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101.
合成了一种新的含有3个配体的稀土配合物Eu(TTA)2(N-HPA)Phen(TTA-噻吩甲酰基三氟丙酮,N—HPA=N-苯基邻氨基苯甲酸,phen=邻菲咯啉)。将稀土配合物作为掺杂物与基质PVK按照不同质量比混合共溶,旋涂成膜。通过荧光光谱,分析了薄膜的发光特性,并将其应用于有机电致发光。研究了PVK和Eu(TTA)2(N—HPA)Phen之间的能量传递,并且制备了发光层为PVK:Eu(TTA)2(N—HPA)Phen,结构为ITO/PVK:Eu(TrA)2(N—HPA)Phen/BCP/Alq3/Al的多层器件,发现改变PVK和稀土配合物的掺杂比,可以不同程度地抑制PVK的发光,最终得到纯的Eu^3+的红色发光。实验结果证明,在PVK:Eu(TTA)2(N—HPA)Phen=5:1的质量比下,从PVK到稀土配合物之间存在充分的能量传递。  相似文献   
102.
A new Co(II) complex with tridentate Schiff base ligand with a N,N,O donor set has been synthesized and characterized by single X-ray technique and spectroscopic techniques. The thermochemical properties have been studied. X-ray structure analysis of the title compound Co(II)L2 [HL = 2-methyl-6-(2′-hydroxybenzylideneamino) pyridine] shows that the polyhedron around Co(II) is a distorted tetrahedron, and the self-assembly via intermolecular π-π interactions leads to a three-dimensional network. Crystal data for the title complex C26H22CoN4O2: Monoclinic, space group Ia, a = 11.741(7) Å, b = 8.149(5) Å, c = 22.764(16) Å, β = 98.530(12)°, V = 2154(2) Å3, Z = 4.  相似文献   
103.
Mixed-ligand NiIII complexes with -nitroso--naphthol, -nitroso--naphthol,o-ethylxanthate, andN,N-diethyldithiocarbamate as ligands have been studied by ESR in liquid and frozen solutions. The degrees of symmetry distortion for the first coordination sphere of these complexes have been determined. It is shown that the transition from planar square NiIIL2 complexes to more stable octahedral NiIIIL2L and NiIIILL2 complexes occursvia the radical addition mechanism. A method for trapping short-lived radicals is suggested on the basis of the complex formation scheme.Translted fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 8, pp. 1513–1515, August, 1995.The work was financially supported by the Russian Foundation for Basic Research (Project No. 93-03-5050)  相似文献   
104.
105.
血小板阻聚药物中间体N-环己基-5-氯丁基-1H-四氮唑的合成   总被引:1,自引:0,他引:1  
以δ-戊内酯和环己胺为原料合成了抗血小板聚集药物西洛他唑的重要中间体N-环己基-5-氯丁基-1H-四氮唑,选择了合适的相转移催化剂及安全的叠氮试剂并获得较高的收率。  相似文献   
106.
Synthesis and Crystal Structure of Bis(1,2-dimetyl-5-nitro-imidazole)dichlorocobalt(II) Bis(1,2-dimethyl-5-nitro-imidazol)dichlorocobalt(II) was obtained by reaction of CoCl2 · 6 H2O with 1,2-dimethyl-5-nitro-imidazole in methanol. The compound forms blue crystals which were characterized by IR and UV-vis spectroscopy and by an X-ray crystal structure determination. Co(C5H7N3O2)2Cl2: tetragonal, space group I4 2d, Z = 8, a = 1142.1(1) pm, c = 2577.3(2) pm. R = 0.036 for 670 independent reflexions. The Co atom is tetrahedrally surrounded by two chlorine and two N atoms at distances of 222.8(2) and 203.5(4) pm.  相似文献   
107.
The reaction of Os3(CO)10(NCMe)[Si(OMe)3](-H),1, with PMe2Ph yielded the new complex Os3(CO)10(PMe2Ph)[Si(OMe)3](-H),2 by substitution of the MeCn ligand with the phosphine ligand. When heated to 125°C compound2 was decarbonylated and transformed into the new unsaturated cluster complex Os3(CO)8[-PMe2(C6H4)][Si(OMe)3](-H)2,3 in 54% yield. Compound3 was characterized by a single crystal X-ray diffraction analysis, osmium bonds. The phenyl ring of the phosphine ligand has undergoneortho-metallation by a neighboring metal atom. A terminally coordinated Si(OMe)3 ligand is coordinated to the third osmium atom. The cluster is unsaturated by the amount of 2 electrons, and there is an open coordination site on the siloxyl substituted osmium atom that is partially filled by a weak interaction with one of the -bonds of theortho-metalled phenyl ring. Complex3 reacts with CO at 1 atm to reform compound2 in 85% yield in 5 h at 40°C. Crystal Data: for3: space group = P21/n,a = 9.911(2) Å,b = 18.451(6) Å,c = 14.872(2) Å, = 95.64(2)°,Z = 4, 1994 reflections,R = 0.028.  相似文献   
108.
1INTRoDUCTIONThetitlecompoundhasbeenfoundtobeaveryefficientchiralligandusedtoco-ordinatewithpalladiumformingcatalystsystemsforasymmetrichydroesterificationofnorborneneandstyrene.Intheseasymmetriccatalyticreactions,thechiralinduc-tionofthetitlecompoundisratherstronggivingveryhighoptica1yields(>9o%)ofproductstl3.Inordertostudytherelationshipoftheperformanceandthestructureofthisligand,itisimportanttodeterminethemolecularstructureofthechiraldiphos-phinecompound,whichwaspreparedbytheliteraturem…  相似文献   
109.
The intermolecular Pauson-Khand reaction between norbornene and dicobalt carbonyl complexes of phenylacetylene substituted with chiral phosphorus ligands has been investigated. High yields (?98%) and enantiomeric excesses of up to 56% have been observed.  相似文献   
110.
In this work, 4-diethanolaminomethyl styrene (DEAMSt) monomer was prepared by modification of 4-chloromethyl styrene with diethanolamine. The homopolymerization of styrene modificated was carried out by free radical polymerization method at 60?°C in presence of 1,4-dioxane and AIBN. The metal complexes were prepared by reaction of the homopolymer used as ligand P(DEAMSt)Ll and Ni(II), Co(II) metal ions in presence of ethanol and dilute NaOH at 65?°C for 48?h in pH 6.

The structure of modificated monomer, homopolymer used as ligand and polymer-metal complexes were characterized by (FT-IR), 1H-NMR, 13C-NMR, Raman spectroscopy tecniques, elemental analysis, SEM, XRD and magnetic measurements. Their geometric structures according to magnetic measurements of Co(II) and Ni(II) complexes were estimated that have a tetrahedral structure. P(DEAMSt)Ll polymer has a transition state between amorphous and crystalline, whereas metal complexes (Co(II) and Ni(II) are with a large crystal structure. The molecular weight of P(DEAMSt)L1 homopolymer was determined by gel permeation chromatography (GPC). The glass transition temperature (Tg) of homopolymer was measured by differantial scanning calorimeter (DSC). The thermal behaviors of both ligand and polymer-metal complexes were investigated by thermogravimetric analysis (TGA) and (DTA). The results obtained were compared with each other. Then, the dielectrical measurements (dielectric constant, dielectric loss and conductivity) of the ligand and polymer-metal complexes were investigated as a function of temperature and frequency. The activation energies (Ea) of the ligand and metal complexes were determined from the conductivity measurements.  相似文献   

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