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1.
手性金属Salen配合物在不对称催化中的应用*   总被引:12,自引:3,他引:9  
孙伟  夏春谷 《化学进展》2002,14(1):8-17
手性Salen金属配合物已在不对称催化中得到了广泛的应用。本文主要介绍了可溶性的手性金属Salen配合物在不对称催化反应中的应用以及手性金属Salen配合物固载化研究取得的进展。  相似文献   

2.
手性Salen Mn(Ⅲ)配合物催化NaOCl不对称环氧化苯乙烯反应   总被引:9,自引:0,他引:9  
手性Salen Mn(Ⅲ)配合物催化NaOCl不对称环氧化苯乙烯反应;不对称环氧化;Salen Mn(Ⅲ)配合物;苯乙烯;NaOCl  相似文献   

3.
手性Salen FeⅢ配合物与咪唑配体轴配反应热力学;手性Salen FeⅢ配合物; 热力学; 圆二色光谱  相似文献   

4.
采用新型Salen中间体I(由3,5-二叔丁基水杨醛、2,6-二酰基-4-甲基苯酚、(R,R)环己二胺为原料合成)合成了4个新型手性双核Salen配合物[Zn2L·3H2O (2)、Cu2L·H2O (3)、CO2L (4)、Ni2L (5)],(L是由中间体I和邻苯二胺合成的手性二聚Salen配体)。用1H NMR、FTIR、UV-Vis、CD光谱对配体和配合物进行了表征,详细讨论了红外光谱、电子吸收光谱、圆二色光谱的性质。采用激子耦合理论解释了此类手性化合物圆二色谱的Cotton效应和Cotton裂分,Cotton裂分的方向依赖于环己二胺的构象,(R,R)环己二胺决定了Salen化合物的手征性为负。  相似文献   

5.
合成了四个新型的手性双核(R,R)Salen配合物[(Cu)2L•H2O(2), (Ni)2L(3), (Zn)2L•H2O(4), (MnCl)2L•2H2O(5)], (其中L是由(R,R)环己二胺、 3,5-叔丁基水杨醛、 5,5’-亚甲基二水杨醛为原料合成的手性二聚Salen配体(1)).用元素分析、NMR、FT-IR、UV-Vis、CD光谱对配体和配合物进行了表征.在与单核的Salen配体和配合物比较的基础上,详细讨论了红外光谱、电子吸收光谱、圆二色光谱性质.发现双核配体和配合物的电子吸收光谱吸收峰的位置和形状与单核的配体和配合物基本一致,而吸收峰的强度有近似两倍的关系.另外, 用激子偶合理论解释了此类手性化合物圆二色谱的Cotton效应和Cotton分裂. Cotton分裂的方向依赖于环己二胺的构象.(R,R)环己二胺决定了Salen化合物的手征性为负, Cotton分裂的正负两部分分别处于高能区和低能区.  相似文献   

6.
基于手性1,2-环己二胺Salen配体在不对称合成中具有极重要的地位,其与金属离子形成的手性配合物催化许多不对称反应,取得了好的结果.因此此类催化剂的合成及其应用研究一直是不对称合成中的一个热点.  相似文献   

7.
沈淳.  陈磊  汤杰  徐明华 《中国化学》2009,27(2):413-418
本文研究了双功能金属锌(Salen)配合物催化的醛的不对称炔基加成反应。在相应的反应中,当手性salen配体的C3和C3’位有路易斯碱性的1-哌啶甲基取代时,其和金属锌形成的配合物较一般的锌(Salen)配合物具有更好的催化活性和立体选择性。  相似文献   

8.
合成了14个含1,2-环己二胺、1,2-二苯基乙二胺或邻苯二胺的手性Salen化合物, 研究了手性Salen直接催化苯基锂对环氧环己烷的不对称开环反应, 结果表明二胺的结构和苯环上3,3'-位取代基对反应的对映选择性有很大的影响. 用Salen与 Me3Ga原位生成的Ga(Salen)催化苯基锂对环氧环己烷的不对称开环反应, 与用Salen直接催化相比, 得到了更好的化学产率和对映选择性. 当用Ga(Slane) 15为催化剂时, 最佳ee值为73%.  相似文献   

9.
对一系列手性Salen和唑啉配体与中心金属Cu(Ⅱ)的配合物催化2苯基环己酮的不对称BaeyerVilliger反应进行了研究,设计和合成了新型手性配体Ⅲ,Ⅳ,Ⅴ,对配合物ⅤCu(Ⅱ)进行了单晶X射线衍射分析.并考察了助氧化剂、溶剂等对反应活性和选择性的影响.  相似文献   

10.
张道  牛国兴  高翔 《大学化学》2012,27(3):41-44
介绍以Salen—Co(Ⅱ)络合物为金属有机催化剂的不对称芳香酮还原反应实验。通过本实验可了解有关手性、金属配合物催化剂的设计合成、催化机理、产率、选择性等基本概念,提高在手性化合物拆分及不对称催化方面的操作能力,加强在有机、无机合成、仪器分析、催化、手性分离及化合物表征等方面的综合能力。讨论了该实验在高年级本科生综合化学实验教学工作中的实践效果。  相似文献   

11.
Three novel phosphorus‐containing Salen‐based derivatives (Salen‐DPCP‐M: M = Ni, Zn, and Mn), which include both phenyl phosphate structures (DPCP) and Salen‐metal complexes, were prepared for enhancing the fire safety of thermoplastic polyurethane (TPU). Thermogravimetric analysis (TGA) showed that Salen‐DPCP‐M altered the thermal degradation pathways of TPU probably due to the phosphorus‐containing structure of Salen‐DPCP‐M. The cone calorimeter test showed that the addition of 3 wt% of Salen‐DPCP‐Ni, Salen‐DPCP‐Zn, and Salen‐DPCP‐Mn lowered the peak of heat release rate (PHRR) from 1495 kW/m2 for neat TPU to 690, 875, and 813 kW/m2, respectively, for the TPU composites, which demonstrated that Salen‐DPCP‐M improved the fire safety of TPU. In addition, the release of toxic CO gas from the Salen‐DPCP‐Ni/TPU and Salen‐DPCP‐Zn/TPU composites was reduced by 78.2% and 80.0%, respectively. The results of TGA/infrared spectrometry (TG‐FTIR) showed that the incorporation of Salen‐DPCP‐Ni promoted the release CO2, while reducing the formation of harmful gases. Laser Raman spectroscopy (LRS) and scanning electron microscopy (SEM) showed that Salen‐DPCP‐Ni/TPU and Salen‐DPCP‐Zn/TPU composites formed a dense and stable char layer. Herein, the mechanism of these flame retardants containing novel phosphorus‐containing Salen‐metal complexes is also proposed.  相似文献   

12.
Using EPR, high-valent MnIV complexes have been detected in Mukaiyama's catalytic system, MnIII(Salen)/Isobutyraldehyde/O2, and shown to form also in the model system MnIII(Salen)/Peroxyisobutyric acid. Their possible role in alkene epoxidation is discussed.  相似文献   

13.
Exfoliation-restack method has been employed to synthesize the intercalation compounds based on the cationic complexes [M(Salen)]+ (M = Mn3+, Fe3+, Co3+; Salen = N, N′-ethylene-bis(salicylaldimine)) into the layered MoS2. Their conductivity is in the range of 0.04–0.1 S/cm, which is much higher than the pristine MoS2. Magnetic measurement indicated that the intercalation compounds [Mn(Salen)]0.18MoS2 · 0.25H2O and [Fe(Salen)]0.12MoS2 · 0.3H2O exhibit the temperature-dependent paramagnetism, which obviates from the Curie–Weiss law due to the temperature-independent paramagnetism of the exfoliated MoS2 slabs, while [Co(Salen)]0.14MoS2 · 0.5H2O exhibits the almost temperature-independent paramagnetism. All three intercalation compounds do not show magnetic spin crossover behavior.  相似文献   

14.
A UV-Vis spectrophotometric study of adduct formation of SalenH2 (1) and MII(Salen), where M?=?Mn (2), Fe (3), Co (4), Ni (5) and Cu (6) as donors with Me2SnCl2 as acceptor have been investigated in chloroform. Adducts (1a6a) have been characterized by 1H, 13C and 119Sn NMR, IR and electronic spectroscopy and microanalysis. Formation constants and thermodynamic parameters were measured for 1 : 1 and 2 : 1 adducts at various temperatures (T?=?278 to 308 K). The data refinement was carried out with the SQUAD 84 program. The trend of formation constants of MII(Salen) complexes with Me2SnCl2 follows the order: Mn>Fe>Cu>Co>Ni. The formation constants for the free 1 and MII(Salen) with Me2SnCl2 changes according to the following trend: MII(Salen)>SalenH2  相似文献   

15.
宋晗  王娜娜  李悦  阮文娟 《物理化学学报》2013,29(11):2300-2307
设计合成了新型含有末端炔基的Salen型配体H2Ln及其系列金属配合物MLn(n=1,2;M=Ni,Cu,Mn),并用氢核磁共振(1H NHR)谱、电喷雾质谱(ESI-MS)、元素分析(EA)、傅里叶变换红外(FT-IR)光谱和紫外-可见(UV-Vis)光谱等对各目标化合物进行了表征.采用循环伏安法研究了配体及其金属配合物的电化学氧化还原性质.研究发现,配体除H2L1外均在测试范围内出现特征的亚胺氧化还原峰.镍和铜的配合物均经历了两个单电子的氧化还原过程;锰的配合物均出现由Mn(III)/Mn(II)产生的一对氧化还原峰,该过程为准可逆的单电子过程.H2Ln及MLn的溶液摩尔电导率数据显示,各目标化合物为弱电解质,具有一定的导电性.  相似文献   

16.
The equilibrium constants and the thermodynamic parameters were spectrophotometrically measured for the 1:1 adduct formation of [Co(Salen)(PPh3)]ClO4.H2O, and [Co(7,7′-Me2Salen)(PPh3)]ClO4.H2O as acceptors, with P(OR)3 (R = methyl, ethyl, and i-propyl) as donors, in acetonitrile (CH3CN) and dimethylformamide (DMF) as solvents at constant ionic strength (I = 0.1 M NaClO4), and various temperatures (t = 10–50 °C). Our results revealed the following trends: stability of the cobalt(III) Schiff base complexes toward a given phosphite donor, [Co(7,7′-Me2Salen)(PPh3)]+ < [Co(Salen)(PPh3)]+; binding of the donors (phosphites) toward a given cobalt(III) Schiff base complex, P(OEt)3 > P(OMe)3 > P(O-iPr)3; influence of solvent on the stability of a given cobalt(III) Schiff base complex toward a given phosphite donor, CH3CN < DMF.  相似文献   

17.
The interaction of aryldiazonium ions with some Schiff-base complexes of cobalt and ruthenium have been studied. With cobalt, one-electron oxidation of [Co(II)Salen] occurred; with [Co(I)Salen] the corresponding Co(III)-aryl complexes were isolated. In the case of ruthenium oxidation also occurs, [Ru(Salen)(CO)py] gave the corresponding monocation. The results, especially for ruthenium, are in contrast to the stabilisation of both nitrosyl and aryldiazonium adducts in analogous porphyrin complexes.  相似文献   

18.
Two new heterotrinuclear FeIII-MII-FeIII oxalate-bridged complexes have been prepared, and characterized, namely MII[(ox)FeIII(Salen)]2, [Salen = N,N′-ethylenebis(salicylideneiminate), ox = oxalate, M = Cu (1) and VO (2)]. Based on elemental analysis, conductivity measurements and i.r. spectra, the complexes are proposed to have an oxalate-bridged structure. The magnetic susceptibilities of the complexes were measured over the 4.2–300 K range, giving the exchange integrals J AB = −4.23 cm−1, J AA = −2.47 cm−1 for (1) and J AB = −5.42 cm−1, J AA = −1.55 cm−1 for (2). These results revealed the operation of an antiferromagnetic spin-exchange interaction between the metal ions. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

19.
In this study, firstly, two single substitute novel ligands have been synthesized by reacting melamine with 3,4,-dihydroxybenzaldeyhde or 4-carboxybenzaldehyde. Then, eight new mono nuclear single substitute [Salen/Salophen Fe(III) and Cr(III)] complexes have been synthesized by reacting the ligands [2-(3,4-dihydroxybenzimino)-4,6-diamimo-1,3,5-triazine and 2-(4-carboxybenzimino)-4,6-diamimo-1,3,5-triazine)] with tetradentate Schiff bases N,N′-bis(salicylidene)ethylenediamine-(salenH2) or bis(salicylidene)-o-phenylenediamine-(salophen H2). And then, all ligands and complexes have been characterized by means of elementel analysis, FT-IR spectroscopy, 1H NMR, LC–MS, thermal analyses and magnetic suscebtibility measurements. Finally, metal ratios of the prepared complexes were determined using AAS. The complexes have also been characterized as disorted octahedral low-spin Fe(III) and Cr(III) bridged by catechol and COO? groups.  相似文献   

20.
手性Schiff Base-Ti(OR)4配合物催化醛的不对称硅腈化反应   总被引:2,自引:0,他引:2  
设计合成了新型手性Salen-Ti(OR)4配合物催化剂,用其催化一系列醛的不对称硅腈化反应,得到了e.e.值为22.4%~87.1%的氰醇.催化剂中抗衡离子的Lewis碱强烈地影响催化活性,但对反应的对映选择性影响很小,并探讨了其不对称催化反应机理.  相似文献   

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