首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 156 毫秒
1.
首次将具有"温控相转移催化"功能的非离子表面活性水溶性膦/铑配合物用于以CO为还原剂的水/有机两相芳香硝基物选择还原反应.以邻氯硝基苯为底物考察了反应温度、CO压力、底物浓度、催化剂浓度和水/有机两相体积比等对反应转化率和选择性的影响.结果表明,当反应条件为150℃和4MPa,反应32h时,邻氯硝基苯的转化率为98%,邻氯苯胺的选择性接近100%.动力学研究表明,底物浓度和催化剂浓度分别对反应速率呈一级,反应的表观活化能Ea=131.13kJ/mol.  相似文献   

2.
首次将具有“温控相转移催化”功能的非离子表面活性水溶性膦/铑配合物用于以CO为还原剂的水/有机两相芳香硝基物选择还原反应,以邻氯硝基苯为底物考察了反应温度、CO压力,底物浓度,催化剂浓度和水/有机两相体积比等对反应转化率和选择性的影响。结果表明,当反应条件为150℃和4MPa,反应32h时,邻氯硝基苯的转化率为98%,邻氯苯胺的选择性接近100%,动力学研究表明,底物浓度和催化剂浓度分别对反应速率呈一级,反应的表观活化能Ea=131.3kJ/mol。  相似文献   

3.
研究了水/1-戊醇两相体系中铑纳米催化剂在邻氯硝基苯选择性还原制邻氯苯胺反应中的催化性能.在优化的反应条件下,邻氯硝基苯的转化率和邻氯苯胺的选择性分别为100%和98%.铑纳米催化剂经简单分相后可循环使用8次,其催化活性和选择性基本保持不变.  相似文献   

4.
研究了Ru3(CO)9(PETPP)3络合物(PETPP=P[C6H4p(OC2H4)nOH]3)催化水有机两相芳香硝基物一氧化碳选择性还原反应。在反应温度140℃及一氧化碳压力为4MPa条件下,催化剂对于oClC6H4NO2(邻氯硝基苯)的还原显示出良好的催化活性:原料转化率为99.2%同时生成预期芳胺的选择性高于99%。还原反应结束后,水相催化剂可以通过简单的相分离于含产物的有机相分开并用于随后的催化反应。催化剂循环使用四次后,芳香硝基物的转化率仍高于88%。  相似文献   

5.
以合成的水溶性钌配合物[RuC l2(TPPTS)2]2作为催化剂,用于水/有机两相体系中催化卤代硝基苯中硝基的选择性加氢反应.以对-氯硝基苯为底物,考察了反应温度、氢气压力、催化剂浓度、水溶液的pH值等对对-氯硝基苯转化率和生成对-氯苯胺选择性的影响.在100℃,氢气压力3.0 MPa时,反应6h,对-氯硝基苯转化率可达100%,生成对-氯苯胺的选择性可达95.2%.该催化剂对其他卤代硝基苯的加氢反应也表现出较高的催化活性.  相似文献   

6.
测定了(p-CH3OC6H4)2TeO存在下M2(CO)10(M=Mn,Re)的CO取代反应速率及活化参数。其表观速率常数分别与M2(CO)10和(p-CH3OC6H4)2TeO的浓度的一次方成正比。本文所建议的缔合机理与前人用(CH3)3NO作氧原子转移试剂的相应反应所提出的机理相似。讨论了在(CH3)3NO和(p-CH3OC6H4)2TeO存在下影响M2(CO)10的CO取代反应速率的因素。  相似文献   

7.
本文研究了邻氯硝基苯在5%Pd/C催化剂上加氢为邻氯苯胺和苯胺的反应机理。结果表明,在常压下,邻氯苯胺和苯胺的选择性分别为~70%和~30%,且不随转化率增加而变化。在加压(1.0 Mpa)条件下,也有类似规律。因此,说明邻氯苯胺和苯胺分别是两个平行反应的产物。通过测定该反应各步骤的初始反应速率,进一步证实了这一结论。在认识反应机理的基础上,制备出可有效抑制脱氯的Cu-Pd/C双金属催化剂,在不加脱氯抑制剂的情况下,可使邻氯硝基苯加氢制备邻氯苯胺的选择性提高到96%以上。  相似文献   

8.
采用化学还原法制备了不同Sn/Pd摩尔比的碳纳米管(CNTs)负载Pd/SnO2催化剂,并将该催化剂用于邻氯硝基苯(o-CNB)的选择加氢反应.采用透射电镜、X射线衍射和电感耦合等离子体技术对所制备的Pd/SnO2/CNTs催化剂进行了表征.结果表明,Sn/Pd摩尔比对该催化剂的邻氯硝基苯选择加氢反应性能影响显著.当Sn/Pd摩尔比为11时,催化剂的活性最高,在常压,60℃反应60 min,o-CNB转化率为96%.该催化剂还具有高的邻氯苯胺(o-CAN)选择性,o-CNB转化率达到100%时,脱氯副产物苯胺选择性小于5%.在相同条件下,浸渍法制备的2.4%Pd/CNTs催化剂上脱氯副反应严重,当o-CNB完全转化时,o-CAN选择性只有22%,副产物苯胺选择性则高达78%.  相似文献   

9.
熊峻  陈吉祥  张继炎 《催化学报》2006,27(7):579-584
 用等体积浸渍法制备了一系列不同镍负载量的负载型Ni/TiO2催化剂,并将其应用于邻氯硝基苯加氢制邻氯苯胺的反应. 采用N2吸附、 X射线衍射、程序升温还原、透射电镜、 H2化学吸附及间歇加压釜式反应器活性评价等方法,考察了镍负载量对Ni/TiO2催化剂的物化性质及邻氯硝基苯加氢反应性能的影响. 结果表明,随着镍负载量的增加, Ni/TiO2催化剂上邻氯硝基苯的转化率逐渐提高; 当镍负载量超过30%时,催化剂的活性和选择性不再明显变化. 当催化剂中镍负载量高于20%时,在温度343 K、 氢压1.0 MPa和催化剂/邻氯硝基苯质量比1/10的条件下反应210 min后,邻氯硝基苯的转化率和邻氯苯胺的选择性均高于99%, 催化剂具有良好的应用前景. 分析表明,影响Ni/TiO2催化剂性能的主要因素为催化剂表面镍晶粒的活性表面积以及载体TiO2与金属镍之间的强相互作用.  相似文献   

10.
磷钼酸盐作为反应控制相转移催化剂催化氧化醇   总被引:1,自引:0,他引:1  
翁志焕  王锦艳  刘志勇  蹇锡高 《化学学报》2007,65(11):1081-1084
以磷钼酸盐[C7H7N(CH3)3]3{PO4[MoO(O2)2]4}为反应控制相转移催化剂, 用过氧化氢水溶液为氧化剂, 在液相选择性氧化醇制备醛的反应中, 发现该催化剂具有良好的催化活性. 在H2O2与醇的物质的量比为0.75的条件下, 产物中未检测到任何副产物, 基于H2O2的醇转化率最高达到95.2%. 反应结束时, 催化剂以沉淀的形式析出, 回收率不低于78%. 以苯甲醇的氧化为探针反应, 详细考察催化剂的反荷阳离子和溶剂种类对反应控制相转移现象和催化活性的影响. 结果表明, 选择 [C7H7N(CH3)3]作为反荷阳离子和乙腈为溶剂, 体系出现了反应控制相转移催化的特征. 催化剂循环使用三次, 在保持较高回收率的同时其催化活性无明显降低, 说明该催化剂具有良好的稳定性.  相似文献   

11.
Three tetranuclear clusters [Ru4H4(CO)11(PPh3)] (1), [Ru4H2(CO)12(PPh3)] (2) and [Ru3IrH(CO)12(PPh3)] (3) were formed in the reaction of [Ir(CO)Cl(PPh3)2] and Na[Ru3H(CO)11] in tetrahydrofuran. Complexes 1–3 were characterized by IR and 1H and 31P NMR, and the structure of the clusters was confirmed by single crystal X-ray analysis. In 2 and 3 one of the carbonyls bridges between two ruthenium atoms; otherwise the compounds contain only terminal carbonyls.  相似文献   

12.
The reaction between Ru3(CO)12 and a cyclic olefin (cis-cyclooctene or trans-cyclododecene) at 100 °C for several hours gives the title compounds (μ-H)2RU3(CO)932-C8H12) (1), and (μ-H)RU3(CO)933-C12H19) (2), both of which have been characterized by X-ray diffraction studies, IR and NMR spectral measurements and elemental analysis. The prolonged reaction between Ru3(CO)12 and cis-cyclooctene gives compound HRu3(CO)9(C8H11) (3). Compound 3 has been characterized with IR and NMR spectral analyses. In 1 the cyclooctene ring is linked via a μ32-alkyne type of bonding to the face of the Ru3 cluster. It is formally σ-bonded to two of the three Ru atoms and π-bonded to the third Ru. The two hydrides in 1 are bridging Ru---Ru bonds. In 2 the cyclododecene ring is bonded to the Ru3 face via the μ33-CCHC linkage. There are two formal σ-bonds from the allyl part to the hydrido-bridged Ru atoms and the η3-allyl linkage to the third Ru atom.  相似文献   

13.
[Ru3(CO)12]与Lawesson试剂[(MeOC6H4PS2)2]反应,合成、分离并用谱学表征了产物三核钌羰合簇[(μ-H)2Ru3(CO)93-P)](Ⅰ)和四核钌羰合簇[(Ru4(CO)103-S)(μ3-PC6H4OMe)](Ⅰ).X射线衍射测定了的晶体分子结构,表明含有1个裸磷原子作为面桥基配体,并具有颇短的Ru-Ru键距,该价电子数为49e的簇合物对氧和水稳定.谱学分析表明,化合物具有四面体型的Ru4簇心,其三角形面上分别具有面桥基μ3-S和μ3-PC6H4OMe基配体.  相似文献   

14.
Novel isonitrile derivatives of a diruthenium carbonyl complex, (μ235-guaiazulene)Ru2(CO)5 (2), were synthesized by substitution of a CO ligand by an isonitrile, and were subjected to studies on thermal and photochemical haptotropic interconversion. Treatment of 2 (a 45:55 mixture of two haptotropic isomers, 2-A and 2-B) with RNC at room temperature resulted in coordination of RNC and alternation of the coordination mode of the guaiazulene ligand to form (μ215-guaiazulene)Ru2(CO)5(CNR), 5d–5f, [5d; R=tBu, 5e; 2,4,6-Me3C6H2, or 5f; 2,6-iPr2C6H3] in moderate to good yields. Thermal dissociation of a CO ligand from 5 at 60 °C resulted in quantitative formation of a desirable isonitrile analogue of 2, (μ235-guaiazulene)Ru2(CO)4(CNR), 4d–4f, [4d; R=tBu, 4e; 2,4,6-Me3C6H2, or 4f; 2,6-iPr2C6H3], as a 1:1 mixture of the two haptotropic isomers. A direct synthetic route from 2 to 4d–4f was alternatively discovered; treatment of 2 with one equivalent of RNC at 60 °C gave 4d–4f in moderate yields. All of the new compounds were characterized by spectroscopy, and structures of 5d (R=tBu) and 4d-A (R=tBu) were determined by crystallography. Thermal and photochemical interconversion between the two haptotropic isomers of 4d–4f revealed that the isomer ratios in the thermal equilibrium and in the photostatic state were in the range of 48:52–54:46.  相似文献   

15.
Reactions of FcCCH (a), HCCCCFc (b) and FcCCCCFc (c) with Ru3(CO)10(NCMe)2 (all) and Ru3(μ-dppm)(CO)10 (b and c only) are described. Among the products, the complexes Ru33-RC2R′)(μ-CO)(CO)9 (R=H, R′=Fc 1, CCFc 2; R=R′=Fc 5), Ru3(μ-H)(μ3-C2CCFc)(μ-dppm)(CO)7 3, Ru33-FcC2CCFc)(μ-dppm)(μ-CO)(CO)7 6 and Ru33-C4Fc2(CCFc)2}(μ-dppm)(μ-CO)(CO)5 7 were characterised, including single-crystal structure determinations for 1, 3, 5 and 7; that of 7 did not differ significantly from an earlier study of a mixed CH2Cl2–C6H6 solvate.  相似文献   

16.
The reaction between Ru2Cl(μ-O2CCH3)4 and molten p-tert-butylbenzamide led to the formation of Ru2Cl(μ-HNOCC6H4-p-CMe3)4. The polymeric structure of this insoluble compound was broken with AgBF4, in anhydrous thf, giving [Ru2(μ-HNOCC6 H4-p-CMe3)4(thf)2]BF4. The reaction of this cationic complex with OPPh3 gave [Ru2(μ-HNOCC6H4-p-CMe3)4(OPPh3)2]BF4. The compounds have been characterized by elemental analysis, spectroscopic data and magnetic measurements and the crystal structure of [Ru2(μ-HNOCC6H4-p-CMe3)4(OPPh3)2]BF4 was determined by X-ray crystallography. The asymmetric unit is composed of halves of two different crystallographically independent centrosymmetric cations. Each ruthenium(II,III) dimer is bonded to four bridging p-tert-butylbenzamidate ligands and to two axial triphenylphosphine oxide molecules. The Ru---Ru distances in the two dimeric cations of the unit cell are 2.281(2) and 2.280(2) Å. The compound has a non-polar 2 : 2 arrangement of the tert-butylbenzamidate ligands.  相似文献   

17.
31P(1H)NMR和1HNMR研究表明,当NaOH加入到水溶性铑膦配合物HRh(CO)·(TPPTS)3[TPPTS:P(m-C6H4SO3Na)3]后,可观察到有少量的OTPPTS[OTPPTS:O=P(m-C6H4SO3Na)3]出现,但配合物的特征谱峰即使在高浓度的NaOH存在下也基本保持不变,表明NaOH对配合物分子结构的影响较小;当吡啶加入到HRh(CO)(TPPTS)3中,31P(1H)NMR谱图中出现游离配体TPPTS的31P谱峰及若干结构未知的新水溶性配合物的31P谱峰,表明吡啶分子将与配合物分子中的配体TPPTS发生配体交换反应.在HRh(CO)(TPPTS)3中分别加入一定量的HCl,HNO3,H2SO4和H3PO4等无机酸时,随着酸量的增加,配合物的31P物种含量逐渐下降,而OTPPTS量明显上升,直至配合物31P物种完全消失;高浓度乙酸对配合物结构的影响与上述无机酸类似.HRh(CO)(TPPTS)3的1-己烯氢甲酰化催化反应结果表明,碱存在下可获得较高的正异构醛比值,但催化活性降低;酸存在下所得产物正异构醛比值相对较低且呈淡黄色.  相似文献   

18.
The preparation and properties as well as some reactions of a series of arylcarbonylbis(triphenylphosphine)iridium(I) complexes [Ir(Ar)(CO)(PPh3)2] (Ar = C6H5, C6F5, 2-C6H4CH3, 3-C6H4CH3, 4-C6H4CH3, 2-C6H4OCH3, 2,6-C6H3-(OCH3)2, 4-C6H4N(CH3)2, 3-C6H4Cl, 4-C6H4Cl, 4-C6H4Cl, 3-C6H4CF3, 4-C6H4CF3) are described, and the most important IR data as well as the 31P NMR parameters of these, without exception trans-planar, compounds are given.

Some of the complexes react with molecular oxygen to form well defined dioxygen adducts [Ir(Ar)(O2)(CO)(PPh3)2] (Ar = C6H5, 3-C6H4CH3, 4-C6H4CH3). Complexes with ortho-substituted aryl ligands are not oxygenated. This effect is referred to as a steric shielding of the metal center by the corresponding ortho-substituents. With SO2 the similar irreversible addition compound [Ir(4-C6H4CH3)-(SO2)(CO)(PPh3)2] is obtained. Sulfur dioxide insertion into the Ir---C bond cannot be observed.

The first step of the reaction between [Ir(4-C6H4CH3)(CO)(PPh3)2] and hydrogen chloride involves an oxidative addition of HCl to give [Ir(H)(Cl)(4-C6-H4CH3)(CO)(PPh3)2]. Ir---C bond cleavage by reductive elimination of toluene from the primary adduct does not occur except at elevated temperature.  相似文献   


19.
The cationic diphenylphosphido-bridged compound [Ru2(μ-PPh2)(μ-OH)26-p-cymene)2][PF6) (2) has been prepared by reaction of the tri-μ-hydroxo complex [Ru2(μ-OH)3(η-p-cymene)2][PF6] (1) with diphenylphosphine. Complex 2 eliminates water on reaction with protic acids, incorporating the conjugate base of the added acid as a bridging ligand. Formic acid, acetic acid, phenol, and aniline react with 2 to give the monosubstituted compounds [Ru2(μ-PPh2)(μ-OH)(μ-L)(η6-p-cymene)2]PF6] (L = HCO2, MeCO2, OPh, or NHPH), whereas methanol, thiophenol, 1,2-benzenedithiol, hydrochloric acid and isopropanol afford the disubstituted derivatives [Ru2(μ-PPh2)(μ-L)26-p-cymene)2]PF6] (L = OMe, SPh, S2C6H4, Cl, or H).  相似文献   

20.
二(甲基环戊二烯基)二氯化钛[(MeCp)2TiCl2](Ⅰ),Wilkinson等人[1]曾用四氯化钛和甲基环戊二烯基钠反应来制备,产率26%.后来Brantly[2]用四氯化钛和MeC5H4MgCl在乙醚-苯混合溶液中于-70℃反应.以上两种方法不但操作复杂,且条件苛刻,产率低.最近吴绍祖等[3]用二乙胺作为氯化氢的接受体,四氢呋喃作溶剂,由TiCl4和甲基环戊二烯直接反应来合成.产率43%.我们采用甲基环戊二烯基锂与TiCl4反应来合成,产率为63%.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号