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1.
通过由Fe3(CO)12、RSH和Et3N所形成的[(μ-CO)(μ-RS)Fe2(CO)6]Et3NH于室温下分别与对或间苯二甲酰氯的原位反应,首次合成6个结构新颖的苯二甲酰基桥联铁硫配合物[(μ-RS)·Fe2(CO)6]2(μ-p-OCC6H4CO-p-μ)(R=Et,n-Bu,t-Bu)以及[(μ-RS)Fe2(CO)6]2(μ-m-OCC6H4CO-m-μ)(R=n-Pr,n-Bu,t-Bu).经元素分析、IR光谱及1HNMR表征了它们的结构,并讨论了产物的生成过程.此外,还提出了合成对苯二甲酰氯的一种新方法.  相似文献   

2.
Reaction of R---N=C=N---R (R=p-Me-C6H4) and R---P==C=P---R (R=2,4,6-tBu3C6H2) with the di-iron aminocarbene complex [Fe2(CO)7{1μ-C(Ph)C(NEt2)}] (1c) gave corresponding complexes [Fe2(CO)6{C(Ph)C(NEt2)C(NC6H4Me)N (C6H4Me)}] (2) and [Fe2(CO)6{C(Ph)C(NEt2)C(PC6H2tBu3)P(C6H2tBu3)}] (4), resulting from a coupling reaction with carbon-carbon bond formation. [Fe2(CO)5(CNC6H4Me){C(Ph)C(NEt2)N(C6H4Me)}], complex 3, obtained in the reaction with R---N=C=N---R, resulted from C=N bond rupture insertion of a nitrene fragment into the Fe=C bond. Complexes 2–4 were characterized by X-ray diffraction. The different geornetries of complexes 2 and 4 are discussed. The formation of these complexes may be explained by cycloaddition on the Fe =C metal-carbene bond.  相似文献   

3.
Through reductive reaction between PhL1 and μ-S2 Fe (CO/6,tollowed by nucleophilicsubstitution of the intermediate (μ-PhS} (μ-LIS} Fe2 (CO)6 toward RX,nine Fe-S clus-ter complexes of (μ-PhS)(μ-RS)Fe2(CO)6 series have been synthesized.The influence of RX structures on the activities in nucleophilic substitution has been examined and possible steroisomers and isomer ratios of the complexes determined.In addition,the regular variations of isomer's CH3-S and CH2-S which are caused by the anisotropic effects of C-O and orientations of unshared electron pairs on sulfurs,have also been preliminarily discussed.  相似文献   

4.
Pyrolysis of a solution of {Ru3(CO)11}2(μ-bdpp) (bdpp = bis(diphenylphosphino)butadiyne) yielded the complex {Ru3(μ-PPh2)(CO)9}26-C4), which contains a μ6-C4 ligand symmetrically bridging two Ru3(μ-PPh2)(CO)9 clusters. When the complex {Fe(CO)4}2(μ-bdpp) was heated in the presence of Fe2(CO)9 another example of a C4 complex, {Fe2(μ-PPh2)(CO)6}2(μ-C4), was obtained. Both complexes were characterised by X-ray structure determinations; the C4 ligand behaves as a buta-1,3-diyne-1,4-diyl system.  相似文献   

5.
采用密度泛函理论计算和实验研究形貌可控制备氧化铁作为高效载氧体用于化学链燃烧的可行性. 首先从理论上对比分析Fe2O3高指数晶面[104]和低指数晶面[001]的反应活性及深层还原反应机理. 表面反应结果显示, Fe2O3[104]氧化CO的反应活性远高于Fe2O3[001], Fe2O3[104]被还原成为低价的铁氧化物或单质, 这些低价的铁氧化物或单质可被O2氧化再生. 载氧体和CO深层反应结果显示Fe2O3[104]可被CO彻底还原成Fe单质, Fe2O3[104]释放氧能力强, 反应活性高; 而Fe2O3[001]还原到一定程度后反应能垒高, 抑制表面进一步还原, 释放氧能力有限. 最后, 实验结果进一步证明了Fe2O3[104]作为载氧体用于化学链燃烧的高反应活性及稳定性.  相似文献   

6.
The methylene-bridged, mixed-chalogen compounds Fe2(CO)6(μ-SeCH2Te) (1) and Fe2(CO)6(μ-SCH2Te) (3) have been synthesised from the room temperature reaction of diazomethane with Fe2(CO)6(μ-SeTe) and Fe2(CO)6(μ-STe), respectively. Compounds 1 and 3 have been characterised by IR, 1H, 13C, 77Se and 125Te NMR spectroscopy. The structure of 1 has been elucidated by X-ray crystallography. The crystalsare monoclinic,space group P21/n, A = 6.695(2), B = 13.993(5), C = 14.007(4)Å, β = 103.03(2)°, V = 1278(7) Å3, Z = 4, Dc = 2.599 g cm−3 and R = 0.030 (Rw = 0.047).  相似文献   

7.
Phosphines react with butterfly tetranuelear nitrido-iron clusters, [Fe4N(CO)12] and [Fe4N(CO)11(NO)], to give mono- and di-substituted complexes. X-Ray analyses of the title compounds showed that the phosphine ligands are bound to the wing-tip atoms.  相似文献   

8.
Treatment of ruthenium complexes [CpRu(AN)3][PF6] (1a) (AN=acetonitrile) with iron complexes CpFe(CO)2X (2a–2c) (X=Cl, Br, I) and CpFe(CO)L′X (6a–6g) (L′=PMe3, PMe2Ph, PMePh2, PPh3, P(OPh)3; X=Cl, Br, I) in refluxing CH2Cl2 for 3 h results in a triple ligand transfer reaction from iron to ruthenium to give stable ruthenium complexes CpRu(CO)2X (3a–3c) (X=Cl, Br, I) and CpRu(CO)L′X (7a–7g) (L′=PMe3, PMe2Ph, PMePh2, PPh3, P(OPh)3; X=Br, I), respectively. Similar reaction of [CpRu(L)(AN)2][PF6] (1b: L=CO, 1c: P(OMe)3) causes double ligand transfer to yield complexes 3a–3c and 7a–7h. Halide on iron, CO on iron or ruthenium, and two acetonitrile ligands on ruthenium are essential for the present ligand transfer reaction. The dinuclear ruthenium complex 11a [CpRu(CO)(μ-I)]2 was isolated from the reaction of 1a with 6a at 0°C. Complex 11a slowly decomposes in CH2Cl2 at room temperature to give 3a, and transforms into 7a by the reaction with PMe3.  相似文献   

9.
The reaction of aromatic imines with Fe2(CO)9 proceeds via a two-step reaction sequence. A C-H activation reaction in ortho-position with respect to the exocyclic imine function is followed by an intramolecular hydrogen transfer reaction towards the former imine carbon atom. The resulting dinuclear iron carbonyl complexes show an aza-ferra-cyclopentadiene ligand which is apically coordinated by the second iron tricarbonyl moiety. Comparing the bond lengths of 43 different compounds, which were synthesized and structurally characterized in our group shows that the iron iron bond length correlates with one of the iron carbon bond lengths. The longer the iron carbon bond between the apically coordinated iron atom and the carbon atom next to the former imine carbon atom is, the shorter is the iron iron bond. The same ligands may be used as the substrates in ruthenium catalyzed C-C bond formation reactions. Whereas most of the imines react via the formal insertion of CO and/or ethylene into the C-H bond in ortho-position to the imine function, the ligands that show the longest iron carbon bond lengths in the model compounds under the same reaction conditions produce different types of isoindolones.  相似文献   

10.
The reaction of aromatic azines with Fe2(CO)9 yields dinuclear iron carbonyl cluster compounds as the main products. The formation of these compounds may be rationalized by a C-H activation reaction at the aromatic substituent in ortho position with respect to the exocyclic C-N double bond followed by an intramolecular shift of the corresponding hydrogen atom toward the former imine carbon atom. The second imine function of the ligand does not react. Additional products arise from the metal induced disproportionation of the azine into a primary imine and a nitrile. So also one of the imine C-H bonds may be activated during the reaction. Depending on the aromatic substituent of the azine ligands iron carbonyl complexes of the disproportionation products are isolated and characterized by X-ray crystallography. C-C coupling reactions catalyzed by Ru3(CO)12 result in the formation of ortho-substituted azines. In addition, ortho-substituted nitriles are identified as side-products showing that the metal induced disproportionation reaction also takes place under catalytic conditions.  相似文献   

11.
从反应温度、灰的种类和灰的比例三个方面,对煤和生物质化学链气化过程中铜基载氧体与灰中矿物的碳热反应过程进行了研究;通过往复切换固定床的氧化还原气氛模拟化学链气化的循环过程,利用XRD和SEM-EDS等表征手段并结合热力学计算对产物进行分析。结果表明,灰中Fe_2O_3和Al_2O_3易与CuO/Cu_2O反应形成CuAl_2O_4、Cu_2Fe_2O_4和CuFe_2O_4等尖晶石结构的物质,而CaO能够通过阻碍Cu-Al和Cu-Si复合化合物的形成来缓解铜基载氧体的烧结。温度升高促使CuO极易与CaSiO_3和MgSiO_3等硅酸盐矿物发生固-固反应,生成CaCuSi_2O_6和CuMgSi_2O_6等而降低铜基载氧体的反应活性。随着灰分比例的增加,Ca~(2+)和Fe~(3+)等离子富集所生成的Ca_2Fe_9O_(13)易与SiO_2发生反应生成高熔点的CaFeSi_2O_6三相共熔体,与铜基载氧体共熔并覆盖在载氧体表面,阻碍其释氧性能。  相似文献   

12.
Fischer-type (alkoxy)azolyl carbene complexes and Öfele–Lappert-type azolylinylidene complexes were synthesised by reaction of 1-phenylpyrazol-3-yllithium, 4-methylthiazol-2-yllithium, benzothiazol-2-yllithium, 1-methylimidazol-2-yllithium with M(CO)5L (L=CO, THF or Cl; M=Cr, Mo or W) and subsequent alkylation with CF3SO3CH3. The alkylation of Fischer-type carbene complexes containing an azolyl as the organic substituent proceeded via ring opening of tetrahydrofuran. When the alkylation is carried out in THF, the carbocation CH3O(CH2)4+ acts as an electrophile. Protonation rather than alkylation of coordinated imidazolyl furnished cyclic imine complexes. Changing the donor atom of a coordinated thiazole from N to C by deprotonation and alkylation afforded a carbene complex.  相似文献   

13.
The reactions of a series of Schiff base ligands (1–4) prepared by condensation of pyridine-2-carboxaldehyde and 2-X-anilines (X = F, Cl, Br, OMe) with W(CO)3(RCN)3 results in the formation of deeply coloured complexes W(CO)3(1–4)(NCR) which readily react with carbon monoxide to afford W(CO)4(1–4). The ligand 5, prepared from pyridine-2-carboxaldehyde and N,N-dimethylethylenediamine, coordinates to W(CO)3 through the conjugated pyridine—imine chelate to afford complexes with a pendant dimethylamino group which reacts with electrophiles. Of the ligands studied, only the bis-amine, pyridine ligand 8, coordinates to W(CO)3 in a tridentate manner. These reactions provide insight into the geometric and electronic factors which influence coordination of nitrogen containing ligands at a fac-tricarbonyl metal centre.  相似文献   

14.
The rate constants at which oxidizing and reducing radicals react with the dinuclear iron(III) complex Fe2O(ttha)2− were measured in neutral aqueous solution. The rate constants for reduction of the complex by ·CO2.− CH3.CHOH and O2.− were found to be comparable with rate constants previously measured in mononuclear iron(III) polyaminocarboxylate systems. Fe2O(ttha)2− reacts slowly with O2.− (k8 = (1.2 ± 0.2) × 104 dm3 mol−1 s−1) and, hence, is a relatively poor catalyst for the dismutation of superoxide radical. The hydrated electron reduces the complex at a diffusion-controlled rate in a process which consumes one proton: eaq + Fe2O(ttha)2− → Fe2III,IIO(ttha)3− The reduction by carbon-centered radicals produces a (III,II) mixed-valence complex with an absorption spectrum different from that of the Fe2(II,III) species produced from reduction by the hydrated electron. The oxidizing radicals .OH and ·CO3 appear to act as reductants of the complex via ligand oxidation rather than by oxidation of the Fe2IIIO core to Fe2III,IVO. In the former case ligand attack appears to occur mainly at the methylene carbon of a glycinate group. The decarboxylation product, CO2, was detected by its aquation reaction in the presence of a pH sensitive dye, bromthymol blue.  相似文献   

15.
两个含N-皮考林酰肼铁配合物的合成和结构表征   总被引:6,自引:0,他引:6  
合成了含N-乙酰皮考林酰肼(简写为Haphz)的铁配合物[Fe2(aphz)2(μ-CH3O)2Cl2]·CH3OH(1,C19H26Cl2Fe2N6O7,Mr=633.06)和含N-苯甲酰皮考林酰肼(简写为Hphphz)的铁配合物Fe(phphz)Cl2(2,C13H10Cl2FeN3O2,Mr=366.99).2个配合物均属三斜晶系,空间群为P  相似文献   

16.
预处理Fe基催化剂CO加氢合成低碳烯烃选择性影响研究   总被引:1,自引:0,他引:1  
研究了Fe2O3在CO和H2气氛下预处理对催化剂物相、表面组成和性质的影响及CO加氢合成低碳烯烃反应行为。结果表明,300℃ H2预处理后催化剂主要物相结构为Fe3O4和α-Fe,250℃ CO预处理后主要物相为Fe3O4,随着CO预处理温度的升高,有碳化铁生成。表面碳化物含量随着CO预处理温度的升高而增加。CO较H2预处理表面碱性增强,CO2和CO吸附显著增加,随着预处理时间的延长,表面积炭降低了CO2和CO吸附。经CO预处理的催化剂具有较高的烯烃选择性,H2预处理的催化剂烯烃选择性相对较低。  相似文献   

17.
A new type of Fe-S complex (C), (μ -CH3S) (μ-HOCH2CH2S) Fe2(CO)6 which contains μ-β-hydroxyethyl, has been synthesized in high yield through ring-opening reaction of ethylene epoxide under uncleophilic attack of active complex (A), (μ-CH3S)(μ-IMgS) Fe2(CO)6, followed byan alcoholysis of the intermediate (B). The crystal structure of (C) was determined by an X-ray diffraction technique. The crystal belongs to monoclinic system with space group of C2/c. Cell parameters a= 15.784(3), b = 22.172(3), c=9.774(2)Å, β=119.53(2)°, V=2976.3Å3. Dc = 1.80g cm-3, Z=8, F(000)=1616 and final R=0.077.  相似文献   

18.
Cationic rhodium and iridium complexes of the type [M(COD)(PPh3)2]PF6 (M = Rh, 1a; Ir, 1b) are efficient precatalysts for the hydroformylation of 1-hexene to its corresponding aldehydes (heptanal and 2-methylhexanal), under mild pressures (2–5 bar) and temperatures (60 °C for Rh and 100 °C for Ir) in toluene solution; the linear to branched ratio (l/b) of the aldehydes in the hydroformylation reaction varies slightly (between 3.0 and 3.7 for Rh and close to 2 for Ir). Kinetic and mechanistic studies have been carried out using these cationic complexes as catalyst precursors. For both complexes, the reaction proceeds according to the rate law ri = K1K2K3k4[M][olef][H2][CO]/([CO]2 + K1[H2][CO] + K1K2K3[olef][H2]). Both complexes react rapidly with CO to produce the corresponding tricarbonyl species [M(CO)3(PPh3)2]PF6, M = Rh, 2a; Ir, 2b, and with syn-gas to yield [MH2(CO)2(PPh3)2]PF6, M = Rh, 3a; Ir, 3b, which originate by CO dissociation the species [MH2(CO)(PPh3)2]PF6 entering the corresponding catalytic cycle. All the experimental data are consistent with a general mechanism in which the transfer of the hydride to a coordinated olefin promoted by an entering CO molecule is the rate-determining step of the catalytic cycle.  相似文献   

19.
The tetrathiomolybdate ion [MoS4]2− reacts in DMF solution with Roussin esters Fe2(SR)2(NO)4 (R = Me, Et, n-Pr, i-Pr, n-Bu,t-Bu, n-C5H11) to yield the paramagnetic iron nitrosyls [Fe(NO)2(SR)2] (1), [Fe(NO)2(S2MoS2] (2) and [Fe(NO)(S2MOS2)2] (3). The new complexes (2) and (3) have been characterized by EPR spectroscopy and the assignment to them of constitutions based respectively upon tetrahedral and square pyramidal iron is supported by EHMO calculations. Fe2(SPh)2(NO)4 with [MoS4]2− yields only [Fe(NO)2(SPh)2], and preformed (3) reacts with PhS to give firstly EPR-silent species, and then [Fe(NO)2(SPh)2]. The mononitrosyl (3) can also be formed by reaction of [MoS4]2− with [Fe4S3(NO)7], Fe4S4(NO)4, or Fe2I2(NO)4.  相似文献   

20.
The preparation and characterisation of three new gold(I) phosphine derivatives of the ferraborane, HFe4(CO)12BH2 are reported. In HFe4(CO)12(AuPPh3)BH (2), the AuPPh3 fragment formally replaces an Fe---H---B bridging hydrogen atom in the parent compound HFe4(CO)12BH2. A comparison between 2 and the structurally characterised di-gold derivative, Fe4(CO)12(AuPPh3)2BH (1) is made to gain insight into the relative site preference for the heavy metal fragments in 1. Preparation of the bis(triethylphosphine)gold(I) derivative of HFe4(CO)12BH2 from the PPN+ salt of its conjugate base illustrates a novel exchange reaction between the PPh3 groups in the PPN+ cation and the initially, gold-associated PEt3 groups. This leads to a distribution of products Fe4(CO)12(AuPR3(AuPR′3BH where R = R′ = Ph (1) or R = R′ = Et (3) or R = Ph and R′ = et (4).  相似文献   

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