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1.
测定了meso-和dl-2,3-二氰基-2,3-二(p-X苯基)丁二酸二乙酯(X=OCH3,CH3,H,Cl,NO2)的^13C NMR谱。结果表明,,中心碳-碳键两端相连基团的各碳原子的化学位移值相同,与dl-异构体相比,所有相应meso-异构体的乙氧羰基^13C NMR吸附峰均处于高场,苯环对位取代基的Hammett基团常数σ与氰基碳原子和乙氧羰基中的羰基碳及次甲基碳的化学位移间线性相关,而且meso-异构体比dl-异构体有更好的线性关系。  相似文献   

2.
测定了2,3-二氰基-2,β-二苯基丁二酸二乙酯meso-异构体熔融相的热异构化反应动力学及苯环对位为X(X=OCH3,CH3,H,Cl,NO2)的相应二乙酯反应中间体自由基的EPR谱,自由基的结构由计算机模拟确定.结果表明,在实验温度范围内,平衡常数随温度的升高而降低.热力学数据为:ΔHdl-meao= - 18.02 kJ/mol, ΔSdl-meao= - 26.51 J/mol·K, ΔH = 151.78 kJ/mol, ΔS = 71.64 J/mol·K.反应机理是内消旋体的中心碳-碳键发生均裂,生成α-氰基-α-乙氧甲酰基-P-X取代苄基自由基,再重新结合时发生异构化,生成dl-异构体.  相似文献   

3.
合成了2,3-二氰基-2,3-二(p-X苯基)丁二酸二乙酯(X=OCH3,CH3,Cl,NO2),分离出它们的meso和dl异构体。经元素分析、1HNMR、IR、MS和X射线晶体结构分析确定了各异构体的结构和构型。在100℃测定了各异构体在苯乙烯中的分解速率常数kd,结果表明,除X=OCH3外,meso异构体的kd均比dl异构体的大,除X=NO2外,苯环对位取代基对kd的影响顺序为OCH3>CH3>Cl>H,  相似文献   

4.
测定了meso和dl 2,3-二氰基-2,3-二(p-X苯基)丁二酸二乙酯(X=OCH_3,CH_3,H,Cl,NO_2)的~1H NMR谱及X为CH_3相应二乙酯的~1H Noesy谱。在meso和dl异构体中,苯环m-~1H的化学位移与p-X的Hammett基团常数σ呈线性关系,c~1H的化学位移仅受分子构型的影响,;△δdl-meso为负值,乙氧基中CH_2和CH_3的质子化学位移也只受分子构型的影响,△δdl-meso均为正值。  相似文献   

5.
以X射线晶体结构分析方法测定了2,3-二氰基-2,3-二(p-X 取代苯基)丁二酸二乙酯(X=OGH_3,CH_3和 Cl)的两种异构体的晶体结构和分子结构.确定了高熔点者为 dl-异构体,低熔点者为meso-异构体.观察到的重要结构信息是,这些分子内存在着显著的空间阻碍,中心 C—C 键的键长有明显的键长增长效应,而且 meso-异构体的键长增长效应比 dl-异构体更大.  相似文献   

6.
杨第伦  齐陈泽  祝英  王欣  刘有成 《化学学报》1991,49(12):1457-1466
以X射线晶体结构分析方法测定了2,3-二氰基-2,3-二(p-X取代苯基)丁二酸二乙酯(X=OCH~3,CH~3和Cl)的两种异构体的晶体结构和分子结构。确定了高熔点者为dl-异构体,低熔点者为meso-异构体。观察到的重要结构信息是,这些分子内存在着显著的空间阻碍,中心C-C键的键长有明显的键长增长效应,而且meso-异构体的键长增长效应比dl-异构体更大。  相似文献   

7.
meso-和dl-2.3-二氰基-2,3-二(p-X取代苯基)丁二酸二乙酯(X=OCH_3,CH_3,H,Cl和NO_2),除X为NO_2以外,都是乙烯基单体自由基聚合反应的有效引发剂。这些异构体分别在苯乙烯中的热分解动力学研究结果表明,meso-异构体的中心C-C键均裂活性大于相应dl-异构体的活性。为了用IR谱来  相似文献   

8.
合成了2,3-二氰基-2,3-二(p—X苯基)丁二酸二乙酯(X=OCH_3,CH_3,Cl,H和NO_2),分离出它们的meso-和dl-异构体,分别对这些异构体的分子结构和构型进行了鉴定,测定了它们分子的中心C—C键均裂反应动力学及其对苯乙烯等的引发作用。  相似文献   

9.
研究了一种关于meso-四苯基-2,3-二氢卟啉-2,3-二醇的避免使用昂贵且剧毒的四氧化锇的合成方法,整个合成过程中所用试剂廉价易得,反应操作简单.该合成方法可同时得到顺、反两种目标产物异构体.  相似文献   

10.
合成并分离得到7对1-取代-3-三甲硅基环己醇的顺、反异构体,它们的结构通过1HNMR、13CNMR、MS谱及GC(测其纯度)测定,利用13CNMR确定了各对顺、反异构体的构型.评定了各化合物的香气,大部分化合物具有甜香或甜香与木香香气,其中(反)-1-正丁基-3-三甲硅基环己醇具有甜香和木香香气,香气透发,留香持久,质量上乘.  相似文献   

11.
LnCl3 (Ln=Nd, Gd) reacts with C5H9C5H4Na (or K2C8H8) in THF (C5H9C5H4 = cyclopentylcyclopentadienyl) in the ratio of 1 : to give (C5H9C5H4)LnCl2(THF)n (orC8H8)LnCl2(THF)n], which further reacts with K2C8H8 (or C5H9C5H4Na) in THF to form the litle complexes. If Ln=Nd the complex (C8H8)Nd(C5H9C5H4)(THF)2 (a) was obtained: when Ln=Gd the 1 : 1 complex [(C8H8)Gd(C%H9)(THF)][(C8H8)Gd(C5H9H4)(THF)2] (b) was obtained in crystalline form.

The crystal structure analysis shows that in (C8H8)Ln(C5H9C5H4)(THF)2 (Ln=Nd or Gd), the Cyclopentylcyclopentadieny (η5), cyclooctatetraenyl (η8) and two oxygen atoms from THF are coordinated to Nd3+ (or Gd3+) with coordination number 10.

The centroid of the cyclopentadienyl ring (Cp′) in C5H9C5H4 group, cyclooctatetraenyl centroid (COTL) and two oxygens (THF) form a twisted tetrahedron around Nd3+ (or Gd3+). In (C8H8)Gd(C5H9C5H4)(THF), the cyclopentyl-cyclopentadienyl (η5), cyclooctatetraenyl (η8) and one oxygen atom are coordinated to Gd3+ with the coordination number of 9 and Cp′, COT and oxygen atom form a triangular plane around Gd3+, which is almost in the plane (dev. -0.0144 Å).  相似文献   


12.
胡仁志  张群  陈旸 《物理化学学报》2010,26(10):2619-2624
运用脉冲激光光解-激光诱导荧光(PLP-LIF)的方法研究了C2(a3Πu)自由基与若干不饱和碳氢化合物(C2H4(k1),C2H2(k2),C3H6(k3)和2-C4H8(k4))气相反应的温度效应.在298-673 K的温度范围内,获得了这些反应的双分子反应速率常数.获得的速率常数可以用Arrhenius公式表达如下:k1(T)=(4.53±0.05)×10-11exp[(196.41±5.20)/T],k2(T)=(3.94±0.04)×10-11exp[(143.04±4.28)/T],k3(T)=(7.96±0.17)×10-11exp[(185.10±8.86)/T],k4(T)=(1.04±0.02)×10-10exp[(180.34±7.67)/T],误差为±2σ.由获得的双分子反应速率常数及其所呈现的负温度效应,在298-673 K温度范围内,C2(a3Πu)自由基和这些不饱和碳氢化合物的反应遵循加成机理.  相似文献   

13.
The reaction of LnCl_3 with K _9H_7(C_9H_7=indenyl)andK_2C_8H_8(C_8H_8=cyclooctatetraene)in tetrahydrofuran(THF)give thecorresponding complexes(η~5-C_9H_7)Ln(η~8-C_8H_8)·2THF.The synthesis of(η~5-C_9H_7)Ln(η~8-C_8H_8)·2THF(Ln=Pr,Nd)and crystal structure of(η~5-C_9H_7)Pr(η~8-C_8H_8)·2THF are described.  相似文献   

14.
A Golobi   B &#x;tefane  S Polanc 《Polyhedron》1999,18(27):8296-3668
Two new cobalt complexes: Co3(NO2)4(NH2CH2CH2O)4·H2O (1) and (NH2(C6H11)2)3[Co2(NO2)8OH]·3H2O (2) and the compound (NH2(C6H11)2)NO2 (3) were synthesised and their structures have been determined using single-crystal X-ray diffraction. Compound 1 consists of two centrosymmetrical trinuclear complexes and a water molecule of crystallization. Ligands coordinated to Co atoms are nitro and aminoethanolato groups. Structure 2 is built up of biscyclohexylammonium cations, dinuclear anions with hydroxo and nitro groups coordinated to Co atoms and water molecules. The coordination of Co atoms in both structures is roughly octahedral.  相似文献   

15.
The synthesis, spectroscopic, and crystal structures of three heteroleptic thioether/halide platinum(II) (Pt(II)) complexes of the general formula [Pt(9S3)X2] (9S3=1,4,7-trithiacyclononane, X=Cl, Br, I) are presented. All three 9S3/dihalo complexes form very similar structures in which the Pt(II) center is surrounded by a cis arrangement of two halides and two sulfur atoms from the 9S3 ligand. The third sulfur from the 9S3 forms a long distance interaction with the Pt center resulting in an elongated square pyramidal structure with a S2X2+S1 coordination geometry. The distances between the Pt(II) center and axial sulfur shorten with larger halide ions (Cl=3.260(3) Å>Br=3.243(2) Å>I=3.207(2) Å). These distances are consistent with the halides functioning as π donor ligands, and their Pt---S axial distances fall intermediate between Pt(II) thioether complexes involving π acceptor and σ donor ligands. The 195Pt NMR chemical shift values follow a similar trend with an increased shielding of the platinum ion with larger halide ions. The 9S3 ligand is fluxional in all of these complexes, producing a single carbon resonance. Additionally, a related series of homoleptic crown thioether complexes have been studied using 195Pt NMR, and there is a strong correlation between the chemical shift and complex structure. Homoleptic crown thioethers show the anticipated upfield chemical shifts with increasing number of coordinated sulfurs. Complexes containing four coordinated sulfur donors have chemical shifts that fall in the range of −4000 to −4800 ppm while a value near −5900 ppm is indicative of five coordinated sulfurs. However, for S4 crown thioether complexes, differences in the stereochemical orientation of lone pair electrons on the sulfur donors can greatly influence the observed 195Pt NMR chemical shifts, often by several hundred ppm.  相似文献   

16.
空气的尘埃中含有一种核苷酸降解酶,这种酶很容易被溶液中痕量的Mg2+等金属离子激活,从而使溶液中的DNA或RNA解链或失活.因而用NMR方法研究核酸的溶液结构时,需要在磷酸缓冲溶液中加入乙二胺四乙酸(EDTA)或其钠盐,保持其浓度大于0.1mmol/L[1~3],利用EDTA与包括Mg2+在内的众多金属离子的强络合作用,解除Mg2+等金属离子对核苷酸降解酶的激活功能,达到保护核酸活性的目的.  相似文献   

17.
Chiralityduetoalkylbranchingisabundantamongseveralnaturallyoccurringsecondarymetabolites .Thisstructurefeatureisparticularlypredominantamonginsectpheromones[1] ,manyofwhichareofeconomicsignificance .Asaresult,aconsiderableefforthasbeenmadetosynthesizethem…  相似文献   

18.
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   

19.
Synthesis and Characterization of Zinc Succinate, Zn(C4H4O4)   总被引:3,自引:0,他引:3  
Introduction  Succinateion (C4H4O4) 2 -(—OOCCH2 CH2 COO— )isaversatileligandsinceeachofthefourterminalcarboxyloxygensisabletoparticipateincoordinationtocentralmetalatom(s)inadditiontotheflexibilityoftheC—Cbone .Suchcoordinatingversatilityhasbeenreflectedinseve…  相似文献   

20.
Reaction of the incompletely condensed silsesquioxane derivative Cy7Si7O9(OH)3 (1) with Ti(OEt)4 affords the dimeric titanasilsesquioxane [(Cy7Si7O12)Ti(μ-OEt)(EtOH)]2 (13) in 81% yield. The known titanasilsesquioxane [Cy7Si7O11(OSiMe3)]2Ti (18) has been prepared through a modified procedure starting from titanium tetraalkoxides. Novel oxotitanium silsesquioxane derivatives are obtained from reactions of titanocene dihalides with Cy7Si7O9(OH)2(OSiMe3) (14). Cp2TiCl2 yields dinuclear (μ-O)[{Cy7Si7O11(OSiMe3)}TiCp]2 (19), while with Cp*2TiCl2 the trinuclear titanacycle Cp*2Ti3O3[Cy7Si7O11(OSiMe3)]2 (20) is obtained. In addition, a new synthetic route to model compounds for titanium catalysts immobilized on silica has been developed. Disilylated Cy7Si7O9(OH)(OSiMe3)2 (15) cleanly reacts with the ‘tucked-in’ fulvene complex Cp*Ti(C5Me4CH2) to give the titanium(III) silsesquioxane Cp*2Ti[Cy7Si7O10(OSiMe3)2] (21). In a similar manner treatment of Cp*Ti(C5Me4CH2) with Cy7Si7O9(OH)2(OSiMe3) (14) affords the mono(pentamethylcyclopentadienyl) complex Cp*Ti[Cy7Si7O11(OSiMe3)][Cy7Si7O10-(OH)(OSiMe3)] (22) which is an advanced model compound for a catalytically active titanium center on a silica surface. The molecular structures of these titanium silsesquioxane derivatives have been determined by X-ray diffraction analyses.  相似文献   

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