常数与溶解效能的高压超临界流体C_2H_4、CO_2、NH_3、Cl_2、F_2等,足以作为一种重要的反应介质和溶剂。研究超临界流体理论,对于高压合成氨、甲醇、醋酸、聚乙烯以及羰基合成、费-托合成等工业过程都有意义。超临界流体和液体一样,能溶解固体。在超临界流体介质中,难挥发物质显著地转入流体相。固体对碘氯苯在常压、15℃下,在乙烯  相似文献   

7.
微波萃取技术   总被引:23,自引:0,他引:23  
卜玉兰  郭振库 《色谱》1997,15(6):499-501
介绍了在气相/液相色谱测定前的一种新的样品制备技术——微波萃取技术及其所使用的试剂、设备和条件。通过一些数据以及与Soxhlet法、超声萃取法比较说明,微波萃取是一种快速、试剂用量少、回收率高、灵敏以及易于自动控制的方法。  相似文献   

8.
采用溶胶-凝胶-硫化法,以甲基乙烯基硅橡胶和乙烯基封端硅橡胶为原料,制备了6种规格的搅拌棒,分别为2 cm(涂层3 mg、8 mg、13 mg)和1 cm、2 cm、3 cm(涂层皆8 mg)。以多环芳烃为目标分析物,考察了搅拌棒的萃取效率。结果表明,萃取条件不变,分子量小的多环芳烃,增加涂层厚度或体积,可提高萃取效率。分子量大的多环芳烃,要提高萃取效率,除具备一定的萃取体积,还要有足够的表面积。用长度1 cm(涂层3 mg、6 mg)、长度2 cm(涂层3 mg)、长度3 cm(涂层6 mg、13 mg)的搅拌棒,优化条件下,萃取5 min~30 min时,多环芳烃的检出限2 ng/L~140 ng/L,各组分峰面积的相对标准偏差小于12%。实际样品雨水的分析,发现了萘及苊的存在。  相似文献   

9.
新一代萃取分离技术──固相微萃取   总被引:55,自引:2,他引:55  
刘俊亭 《色谱》1997,15(2):118-119
介绍了一种新型样品制备法——固相做萃取(SPME)的原理及其应用。与其它样品制备技术相比,SPME法具有操作时间短、样品量小、无需萃取溶剂、适于分析挥发性与非挥发性物质、重视性好等优点。  相似文献   

10.
固相萃取   总被引:82,自引:0,他引:82  
张海霞  朱彭龄 《分析化学》2000,28(9):1172-1180
近10多年来,固相萃取作为试样预处理技术得到迅速的发展。评述了该技术的特点、装置、方法的建立,应用和前景。文中强调固相萃取在环境分析、药物分析等方面有广泛的应用前景,并总结了近年来固相萃取在药物分析中的应用。  相似文献   

11.
Treatment of CpMoC13(MeCN)2 with SbCl5 in acetonitrile solution provides the solvated cationic series [CpMoCl2(MeCN)3]+, [CpMoCl(MeCN)4]2+ and [CpMo(MeCN)6]3+ as hexachloroantimon(V)ate salts following sequential halide abstraction. Characterization follows from microanalytical and spectroscopic (IR, and 1H NMR) data and, in the case of [CpMoCl(MeCN)4][SbCl6]2 · MeCN, by X-ray crystallographic studies. The structure is disordered but individual cations contain a six coordinated pseudo-octahedral metal geometry in which the cyclopentadienyl ligand (regarded as unidentate) and the chlorine atom occupy axial positions with an equatorial array of four acetonitrile ligands.  相似文献   

12.
The X-ray diffraction study of crystals isolated from solutions obtained by reaction of Ba(OMe)2 with Ti(OMe)4 (molar ratio 1:2) in methyl alcohol was carried out; the crystals of the methanol solvate of the double barium-titanium methoxide, [Ba2Ti4O(OMe)18(MeOH)7]·MeOH (1), contain two Ba2+ cations with different environments and two kinds of anionic binuclear titanium complexes with and without oxo-ligand, and thus can be formulated as [Ba(MeOH)2]2+[Ba(MeOH)5]2+[Ti2O(OMe)8]2−[Ti2(OMe)10]2−·MeOH.  相似文献   

13.
The sulfate-centered Preyssler-type polyoxometalate was firstly used to construct inorganic-organic hybrid materials, which exhibits excellent electrocatalytic activity toward reduction of H2O2 and NO2-.  相似文献   

14.
A series of novel heterobimetallic crown ether-like polyoxadiphosphaplatinaferrocenophanes cis-[1,1′-Fc(CH2O(CH2CH2O)nCH2CH2PPh2)2]PtCl2 (n=1–3) (4a–c) was synthesized in good yield by cyclization of the bis(phosphine) ligands 1,1′-Fc(CH2O(CH2CH2O)nCH2CH2PPh2)2 (n=1–3) (3a–c) and (PhCN)2PtCl2 under high dilution conditions in CH2Cl2. The bisphosphines 3a–c are obtained by reaction of the corresponding diols 1,1′-Fc(CH2O(CH2CH2O)nCH2CH2OH)2 (n=1–3) (1a–c) with: (i) CH3SO2Cl in CH2Cl2 and (ii) LiPPh2 in THF. Although the X-ray crystal structure of 4a shows that the cavity is large enough for the encapsulation of small metal cations, inclusion experiments of 4a–c with Group 1 cations, and Mg2+, or NH4+ in solution applying NMR titration and cyclovoltammetric methods reveal no evidence for the formation of host–guest complexes for 4a,b. In the case of 4c only the addition of Na+ or K+ leads to an insignificant effect.  相似文献   

15.
The two ion-pair complexes, [pyH]2[Zn(mnt)2] (1) and [4,4′-bipyH2]-[Zn(mnt)2] (2), were synthesized, where mnt2− denotes maleonitriledithiolate, and [pyH]+, [4,4′-bipyH2]2+ represent pyridinium and diprotonated 4,4′-bipyridinium, respectively. Their single crystal structures show that there are strong bifurcated H-bonding interactions between the cations of the pyridinium derivative and the [Zn(mnt)2]2− anions in both 1 and 2. The bifurcated H-bonding interactions between the N–H of the pyridiniums and the CN groups of the mnt2− ligands give rise to a 2D layered H-bonding network, the adjacent layers come together in such way as mutual embrace to give a tight pack, thus 2D hydrogen-bonding sheets further develop into 3D H-bonding networks through weak C–HS and ππ stacking interactions in 1. As for 2, the cations and anions connect into several types of H-bonding macrorings ([2+2], [3+3] and [4+4]), these H-bonding macrorings fuse to extend into 2D layered structure, the interpenetration between [3+3] and [4+4] type H-bonding macrorings in the adjacent layers give further rise to novel 3D extended H-bonding networks, in which there are clearly parallel stacks of cations and the chelate rings of anions.  相似文献   

16.
The bis(μ3-ethylidyne) tricobalt cluster [(CpCo)33-CCH3)2] (1b) is protonated by trifluoroacetic acid to give the dicobalt edge-protonated cation [H(CpCo)33-CCH3)2]+ [lb + H]+. Protonation of the μ3-ethylidyne tetracobalt cluster hydride [H(CpCo)43-CCH3)] (3) takes place in two consecutive steps. At low temperature [H2(CpCo)43-CCH3)]+ [3 + H]+ is formed first, and is then slowly converted into [H3(CpCo)43-CCH3)]2+ [3 + 2H]2+ by an excess of acid. As judged by the 1H NMR data and the crystal structure of [3 + X]+[(CF3COO)2X] (X = H or D) the endo hydrogens in [3 + H]+ and [3 + 2H]2+ occupy μ3-(Co3) face capping hydridic positions. The cations [1b + H]+ and [3 + H]+ show hydride fluxionality in solution, which in the case of [3 + H]+ can be frozen out on the NMR timescale at low temperature (ΔG (203 K) = 40.8 kJ/mol). The structure of [3 + X]+ [(CF3COO)2X] (X = H or D) was determined by X-ray crystallography. One of the hydrides/deuterides is located on the crystallographic mirror plane, capping a tricobalt face of the cluster cation. The other endo hydrogen atom is believed to be disordered between the other two μ3-(Co3) sites, which are related by space group symmetry. Deuteronation of 3 shows a strong normal kinetic deuterium isotope effect. From the temperature independence of the 1H NMR spectrum of [3 + 2D]2+ a non-fluxional solution structure can be inferred. In all the systems studied, hydridic (μ2- or μ3-) sites are thermodynamically preferred to possible isomeric agostic CoHC or Co2HC sites for the endo hydrogens. Agostic interactions cannot, however, be ruled out in transient intermediates during the course of the protonations.  相似文献   

17.
IR (4000-30 cm−1) and Raman (4000-0 cm) spectra of [(CD3)3S]I have been observed, together with those of [(CH3)3S]I. By assuming a C3v molecular symmetry for the cations [(CH3)3S]+ and [(CD3)3S]+, all the active fundamentals of [(CD3)3s]+ have been assigned and normal coordinate calculations have been carried out by a symmetry force field for [(CH3)3S]+ and [(CD3)3S]+. The strength of the S---C and C---H bonds in the compound has been compared with that in dimethyl sulfide by using their valence stretching force constants.  相似文献   

18.
The stabilities of [M12Ag32(SR)30]4- (M = Ag, Au and SR = SPhF2, SPhCF3, SPhF) clusters having the same structure but different surface ligands or counter cations were systematically studied. It was clearly revealed that a subtle structural change in the surface ligands or counter cations could significantly alter the overall stability of [M12Ag32(SR)30]4 although they all had an electronic structure of 18-electron superatom shell closure. SPhF2 was found as a better surface ligand than SPhCF3 or SPhF to stabilize [M12Ag32(SR)30]4-. And the use of more bulky [(PPhj)2N]+ as the counter cations was revealed to be more deleterious to the overall stability of [M12Ag32(SR)30]4- clusters than PPh4+. [Au12Ag32(SR)30]4- was much more stable than [Ag44(SR)30]4 with the same surface ligands and counter cations. An exceptional stability was observed on (PPh4)4[Au12Ag32(SPhF2)30] which was stable in DMF for more than 8 days in air at 80 ℃. More research efforts are still needed to deeply understand why a small structural change could result in a significant change in the stability of noble metal nanoclusters.  相似文献   

19.
Three novel compounds, [Co(en)3]2[Zr2(C2O4)7]·2H20(HNU-2, en=ethylenediamine), [Co(NH3)6]· [Ce(CzO4)3(H2O)]·H2O(HNU-3) and [Co(dien)2][Gd(C2On)3]·0.75H2O(HNU-4, dien=dethylenetriamine) were hydro- thermal synthesized based on the templates of [Co(en)3]C13, [C0(NH3)6]C13 and [Co(dien)2]C13, respectively. The Zr4+ Ce3+ and Gd3+ cations are all coordinated by four oxalates to form [M(C2O4)n(H2O)n]m (M=Zr, Ce or Gd; n=0 or 1; m=4 or 5), which are similar to [In(C2O4)4]5- in NKB-1, and can be regarded as 4-connected building units. The [M(C2O4)a(H2O)n]m units are connected via sharing the bis-bidentate bridging oxalate ligands to form binuclears in HNU-2 and 1D "zigzag" chains in HNU-3 and HNU-4. cular building units to design 3D open frameworks with It is suggested that these compounds could be used as mole- zeolite topologies.  相似文献   

20.
Based on a new biscarboxyl-functionalized Schiff base ligand 1,2-cyclohexanediamino-N,N'-bis[3-methoxyl-5-(p-carboxyl-phenylazo)] salicylidene(H4L), four polymers,[(CH3)2NH2]2·[Mn3(L)2(H2O)4]·2DMF(CP1),[Fe2(L)(H2O)(DMF)](CP2),[(CH3)2NH2]·[Cu(HL)]·H2O(CP3) and[Ni2(L)(teta)]·2DMF·H2O(CP4), have been synthesized(teta=5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane). In CP1, both of the internal[N2O2] pocket and the external carboxylate groups of L4- anion are ligated by Mn2+ ions, and the structure displays a layer. In CP2, the Fe2+ cations are linked by L4- anions to form a binuclear double chain. CP3 displays a[Cu2(HL)2] dimer. In CP4, the Ni2+ ions are connected by L4- anions to form a chain. The structures are further linked by hydrogen bonds to form 2D or 3D supramolecular architectures, respectively. CP1 exhibits adsorption ability to three organic dyes.  相似文献   

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