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1.
用α-Keggin杂多阴离子XW12On-40与三芳基氢氧化锡Ar3SnOH反应,合成了四个三芳基锡杂多配合物{[Ar3Sn(CH3CH2OH)]+n[XW12O40]n-}·xH2O,通过元素分析、红外、核磁共振、X射线粉末衍射等手段对其进行了表征,提出了该类三维层柱超分子配合物的结构模型,并探讨了反应机理.  相似文献   

2.
过渡金属硫配合物可作为加氢脱硫 (HDS)和加氢脱氮 (HDN)过程的有效催化剂而倍受人们关注[1 - 3] 。这类配合物的催化活性、选择性和抗毒性与过渡金属的种类、配合物本身的立体结构和电子分布密切相关[4- 5] 。其中 ,钴的硫化物在HDS和HDN过程中有很好的催化活性。本文由二元金属羰合物Co2 (CO) 8和双 (硫代磷酸二异丙基酯 )二硫化物 (A) ,合成标题配合物Co〔S2 P(O -i-C3H7) 2 〕3(B) ,对配合物B进行XRD表征 ,并对反应机理进行初步探讨。反应式如下 :1 实验部分1 1 试剂与仪器苯和石油醚 (m .p .60~ 9…  相似文献   

3.
镧系含杂环胺三元配合物的研究从六十年代至今已进行了大量探索 ,但四元配合物的研究一直不多 ,并且由于联吡啶 (Bipy)的配位能力相对较弱 ,有关其四元配合物的研究报道更为少见[1~ 3] 。我们探索合成了 [Ln(C6 H5COO) 2 (NO3)(Bipy) ]2 ,且在合成过程中首次观察到了热力学与动力学竞争的现象。1 实验部分1 1 试剂和仪器稀土氧化物纯度超过 99.99% (上海跃龙有色金属有限公司 ) ,其余试剂均为分析纯。CarloErba 1 1 0 6型元素分析仪 ;DDS 1 1A型电导率仪 (1 .0× 1 0 -3mol·L-1DMF) ;日本岛津 47…  相似文献   

4.
本文用间羟基苯甲酸、邻菲口罗啉与碳酸稀土合成了四种新的固体三元配合物,通过元素分析、摩尔电导、红外光谱、X射线粉末衍射、差热-热重分析等手段,确定配合物的组成为:Ln(phen)L3,(Ln=La,Gd,Dy,Y;L=m-HO-C6H4COO-),并对配合物的某些性质进行了研究。  相似文献   

5.
本语文用间羟基苯甲酸、邻菲罗啉与碳酸稀土合成了四种新的固体三元配合物,通过元素分析,摩尔电导、红外光谱、X射线粉末衍射、差热-热重分析了等手段,确定配合物的组成为:Ln(phen)L2,(Ln=La,Gd,Gy,Y1L=m-HO-C6H4COO^-),并对配合物的某些性质进行了研究。  相似文献   

6.
Cp2 TiCl2 具有很好的抗癌活性 ,已成为第三代抗癌药物[1 - 3] 。为了寻求活性更高的抗癌药物 ,探索抗癌机理 ,我们用 (MeCp) 2 TiCl2 、水杨酸或其衍生物 ,按水相法合成了甲茂钛的水杨酸类配合物。合成路线如下图所示 :其中 :Ⅰ为pH <4 ,X =H ,Y =H的产物 ;Ⅱ为pH <4 ,X =H ,Y =NO2 的产物 ;Ⅲ为pH >6 ,X =NO2 ,Y =NO2 ,Z =O的产物 ;Ⅳ为pH >6 ,X =H ,Y =H ,Z =S的产物。 (Ⅰ~Ⅳ为新化合物 )1 实验部分1 .1 仪器与试剂水杨酸、TiCl4,AR ;5 -硝基水杨酸、3,5 -二硝基水杨酸、5 -磺基…  相似文献   

7.
吡啶-2-羧酸钴的CO加合性能与催化羰化合成苯乙酸研究   总被引:2,自引:2,他引:0  
吡啶羧酸与过渡金属离子形成的配合物是一类重要的均相氧化、羰化、聚酮反应催化剂 ,这些催化剂对CO、O2 、RCH =CH2 、RX、CH3OH等小分子均具有良好的活化功能 ,此类小分子均能在配合物分子中进行氧化加成插入、转位及还原消除等过程合成相应的有机化合物 ,其中吡啶 - 2 -羧酸钴对氧化羰化合成碳酸酯、聚酮显示出较好的催化活性[1,2 ] 。苯乙酸是医药、农药及香料合成的重要中间体 ,传统的合成路线为苯乙氰水解法。自本世纪 6 0年代以来 ,过渡金属配合物催化卤苄羰化合成苯乙酸的新方法引起了人们的极大兴趣。迄今 ,见诸文献…  相似文献   

8.
由于稀土元素镧与氨基酸形成的配合物具有抗癌、抗肿瘤活性 ,人们对稀土氨基酸配合物的研究产生了浓厚兴趣。有关这类配合物的制备和表征的研究较多[1~ 4] ,而对其热化学性质的研究较少。我们按文献[5] 方法合成了配合物La(Tyr)(Gly) 3Cl3·3H2 O(s) ,在自行研制的具有恒定温度环境反应热量计上 ,分别测定了La2 O3(s)、氨基酸 [L 酪氨酸 (Lyr) +甘氨酸 (Gly) ]和配合物在2mol·L- 1 HCl溶液中的溶解焓 ,通过设计的热化学循环得出配合反应焓 ,进而计算出La(Tyr)(Gly) 3Cl3·3H2 O(s)的标准摩尔…  相似文献   

9.
魏俊发  俞贤达 《分子催化》1998,12(4):271-278
设计合成了5种新型双核铜配合物,用EA,IR,UV-Vis,XPS,EPR等进行了结构表征,并研究了这些Cu2配合物模拟双核铜单加氧酶多巴胺β-羟化酶催化苯乙烯环氧化反应的特征。结果表明,这些配合物具有两种类型的结构:脱质子型Cu2LOH和非脱质子型「(Cu2H2LX)Y」Y(X=Y=Cl^1-,Br^-;X=OH,Y=O2ClO^-2),两类配合物可相互转化。非脱质子型配合物催化PhIO对苯乙烯  相似文献   

10.
稀土二茂铁甲酸配合物的研究   总被引:1,自引:0,他引:1  
合成了15种稀土元素的二茂铁甲酸配合物,对其进行了元素分析、质谱、溶液电导、X-射线粉末衍射、付立叶红外光谱的研究。结果表明配合物的组成为:(η ̄5C_5H_5Feη ̄5C_5H_4COO ̄-)_3·Ln·H_2O,(Ln=La~Lu及Y,pm除外),且均为类质同晶化合物,COO ̄-都以螯合方式与Ln ̄(3+)配位,在红外光谱中观察到明显的“Ln系效应”。  相似文献   

11.
The reactions of N-substituted hydroxylamines with alkenals serve as a method for the synthesis of the corresponding 2-substituted 3(5)-hydroxyisoxazolidines. The reaction pathway is determined by the nature of the substituent attached to the nitrogen atom. Ring-chain isomerism has been detected in these newly obtained compoundsTranslated from Khimiya Geterotsiklicheskikh Soedinenii, No. 9, pp. 1270–1276, September, 1987.  相似文献   

12.
13.
Triazenide [M(eta2-1,3-ArNNNAr)P4]BPh4 [M = Ru, Os; Ar = Ph, p-tolyl; P = P(OMe)3, P(OEt)3, PPh(OEt)2] complexes were prepared by allowing triflate [M(kappa2-OTf)P4]OTf species to react first with 1,3-ArN=NN(H)Ar triazene and then with an excess of triethylamine. Alternatively, ruthenium triazenide [Ru(eta2-1,3-ArNNNAr)P4]BPh4 derivatives were obtained by reacting hydride [RuH(eta2-H2)P4]+ and RuH(kappa1-OTf)P4 compounds with 1,3-diaryltriazene. The complexes were characterized by spectroscopy and X-ray crystallography of the [Ru(eta2-1,3-PhNNNPh){P(OEt)3}4]BPh4 derivative. Hydride triazene [OsH(eta1-1,3-ArN=NN(H)Ar)P4]BPh4 [P = P(OEt)3, PPh(OEt)2; Ar = Ph, p-tolyl] and [RuH{eta1-1,3-p-tolyl-N=NN(H)-p-tolyl}{PPh(OEt)2}4]BPh4 derivatives were prepared by allowing kappa1-triflate MH(kappa1-OTf)P4 to react with 1,3-diaryltriazene. The [Os(kappa1-OTf){eta1-1,3-PhN=NN(H)Ph}{P(OEt)3}4]BPh4 intermediate was also obtained. Variable-temperature NMR studies were carried out using 15N-labeled triazene complexes prepared from the 1,3-Ph15N=N15N(H)Ph ligand. Osmium dihydrogen [OsH(eta2-H2)P4]BPh4 complexes [P = P(OEt)3, PPh(OEt)2] react with 1,3-ArN=NN(H)Ar triazene to give the hydride-diazene [OsH(ArN=NH)P4]BPh4 derivatives. The X-ray crystal structure determination of the [OsH(PhN=NH){PPh(OEt)2}4]BPh4 complex is reported. A reaction path to explain the formation of the diazene complexes is also reported.  相似文献   

14.
Conclusions The mass and NMR spectra of haplophyllidine, perforine, and their derivatives have been studied. The influence of the open and cyclic forms of the molecular ion on the nature of the fragmentation has been discussed. The main routes of fragmentation of the compounds considered are due to the presence of substituents at C8 and C4.Khimiya Prirodnykh Soedinenii, Vol. 5, No. 4, pp. 273–279, 1969  相似文献   

15.
Aroyl- and acetylhydrazones of acet- (I) and benzaldehydes (IV) and benzoylhydrazones of acet- (II) and benzaldehydes (III) were studied by x-ray structural and quantum-chemical methods in order to establish their structures. Compund (I) was the EEZ structure in the crystal. Calculations and spectral data showed that the EEE form occurs in nonpolar solvents and in the gas phase. According to crystallographic data molecules (I)–(IV) are the E-isomers (relative to the N-N bond) and the hydrazone fragments are planar. Intermolecular N-H...O H-bonds from in the crystals. The data obtained suggest that the majority of acylhydrazones are conformationally rigid on dissolution although exceptions do occur. Apparently the reasons for the difference of acetyl- and benzoylhydrazones in electrocarboxylation reactions are electronic and not steric factors.Translated from Izvestiya Akademii Nauk SSSR, Seriya Khimicheskaya, No. 1, pp. 75–81, January, 1991.  相似文献   

16.
The values of activation parameters in uncured and cured epoxy resins, rubbers, and blends thereof are investigated. The dependences of activation energy and adhesion strength of epoxy-rubber compositions on rubber content are determined. The correlation of adhesion and activation energy values for polyurethane rubber and epoxy-rubber compositions is shown.  相似文献   

17.
Reaction of the proligand Ph2PN(SiMe3)2 (L1) with WCl6 gives the oligomeric phosphazene complex [WCl4(NPPh2)]n, 1 and subsequent reaction with PMe2Ph or NBu4Cl gives [WCl4(NPPh2)(PMe2Ph)] (2) or [WCl5(NPPh2)][NBu4] (3), respectively. DF calculations on [WCl5(NPPh2)][NBu4] show a W=N double bond (1.756 A) and a P-N bond distance of 1.701 A, which combined with the geometry about the P atom suggests, there is no P-N multiple bonding. Reaction of L1 with [ReOX3(PPh3)2] in MeCN (X = Cl or Br) gives [ReX2(NC(CH3)P(O)Ph2)(MeCN)(PPh3)](X = Cl, 4, X = Br, 5) which contains the new phosphorylketimido ligand. It is bound to the rhenium centre with a virtually linear Re-N-C arrangement (Re-N-C angle = 176.6 degrees, when X = Cl) and there is multiple bonding between Re and N (Re-N = 1.809(7) A when X = Cl). The proligand Ph2PNHNMe2(L2H) reacts with [(C5H5)TiCl3] to give [(C5H5)TiCl2(Me2NNPPh2)] (6). An X-ray crystal structure of the complex shows the ligand (L2) is bound by both nitrogen atoms. Reaction of the proligands Ph2PNHNR2[R2 = Me2 (L2H), -(CH2CH2)2NCH3 (L3H), (CH2CH2)2CH2 (L4H)] with [{RuCl(mu-Cl)(eta6-p-MeC6H4iPr)}2] gave [RuCl2(eta6-p-MeC6H4iPr)L] {L = L2H (7), L3H (8), L4H (9)}. The X-ray crystal structures of 7-9 confirmed that the phosphinohydrazine ligand is neutral and bound via the phosphorus only. Reaction of complexes 7-9 with AgBF4 resulted in chloride ion abstraction and the formation of the cationic species [RuCl(6-p-MeC6H4iPr)(L)]+ BF4- {(L = L2H (10), L3H (11), L4H (12)}. Finally, reaction of complex 6 with [{RuCl(mu-Cl)(eta6-p-MeC6H4iPr)}2] gave the binuclear species [(eta6-p-MeC6H4iPr)Cl2Ru(mu2,eta3-Ph2PNNMe2)TiCl2(C5H5)], 13.  相似文献   

18.
19.
朱劲波  马立群  梁飞  苗迎春  王立民 《应用化学》2015,32(11):1221-1230
Ti-V基储氢合金在室温、常压下即可表现出良好的储氢特性,且质量储氢容量明显高于传统AB5型储氢合金,从而在氢气的精制和回收、运输和储存及热泵等方面有较早的应用。 此外,在混合气体分离、核反应堆中处理氢的同位素、镍氢电池及燃料电池负极材料等方面也得到了广泛的研究与关注。 基于目前Ti-V基储氢合金的研究现状,概述了该类合金的优势、限制性因素(包括成因)及改性手段。 此外,为了进一步理解Ti-V基合金储氢机理、构建合金组分与储氢特性之间的对应关系,本工作重点围绕Ti-V基储氢合金及其氢化物的结构、组分优化设计展开综述,并对其未来研究方向做出展望。  相似文献   

20.
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