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1.
水溶性膦配体的合成方法   总被引:7,自引:2,他引:5  
陈华  黎耀忠 《分子催化》1999,13(2):151-160
1984年,Ruhrchemie公司和Rhone-Poulenc公司合作,第一次成功地将水溶性铑-膦配合物HRh(CO)(TPPTS)3(TPPTS:P(m-C6H4SO3Na)3用于催化丙烯氢甲酰化的工业化生产(简称为RCH/RP过程[1,2])以...  相似文献   

2.
水溶性膦配体的合成及进展   总被引:4,自引:0,他引:4  
水溶性膦配体的合成及进展郑晓来,王艳华,左焕培(大连理工大学,大连116012)关键词水溶性膦配体,均相络合催化,水/有机两相反应1.前言贵金属催化剂的分离回收问题一直是均相络合催化研究领域的一个热点。近年来,水/有机两相催化体系(Aqueous/o...  相似文献   

3.
在温和的反应条件下,以季Lin盐[Ph2P(CH2OH)2]^ Cl^-与含醚键和有机膦酸根的胺H2O3PCH2N CH2-CH2(OCH2CH2)nNH2(n=1,2,3)的曼尼希反应,高产率合成了含Ph2PCH2N=配位基团的水溶性膦配体,用NMR、MS、IR、UV和光电子能谱等对其结构进行了表征。  相似文献   

4.
水溶性膦配体络合金属催化剂的进展   总被引:1,自引:0,他引:1  
杨波  左焕培 《分子催化》1993,7(1):73-80
均相催化剂与多相催化剂相比有许多优点,如在均相催化剂中,全部中心金属原子均参与构成活性种;具有确定均一的结构;催化剂浓度低,具有高活性、高选择性;反应条件温和;不存在扩散问题;传热易于解决等.但是,均相催化剂与产物的分离问题给工业生产带来了困难,特别是对产品沸点高的均相催化过程,显得更为突出,加之所用催化剂大多是贵重金属,因此,均相催化剂的分离回收一直是催化剂研究领域的一个热点.如均相催化多相化的研究,即通过高分子锚定,无机载体固定、双重固载及液相担载等方法,使均相催化剂多  相似文献   

5.
马学兵  傅相锴  王强  王宁 《应用化学》2002,19(12):1154-0
水溶性羟乙基膦配体;表征;含羟基、膦酸根水溶性膦配体的合成  相似文献   

6.
以季鳞盐[Ph2P(CH2OH)2]^ Cl^-与含磺酸根的胺的曼尼希反应合成了水溶性更大的含Ph2PCH2N配位基团的磺酸型膦配体[(Et3NH)2][Ph2PCH2N(CH2CH2SO3)2(2a)和[(Et3NH)2][O3SCH2CH2N(CH2PPh2)CH2CH2N(CH2PPh2)CH2CH2SO3](2b),用NMR、MS、IR等对该膦配体的结构进行了表征。25℃时膦配体2a在水中的溶解度为0.21g/mL,在乙醇中为0.29g/mL。膦配体2b的SO3H与Ph2P的摩尔比较低,在水中溶解度为0.11g/mL,在乙醇中为0.15g/mL。  相似文献   

7.
水溶性胺膦配体的合成和应用   总被引:1,自引:0,他引:1  
本文简要叙述了通过胺膦配体中的活泼氨基引入各种极性基团 ,制备水溶性胺膦配体的方法及其在不对称催化中的应用  相似文献   

8.
与传统中性叔膦配体构建的过渡金属配合物相比,由离子型膦配体配位构建的过渡金属配合物具有典型的离子盐组成特点、独特的电子效应和几何构型。该类配合物中,不仅存在金属和配体间的配位作用,还存在正电荷的强吸电子效应和阴阳离子的静电作用,由此可以产生独特的催化性能。近年来,离子型过渡金属配合物的合成及其均相催化应用成为配位化学和均相催化研究中备受关注的领域。离子型过渡金属配合物的离子盐结构,使其在与室温离子液体溶剂结合使用时,离子型离子配体及其配合物能够严格被锁定在离子液体相,具有避免离子型离子配体及其配合物的流失、抑制其失活、并实现循环使用的优点,也成为均相催化固载化的绿色方法之一。本文综述了近十年发展的一类咪唑鎓基与膦配体中的磷原子毗邻的离子型膦配体的合成,及其相应Rh、Pd、Ru、Pt、Au、Ni、Cu等离子型配合物的构建,并介绍了它们在均相催化反应中的应用。  相似文献   

9.
高活性、高稳定性的无膦配体多相氢甲酰化催化体系研究是催化化学领域的重要课题。本文以乙烯氢甲酰化这一反应为目标,发展出含有不同含氧官能团的活性炭为载体的负载纳米铑催化材料。其中,当以Rh/C-3这一材料为催化剂时,乙烯氢甲酰化反应的转化频率可以达到57889 mol/mol/h。该催化剂可以在固定床反应器上稳定运行2500小时保持活性稳定。表征发现,碳材料表面的内酯基团 (-CO2-)对催化材料的活性和稳定性具有重要的作用。这一研究对高活性、高稳定性的非膦配体多相氢甲酰化催化体系研究具有一定的启示。  相似文献   

10.
本文提出了利用两步法合成烃基体积较大的对称和不对称1,2-二(二叔丁基膦)乙烷[d(t-Bu)pe]和1,2-二(苯基叔丁基膦)乙烷[Pb(t-Bu)pe]以及利用α,ω-双格氏试剂与PCl_3反应直接合成较大螯合环的1,4-二(磷杂环戊基)丁烷(dPCypb)和正丁基磷杂环戊烷[(n-Bu)(PCyp)]膦配体的新方法。并用通常的合成方法得到了这些配体的Pt,Ni金属有机配合物,其中[d(t-Bu)pe]PtCl_2,(dPCypb)PtCl_2,和[(n-Bu)(PCypP]PtCl_2,配合物进行了晶体和分子结构测定。讨论了配体的空间因素对配合物结构的影响。  相似文献   

11.
两相催化——均相催化多相化新进展*   总被引:8,自引:1,他引:8  
评述了水溶性膦配体和两相催化研究领域的进展, 探讨了固载水相催化、温控相转移催化和氟两相体系等新型两相催化体系。两相催化在烯烃的氢甲酰化反应、不饱和化合物的加氢反应以及其它有机反应中获得了广泛的应用。  相似文献   

12.
水溶性均相络合催化研究进展*   总被引:21,自引:0,他引:21  
本文评述了水溶性膦配体的合成及以水溶性过渡金属膦络合物为催化剂的两相催化体系的研究和开发概况, 着重介绍了两相体系在烯烃氢甲酰化、不饱和化合物的加氢及催化不对称合成中的应用, 并对两相催化体系研究中存在的问题进行了探讨。  相似文献   

13.
The water‐soluble phosphine ligands, 1,3,5‐triaza‐7‐phosphatricyclo[3.3.1.13,7]decane (tpa) and 1‐alkyl‐1‐azonia‐3,5‐diaza‐7‐phosphatricyclo[3.3.1.13,7]decane iodides (Rtpa+I), with alkyl=methyl(mtpa+I), ethyl (etpa+I) and n‐propyl, (ptpa+I), and mtpa+Cl react with [Rh2Cl2(CO)4] giving the rhodium(I) complexes [RhCl(CO)(tpa)2], [RhI(CO)(Rtpa+I)2], [RhCl‐­(CO)(mtpa+Cl)3] and [RhI(CO)(Rtpa+I)3]. The properties and reactivities of the complexes have been investigated using 1H and 31PNMR and IR spectroscopies. The five‐coordinate complexes in solutions show dynamic properties. The complexes are catalysts of the water‐gas shift reaction, the hydrogenation of CC and CO bonds, the hydroformylation of alkenes and the isomerization of unsaturated compounds. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

14.
We report herein a molecular dynamics study of the main species involved in the hydroformylation of higher olefins promoted by cyclodextrins in 1-decene/water biphasic systems at a temperature of 350 K. The two liquids form a well-defined sharp interface of approximately 7 A width in the absence of solute; the decene molecules are generally oriented "parallel" to the interface where they display transient contacts with water. We first focused on rhodium complexes bearing water-soluble TPPTS(3-) ligands (where TPPTS(3-) represents tris(m-sulfonatophenyl)phosphine) involved in the early steps of the reaction. The most important finding concerned the surface activity of the "active" form of the catalyst [RhH(CO)(TPPTS)(2)](6-), the [RhH(CO)(2)(TPPTS)(2)](6-) complex, and the key reaction intermediate [RhH(CO)(TPPTS)(2)(decene)](6-) (with the olefin pi-coordinated to the metal center) which are adsorbed at the water side of the interface in spite of their -6 charge. The free TPPTS(3-) ligands themselves are also surface-active, whereas the -9 charged catalyst precursor [RhH(CO)(TPPTS)(3)](9-) prefers to be solubilized in water. The role of cyclodextrins was then investigated by performing simulations on 2,6-dimethyl-beta-cyclodextrin ("CD") and its inclusion complexes with the reactant (1-decene), a reaction product (undecanal), and the corresponding key reaction intermediate [RhH(CO)(TPPTS)(2)(decene)](6-) as guests; they were all shown to be surface-active and prefer the interface over the bulk aqueous phase. These results suggest that the biphasic hydroformylation of higher olefins takes place "right" at the interface and that the CDs promote the "meeting" of the olefin and the catalyst in this peculiar region of the solution by forming inclusion complexes "preorganized" for the reaction. Our results thus point to the importance of adsorption at the liquid/liquid interface in this important phase-transfer-catalyzed reaction.  相似文献   

15.
New dinuclear Rh(I)–Phosphines of the types [Rh(µ‐azi)(CO)(L)]2 ( 1,3 – 7 ) and [Rh(µ‐azi)(L)]2 ( 8 ) with pendant polar groups, and a chealated mononuclear compound [Rh(azi‐H)(CO)(L)] ( 2 ) (where azi = 7‐azaindolate, L = polar phosphine) were isolated from the reaction of [Rh(µ‐Cl)(CO)2]2 with 7‐azaindolate followed by some polar mono‐ and bis‐phosphines ( L 1 – L 8 ). A relationship between Δδ31P‐NMR and ν(CO) values was considered to define the impact of polar‐groups on σ‐donor properties of the phosphines. These compounds were evaluated as catalyst precursors in the hydroformylation of 1‐hexene and 1‐dodecene both in mono‐ and biphasic aqueous organic systems. While the biphasic hydroformylations (water + toluene) gave exclusively the aldehydes, the monophasic one (aqueous ethanol) showed propensity to form both aldehydes and alcohols. The influence of bimetallic cooperative effects, and σ‐donor and hydrophilic properties of the phosphines with pendant polar‐groups in enhancing the yields and selectivity of hydroformylation products was emphasized. In addition, when strong σ‐donor phosphine was used, the π‐acceptor nature of pyridine ring of 7‐azaindolate spacer was found to be a considerable factor in facilitating the facile cleavage of CO group during hydroformylation and in supplementing the cooperative effects. Copyright © 2009 John Wiley & Sons, Ltd.  相似文献   

16.
The water‐soluble ruthenium(II) complexes [Cp′RuX(PTA)2]Y and [CpRuCl(PPh3)(mPTA)]OTf (Cp′ = Cp, Cp*, X = Cl and Y = nil; or X = MeCN and Y = PF6; PTA = 1,3,5‐triaza‐7‐phosphaadamantane; mPTA = 1‐methyl‐1,3,5‐triaza‐7‐phosphaadamantane) were used as catalyst precursors for the hydrogenation of CO2 and bicarbonate in aqueous solutions, in the absence of amines or other additives, under relatively mild conditions (100 bar H2, 30–80 °C), with moderate activities. Kinetic studies showed that the hydrogenation of HCO3? proceeds without an induction period, and that the rate strongly depends on the pH of the reaction medium. High‐pressure multinuclear NMR spectroscopy revealed that the ruthenium(II) chloride precursors are quantitatively converted into the corresponding hydrides under H2 pressure. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

17.
A biphasic catalysis system composed of ionic liquid and rhodium complexes with water-soluble or amphiphilic phosphine ligands bearing water-soluble groups of sodium sulfonate have been employed for hydroformylation of 1-hexene. The experimental results show that the activity is almost independent of the hydrotropicity of the phosphine ligands in BMI·BF4. In this system, the extraction of phosphine species by the organics from the IL phase was quite low but larger than that of rhodium species and showed rather good stability of catalytic activity. A slight decrease in the aldehyde n/i ratio during the catalyst reuse could be recovered, in part, by replenishing certain amount of ligand into the used catalyst system.  相似文献   

18.
A thermoregulated phase‐transfer (TRPT) Rh(I) complex catalyst A prepared from Rh(acac)(CO)2 and a thermoregulated ligand CH3(OCH2CH2)mPPh2 (Mw = 918) was applied to the biphasic hydroformylation of 1‐octene, and a high activity with an aldehyde yield of 97.5% was demonstrated. After three recycling steps, the aldehyde yield gradually decreased. Transmission electron microscopy (TEM) revealed that after the first cycle Rh colloids were generated in situ in the aqueous phase, and in subsequent runs Ostwald ripening occurred. An independently prepared colloidal Rh(0) TRPT catalyst D also exhibited high hydroformylation activity under identical experimental conditions, and after two times of recycling an activity decrease was also observed. It is suggested that in situ from Rh(acac)(CO)2 colloidal Rh particles are generated, which demonstrate thermomorphic behaviour and a high hydroformylation activity. Subsequently, agglomeration processes result in an activity decay, as observed in the TRPT Rh(I) complex catalyst system. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

19.
研究了水/有机两相催化体系中,水溶性Ru-TPFrS配合物催化对-氯硝基苯中硝基的选择性加氢反应。考察了溶剂种类、水溶液的pH值、添加助剂三乙胺、水/有机两相体积、底物浓度等对对-氯硝基苯转化率和生成对-氯苯胺选择性的影响,并在90℃、4.0MPa、反应时间为6h的条件下,进行了催化剂的循环实验。  相似文献   

20.
In order to effectively remove the oil-based drilling that remains on the wall of a well and improve the quality of well cementation, flushing fluid must be used to clean it. Due to its excellent flushing effect, microemulsion flushing fluid has been a hot area of research in recent years; the application, however, is limited because of its poor resistance to temperature. In this paper, for the purpose of enhancing the temperature resistance of microemulsion flushing fluid, a new type of comb-shaped trimeric nonionic surfactants N,N-bis(2-stearamidoethyl) stearamide was synthesized, and an anionic–nonionic surfactants composite oil-in-water microemulsion flushing fluid (ANC-MEFF in short) to flush the oil-based drilling was formed. Studies have shown that it has a good flushing effect on oil-based drilling between 20 and 160°C, and its flushing efficiency can reach 93% or even higher. Compared with the CW210L organic phosphorus flushing fluid (Number 1 in short), the flushing efficiency increased by about 20?~?40%, while the microemulsion flushing fluid formed by OP-10 (Number 2 in short) increased by 30% in high temperature, with the application temperature ranging from 20?~?60 to 20?~?160°C, respectively. Additionally, it was found that the microemulsion flushing fluid can make the borehole wall and casing wall change from “oil-wet” into “water-wet”, which is conducive to promoting the quality of cementation between the first and second interfaces intuitively.  相似文献   

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