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1.
任宏江  刘艳 《化学通报》2013,(5):430-434
采用密度泛函B3LYP方法,在6-31+G**基组水平上对p-羟基苯丙酮酸质子转移引起的烯醇式-酮式互变异构反应机理进行了计算研究,获得了互变异构过程的反应焓、活化能、活化吉布斯自由能和质子转移反应的速率常数等参数。Onsager反应场溶剂模型用于水相和甲醇相的计算,计算结果表明,p-羟基苯丙酮酸无论在气相还是水相、甲醇相中,其酮式异构体都是最稳定的存在形式,烯醇式异构体也会以一定量共存。气相中孤立分子内质子转移几何构型改变较显著,异构化反应需要较大的活化能,不利于发生质子转移,Onsager模型计算方法对质子转移反应的影响较小。  相似文献   

2.
在密度泛函B3LYP/6-311G~(**)理论水平上,对气相和水相中2,6-硫代黄嘌呤各烯醇式与酮式水助质子互变异构体及其过渡态进行几何构型全自由度优化,获得它们在气相和水相中的几何结构和电子结构,PCM反应场溶剂模型用于水相计算.结果显示在气相和水相中,水参与反应降低了互变异构质子迁移的反应活化能,对互变异构质子迁移的反应起到催化作用,但是没有改变各异构体的稳定性顺序,其顺序为W1>W3>W2.进一步研究了2,6-硫代黄嘌呤各烯醇式与酮式水助质子互变异构的反应机理,提出了2,6-硫代黄嘌呤各烯醇式与酮式互变异构质子迁移的反应为平面六元环的过渡态结构.探讨了溶剂化效应对互变异构体的几何结构、能量、电荷分布以及互变异构反应活化能的影响等.  相似文献   

3.
本文通过从头算HF/6-31G(d)方法,对Schiff4-(2-羟基苯基)-亚氨基-戊-2-酮 进行了理论研究,提供了该化合物两种互变异构体的几何构型参数、电子结构、IR光谱性 、偶极矩数据,并借助热、动力学手段,分析了两种互变异构体的异构平衡过程。计算结果表明:(1)从几何构型、电子 结构和相对能量的角度考虑,由于较强的分子内氢键作用和较大的共轭体系,亚胺烯醇式更为稳定。(2)从分子极性的角度考虑,烯胺酮式具有较大的偶极矩,其较强的分子间作用力有利形成晶体,因而烯胺酮式以晶体的形式存在。(3)由烯胺酮式向亚胺烯醇式转化的互变异构反应是热力学自发反应,但受到较大活化能的控制,是一个动力学稳定体系。分析了极性溶剂存在的互变异构反应是热力学自发反应,但受到较大活化能的控制,是一个动力学稳定体系。分析了极性溶剂存在将有利于反应发生且标题化合物以亚胺烯醇式存在于极性溶剂中的作用。以上结论均与实验研究结果相符。  相似文献   

4.
采用密度泛函B3LYP方法,在6-31+G(d,p)基组水平上对二苯甲酰甲烷质子转移引起的酮式-烯醇式互变异构反应机理进行了计算研究,获得了零点能、总能量、吉布斯自由能及质子转移过程的反应焓、活化能、活化吉布斯自由能和速率常数等参数.3种非质子溶剂中的优化和频率计算采用Onsager模型进行计算.计算结果表明,不论在气相还是3种溶剂中,二苯甲酰甲烷的烯醇式较酮式稳定,烯醇式向酮式气相转变需要较高的活化能垒,在不同极性的溶剂中,随着溶剂介电常数的增大,异构化反应活化能垒减小,反应速率常数增大.  相似文献   

5.
采用密度泛函B3LYP方法,在6-311+G**基组水平上对胞嘧啶一水复合物质子转移引起的氨-酮式、氨-烯醇式与亚胺-酮式互变异构反应机理进行了计算研究,获得了互变异构过程的反应焓、活化能、活化吉布斯自由能和质子转移反应速率常数等参数。将Onsager反应场溶剂模型用于水相的计算,结果表明,胞嘧啶一水复合物无论在气相中...  相似文献   

6.
研究了11β-羟基或11β-甲氧基雌甾-4,9-二烯衍生物A环芳构化反应, 我们发现在质子溶剂中,酸催化能促进雌甾二烯衍生物转变成雌甾-1,3,5(10),9(11)-四烯.推测反应经过一个雌甾-4,9,11-三烯-3,17-二酮中间体机理. 这一机理通过进一步研究部分得到证实.碘同样可以催化这种芳构化.  相似文献   

7.
几种β-二酮化合物互变异构体的光谱性质研究   总被引:1,自引:0,他引:1  
合成了5种不同结构的β-二酮化合物,采用电喷雾质谱、紫外光谱、红外光谱和核磁共振法对其结构进行表征,并讨论了它们的酮式-烯醇式互变异构现象.结果表明,β-二酮分子内酮式-烯醇式的互变异构平衡明显受取代基影响,它们的酮式-烯醇式互变异构体含量完全不同.在固态和CDCl3溶液中,其中2种β-二酮化合物(a1,a2)中主要以烯醇形式存在,仅含有少量的酮式结构;而2种α-取代β-二酮(b1,b2)由于烯醇异构体的空间位阻效应,不能以分子内氢键形成烯醇六元环,全部以酮式结构形式存在;另外,由于强吸电子基团-CF3的作用,使得β-二酮(c)全部以烯醇形式存在.  相似文献   

8.
王万辉  杨亚静  李阳  包明 《分子科学学报》2020,(2):153-159,I0005
通过密度泛函理论研究了PPh3催化苯胺、苯甲醛和乙酰乙酸乙酯三组分Mannich反应的机理.计算结果表明该机理主要分3个步骤进行:PPh3催化乙酰乙酸乙酯发生酮式-烯醇式互变异构得到烯醇;烯醇辅助苯胺和苯甲醛缩合并脱水生成亚胺;亚胺和烯醇通过加成反应生成β-氨基羰基化合物.通过详细的机理研究,发现烯醇从亚胺的背面进攻其亲电C原子的过渡态的相对能量更低,容易得到反式的产物,对实验观察到的非对映选择性进行了合理的解释.  相似文献   

9.
3-X-2(1H)-吡啶酮互变异构体系的理论计算   总被引:2,自引:0,他引:2  
2(1H)-吡啶酮类化合物常呈现出诱人的生物活性[1,2].由于酮式和烯醇式结构具有互变异构化性质,因此确定其互变异构平衡体系中的优势结构及研究取代基对平衡体系的影响,对阐明该类化合物的生物活性及进行构效关系的研究有着重要的意义.当其3-位含有可与2-位羰基或2-位羟基形成分子内氢键的基团时,势必对互变异构平衡产生影响.基于该类化合物的互变异构平衡有着强烈的溶剂效应[3],本文对3-X-2(1H)-吡啶酮(X=NO2,NH2,COOH)及其烯醇式互变异构体分别在气相和溶液中进行了理论计算,考察了…  相似文献   

10.
5-氯尿嘧啶质子转移异构化的密度泛函理论研究   总被引:2,自引:0,他引:2  
采用密度泛函B3LYP/6-311+G**方法,对5-氯尿嘧啶分子内质子转移及水助催化质子转移引起的互变异构反应机理进行了计算研究,获得了互变异构过程的反应焓、活化能、活化吉布斯自由能和质子转移反应的速率常数等参数。计算结果表明,5-氯尿嘧啶无论是孤立分子还是一水合物,其双酮式CU1是最稳定异构体,由双酮式向烯醇式异构化找到3条通道(P1,P2,P3),各通道速控步骤的活化能分别为177.85、177.05和197.58kJ/mol。当水分子参与反应以双质子转移机理异构化时,活化能显著降低,各通道速控步骤的活化能依次降为66.24、69.36和77.85kJ/mol,有利于双酮式向烯醇式或酮醇式转变。计算结果还表明,氢键作用在增大5-氯尿嘧啶一水复合物稳定性、降低质子转移异构化反应活化能等方面起着重要作用。  相似文献   

11.
The enol ether-olefin ring-closing metathesis reaction has been employed to generate 2,3-dihydrofurans that are equipped with a leaving group. These substrates are at the correct oxidation state to undergo an acid-catalyzed aromatization, and this strategy has been utilized to provide a mild and rapid route (four steps) to a range of novel 2,5-disubstituted furans. [reaction: see text]  相似文献   

12.
Iodine was found to be an efficient catalyst for the imino Diels-Alder reaction of N-arylimine with enol ethers toprovide tetrahydroquinolines in good yields.The influence of the loading of iodine,reaction solvent,the structure ofimine and enol ethers was studied.One pot synthesis of tetrahydroquinolines from aldehyde,aniline and enol etherscatalyzed by iodine was also applicable and provided tetrahydroquinolines in comparable yields.Mild reaction con-ditions,facile experimental procedure,low price of iodine and good yield of products render this new method at-tractive for practical synthesis of many tetrahydroquinoline derivatives.  相似文献   

13.
The photochromic mechanism of 1-phenyl-3-methyl-4-(6-hydro-4-amino-5-sulfo-2,3- pyrazine)-pyrazole-5-one has been investigated using the density functional theory(DFT). The solvent effect is simulated using the polarizable continuum model(PCM) of the self-consistent reaction field theory. According to the crystal structure of the title compound, an intramolecular proton transfer mechanism from enol to keto form was proposed to interpret its photochromism. Bader's atom-in-molecule(AIM) theory is used to investigate the nature of hydrogen bonds and ring structures. Time-dependent density functional theory(TDDFT) calculation results show that the photochromic process from enol to keto form is reasonable. The conformation and molecular orbital analysis of enol and keto forms explain why only intramolecular proton transfer is possible. The results from analyzing the energy and dipole moments of enol form, transition state and keto form in the gas phase and in different solvents have been used to assess the stability of the title compound.  相似文献   

14.
The tautomerism of 2-ethoxycarbonyl-3-oxoquinuclidine and 2-ethoxycarbonyl-3-oxobenzo-[b]quinuclidine was investigated by means of IR and UV spectra and potentiometric titration. It was found that tautomeric equilibrium between the ketone, enol, and internally ionized forms is realized for 2-ethoxycarbonyl-3-oxoquinuclidine, and the position of the equilibrium is determined by the aggregate state of the substance and the nature of the solvent. The internally ionized form predominates in the crystals and in polar solvents (alcohol and water), while the ketone and enol forms are the primary ones in solvents of low polarity (chloroform and dioxane), and the percentage of the ketone form is always larger than that of the enol form. In contrast to this, 2-ethoxycarbonyl-3-oxobenzo[b]quinuclidine exists practically completely as the keto form in crystals and solutions.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 2, pp. 229–233, February, 1972.  相似文献   

15.
Pd(0)-catalyzed conjugate addition of benzylzinc chloride to methyl vinyl ketone in the presence of chlorotrimethylsilane and lithium chloride in an atmosphere of carbon monoxide at room temperature afforded 1-phenyl-2,5-hexanedione monosilyl enol ether. In this catalytic carbonylation, four components are connected in one reaction. Successive acidic workup generated a variety of 1,4-diketones from substituted benzylzinc chlorides or related compounds and alpha,beta-enones. Some products were converted to cyclopentenones or five-membered heterocyclic compounds containing an N, O, or S atom.  相似文献   

16.
We report the effects of protonation on the structural and spectroscopic properties of 1,4-dimethoxy-2,5-bis(2-pyridyl)benzene (9) and the related AB coploymer poly(2,5-pyridylene-co-1,4-[2,5-bis(2-ethylhexyloxy)]phenylene) (7). X-ray crystallographic analysis of 9, 1,4-dimethoxy-2,5-bis(2-pyridyl)benzene bis(formic acid) complex 10, and 1,4-dimethoxy-2,5-bis(2-pyridinium)benzene bis(tetrafluoroborate salt) (11) establishes that reaction of formic acid with 9 does not form an ionic pyridinium salt in the solid state, rather, the product 10 is a molecular complex with strong hydrogen bonds between each nitrogen atom and the hydroxyl hydrogen in formic acid. In contrast, reaction of 9 with tetrafluoroboric acid leads to the dication salt 11 with significant intramolecular hydrogen bonding (N-H.O-Me) causing planarization of the molecule. The pyridinium and benzene rings in 11 form a dihedral angle of only 3.9 degrees (cf. pyridine-benzene dihedral angles of 35.4 degrees and 31.4 degrees in 9, and 43.8 degrees in 10). Accordingly, there are large red shifts in the optical absorption and emission spectra of 11, compared to 9 and 10. Polymer 7 displays a similar red shift in its absorption and photoluminescence spectra upon treatment with strong acids in neutral solution (e.g. methanesulfonic acid, camphorsulfonic acid, and hydrochloric acid). This is also observed in films of polymer 7 doped with strong acids. Excitation profiles show that emission arises from both protonated and nonprotonated sites in the polymer backbone. The protonation of the pyridine rings in polymer 7, accompanied by intramolecular hydrogen bonding to the oxygen of the adjacent solubilizing alkoxy substituent, provides a novel mechanism for driving the polymer into a near-planar conformation, thereby extending the pi-conjugation, and tuning the absorption and emission profiles. The electroluminescence of a device of configuration ITO/PEDOT/polymer 7/Ca/Al is similarly red-shifted by protonation of the polymer.  相似文献   

17.
Enol esters can be epoxidized with high enantioselectivities using the fructose-derived chiral ketone 1 as catalyst and Oxone as oxidant. A detailed study of enantiomerically enriched enol ester epoxides has revealed that the acid-catalyzed rearrangement can proceed through two distinct pathways, one with retention of configuration and the other with inversion. The competition between the two pathways is highly dependent upon the nature of the acid catalyst. A strong acid favors retention of configuration and a weak acid favors inversion of configuration. Under thermal conditions, these epoxides rearrange highly stereoselectively with inversion of configuration. Either enantiomer of an alpha-acyloxy ketone can be formed from one enantiomer of an enol ester epoxide by judicious choice of reaction conditions.  相似文献   

18.
A route was proposed to synthesize 3-benryl-glyceric acid (3-BGA) as an important intermediate for the synthesis ofa novel six-membered cyclic ester monomer - 3-benzyloxymethyl-1,4-dioxane-2,5-dione (3-BMG). According to this route,3-BGA was obtained from ring-opening reaction of benzyl alcohol with methyl glycidate, which was prepared from theepoxidation of methyl acrylate using sodium hypochlorite as the oxidant.  相似文献   

19.
2-(methylthio)-1,4-diaryl-2-butene-1,4-dione (3) are prepared from readily available aryl methyl ketones in the presence of copper(II) oxide, iodine, and dimethyl sulfoxide. The success of the cross-coupling reaction of 4-chloroacetophenone with 2-acetylthiophene confirms a proposed self-sorting tandem reaction mechanism. Both Z- and E-isomers of compound 3 are readily converted into the corresponding 3-methylthio 2,5-diaryl furan 7 in good yield through a domino process involving the reduction of the double bond followed by the Paal-Knorr furan synthesis. Meanwhile, 4-bromo-3-methylthio 2,5-diaryl furan 10 is obtained either by the treatment of furan 7 with molecular bromine or by the treatment of diketone 3 with 30% hydrogen bromide in acetic acid solution in one pot. Removal of the methylthio group is accomplished by the treatment of 7 with Raney Ni in ethanol, which affords the diaryl-substituted furan 11 in excellent isolated yield. Selective reduction of the double bond of compound 3 leads to the formation of the saturated 1,4-diketone 13, which is easily converted to the corresponding 3-methylthio-2,5-diaryl-substituted pyrrole 14 and thiophene 15 via the Paal-Knorr cyclization reaction.  相似文献   

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