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1.
为了探索3,6-二羟基哒嗪分子醇式和酮式结构互变异构化的反应机理,本研究组采用DFT B3LYP/6-311+G(d)方法对标题化合物异构化反应的势能面进行了研究,在探讨各种可能的反应途径中,发现至少有34种异构体和43种过渡态.结果表明,6-羟基-3(2H)-哒嗪酮不论是单体,与水形成配合物,还是二聚体,比其相对应的异构体能量低,表明在通常情况下是以6-羟基-3(2H)-哒嗪酮形式稳定存在的,这与前人通过实验数据对互变异构体的比率进行预测的结果是一致的;在考察的可能反应途径中,直接进行的分子内质子转移过程需要的活化能为142.2 kJ·mol-1,水助催化时,反应活化能为41.3 kJ·mol-1,考虑溶剂效应后,其活化能为59.2 kJ·mol-1,二聚体双质子转移的活化能为16.8 kJ·mol-1,二聚体双质子转移所需活化能最低,在室温下就可以进行.由此可见氢键在降低反应活化能方面起着重要的作用.  相似文献   

2.
为了探索2-(2-羟基苯亚甲基胺)-4,6-二羟基-嘧啶(M1)分子醇式和酮式结构互变异构化的反应机理,利用密度泛函理论(DFT)方法,在B3LYP/6-311+G(d,p)基组水平上,对M1化合物异构化反应的势能面进行了研究,在探讨各种可能的反应途径中,发现单体至少有8种异构体和10种过渡态.结果表明:2-(2-羟基苯亚甲基胺)-6-羟基-4(3H)嘧啶酮(M6)不论是单体、与水形成的配合物,还是二聚体,比其相对应的异构体能量低,表明在通常情况下是以M6形式稳定存在的;在考察的可能反应途径中,直接进行的分子内质子转移过程需要的活化自由能为143.8 kJ· mol-1,水助催化时,反应的活化自由能为38.9 kJ· mol-1,二聚体双质子转移的活化自由能为0.6 kJ·mol-1,二聚体双质子转移所需活化自由能最低,在室温下就可以进行,由此可见氢键在降低反应活化能方面起着重要的作用.  相似文献   

3.
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   

4.
采用密度泛函B3LYP/6-311G**方法,对3-卤(-F、-Cl、-Br)代吡唑几何构型进行了全自由度优化,获得了它们的几何结构和电子结构。计算结果显示,N1-H型的稳定性大于N2-H型。计算并考察了3-卤代吡唑进行结构互变的质子转移过程的四种可能途径:(a)分子内质子转移;(b)水助质子转移;(c)同种二聚体双质子转移;(d)异种二聚体双质子转移。计算结果表明(以3-氟代吡唑为例),途径d所需要的活化能最小(54.89 kJ/mol),而途径a所需要的活化能最大(198.83kJ/mol),途径b和c的活化能居中间分别为(104.05 kJ/mol和69.05 kJ/mol)。研究还表明氢键在降低活化能方面起着重要的作用,卤素(-F、-Cl、-Br)对活化能的影响不大。  相似文献   

5.
杨国辉  李言信  颜世海  代丽  赵斌 《化学学报》2011,69(15):1743-1750
研究了2-[(4-氯苯基亚氨基)甲基]-8-羟基喹啉的三种质子转移途径: 分子内质子转移、水分子辅助质子转移和甲醇分子辅助质子转移. 以该席夫碱化合物的晶体结构作为模型, 在B3LYP/6-31+G(d)水平上, 优化得到稳定态和过渡态的几何构型. 对三类质子转移前后的结构、能量、红外光谱、化学位移进行研究, 结果表明水分子辅助质子转移和甲醇分子辅助质子转移中, 水和甲醇分子利用氢键作用参与质子转移过程, 形成七元环状过渡态, 大大降低了反应的能垒, 有利于质子的转移, 氢键在降低活化能方面起着重要作用.  相似文献   

6.
2-羟基吡啶质子转移过程的理论研究   总被引:8,自引:0,他引:8  
采用量子化学中的密度泛函理论,在B3LYP/6-31G(d)基组水平上,计算并考察了2-羟基吡啶分子醇式结构和酮式结构进行结构互变的质子转移过程中的4种可能途径:(a)分子内质子转移,(b)水助催化质子转移,(c)同种二聚体双质子转移和(d)异种二聚体间双质子转移.计算结果表明,途经c所需要的活化能最小(2.6 kJ•mol-1,逆反应则为27.1 kJ•mol-1),而过程a所需要的活化能最大(137.2 kJ•mol-1),途径b和d的活化能居中间(分别为38.7和17.3 kJ•mol-1).研究还表明,氢键在降低反应活化能方面起着重要的作用.  相似文献   

7.
2,6-二巯基嘌呤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方法, 在6-311+G(d,p)基组水平上对2,6-二巯基嘌呤质子转移引起的硫醇式与硫酮式互变异构反应进行了计算研究, 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性质. 计算结果表明, 2,6-二巯基嘌呤无论是孤立分子还是一水合物, 其二硫酮式R是最稳定异构体. 由二硫酮式通过分子内质子转移向二硫醇式异构化共有6条反应通道, 其主通道(1)速控步骤的活化能为139.1 kJ•mol-1, 速率常数为2.16×10-12 s-1; 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, 有利于硫酮式向硫醇式转变, 其主通道(7)速控步骤的活化能为61.3 kJ•mol-1, 速率常数为1.33×10 s-1. 计算结果还表明, 氢键作用在增大2,6-二巯基嘌呤氢键一水合物稳定性、降低质子转移异构化反应活化能等方面起着重要的作用.  相似文献   

8.
采用ab initio HF理论的组态相关CIS方法和连续溶剂模型PCM, 分别在6-311+G*和6-31G水平上研究了6-甲基-4-羟基嘧啶单体及二聚体激发态质子转移的异构化反应; 对其反应势能面的研究发现, 单体基态和激发态的异构化反应一起可以形成四能级的分子电子体系, 而二聚体的却不能, 由此解释了单体和二聚体的紫外吸收光谱和荧光发射光谱均对应于酮式构型的原因. 利用混合含时密度泛函TD/MPW1PW91理论方法在溶剂存在下计算了标题物质的紫外吸收光谱和荧光发射光谱.  相似文献   

9.
3-羰基吡唑质子转移过程的理论研究   总被引:2,自引:1,他引:1  
陈媛丽  李宝宗  国永敏 《化学研究》2008,19(1):43-46,51
采用密度泛函B3LYP/6—311G^**方法,对3-羰基吡唑几何构型进行了全自由度优化,获得了它们的几何结构和电子结构.计算并考察了3-羰基吡唑的两种构象即syn和anti构象的稳定性以及3-羰基吡唑进行结构互变的质子转移过程的四种可能途径:(a)分子内质子转移;(b)水助质子转移;(C)同种二聚体双质子转移;(d)异种二聚体双质子转移.计算结果表明3-羰基吡唑的syn构象中N2-H型的稳定性大于N1-H型,进行质子转移时途径(C)所需要的活化能最小(52.78kJ/mol),途径(a)所需要的活化能最大(200.59kJ/mol);3,羰基吡唑的。anti构象中N1-H型的稳定性大于N2-H型,进行质子转移时途径(d)所需要的活化能最小(61.09kJ/mol),途径(a)所需要的活化能最大(204.15kJ/mol).  相似文献   

10.
5-氟胞嘧啶气相及水助质子转移异构化的理论研究   总被引:3,自引:0,他引:3  
采用密度泛函B3LYP/6-311G**方法,对6种5-氟胞嘧啶异构体孤立分子的稳定性及质子转移引起的酮式-烯醇式、氨基式-亚胺式互变异构反应机理进行了计算研究,获得了零点能、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.计算结果表明,气相中烯醇-氨基式FC4是最稳定的异构体.分子内质子转移设计了FC1→FC2和FC1→FC6两条通道,分别标记为P(1)和P(2),各通道速控步骤的活化能和速率常数分别为155.9 kJ·mol-1,4.70×10-15 s-1和173.1 kJ·mol-1,1.41×10-18 s-1.水助催化时,相应通道P(3) 和P(4) 速控步骤的活化能和速率常数分别为51.0 kJ·mol-1,1.41×103 s-1和88.2 kJ·mol-1,4.53×10-3 s-1.可见,水分子的加入极大地降低了质子转移的活化能垒.另外发现,水分子参与形成协同的双质子转移机理比水助单质子转移机理更利于降低活化能垒.  相似文献   

11.
Density functional theory (DFT) of quantum chemistry method was employed to investigate proton transfer reactions of 8-hydroxyquinoline (8-HQ) monomers and dimers. By studying the potential energy curves of the isomerization, the most possible reaction pathway was found. The total energy of 8-hydroxyquinoline was lower than that of quinolin-8(1H)-one, whereas the order was reversed in dimers. The findings explained the contrary experimental phenomena. The minimum reaction barrier of intramolecular proton transfer was 47.3 kJ/mol while that in dimer was only 25.7 kJ/mol. Hence it is obvious that proton transfer reactions of 8-HQ monomer have a considerable rate but it is easier to proceed for 8-HQ dimer than monomers. It implied that the hydrogen bond played an important role in depressing the activation energy of reaction. The mechanism of the tautomerization was discussed on the basis of theoretical results.  相似文献   

12.
Structures and relative energies were obtained for the hydrogen bonded dimers of formamide and formamidic acid using the 3-21G basis set. A double proton transfer transition state is claimed to link these two dimers. While the structure of the transition state was intermediate between those of the two dimers, the energy was only 7.6 kJ/mol greater than the less stable formamidic acid dimer. The activation energy from the formamide dimer side of the reaction was found to be 125 kJ/mol of dimer. A similar transition state was found for the amidine dimer system. The activation energy for this model reaction was found to be 66.9 kJ/mol of dimer.  相似文献   

13.
Non-empirical LCAO MO SCF calculations have been carried out on the ground state and core ionized states of some hydrogen bonded dimers, and in the particular case of H2O the trimer has also been investigated. Comparison of absolute and relative binding energies and relaxation energies with respect to the corresponding monomers reveals that substantial changes occur in going to the associated species. The relaxation energies for a given core hole are shown to increase on going from monomer to dimer indicating that intermolecular contributions to relaxation energies are of the same sign irrespective of the sign for the shift in core binding energy. Creation of a core hole in the dimer species is shown to give rise to substantial changes in hydrogen bond energies compared with the neutral species. In the particular case of valence holes dominantly of 2s and 2p character it is shown that trends in shifts and relaxation energies parallel those for the core hole states.  相似文献   

14.
A computational study of the monomers and hydrogen-bonded dimers of 2-pyrrolidone was executed at different DFT levels and basis sets. The above dimeric complexes were treated theoretically to elucidate the nature of the intermolecular hydrogen bonds, geometry, thermodynamic parameters, interaction energies, and charge transfer. The processes of dimer formation from monomers and concerted reactions of double proton transfer were considered. The evolution of geometry, vibrational frequencies, charge distribution, and AIM properties in going from monomers to dimers was systematically followed. The solvent effects upon dimer formation were investigated in terms of the self-consistent reaction field (SCRF Onsager model). For the monomers and three dimers, vibrational frequencies were calculated and the changes in frequencies of the vibrations most sensitive to complexation were discussed. The orbital interactions were shown to lengthen the X-H (X = N, O) bond and lower its vibrational frequency (a red shift). To better understand the nature of the corresponding intermolecular interactions, we performed natural bond orbital (NBO) analysis. Topological analysis of electron density at bond critical points (BCP) was executed for complex molecules using the Bader's atoms in molecules (AIM) theory. The interaction energies were calculated, and the basis set superposition errors (BSSE) were estimated systematically. Satisfactory correlations between the structural parameters, interaction energies, and electron density characteristics at BCP were found.  相似文献   

15.
Oxidative fusion reaction of cyclic heteroaromatic pentads consisting of pyrrole and thiophene gave closed-heterohelicene monomers and dimers depending on the oxidation conditions. Specifically, oxidation with [bis(trifluoroacetoxy)iodo]benzene (PIFA) gave closed-[7]helicene dimers connected at the β-position of one of the pyrrole units with remarkably elongated C−C bonds of about 1.60 Å. Although this bond was intact against thermal and physical activations, homolytic bond dissociation took place in DMSO upon irradiation with UV light to give the corresponding monomers. Thus, interconversion between the closed-helicene monomer and dimer was achieved. The optically pure dimer was photo-dissociated into the monomers associated with a turn-on of circularly polarized luminescence (CPL).  相似文献   

16.
1 INTRODUCTION Tetrazole and its derivatives are widely applied in the fields of agriculture, biology, chemistry, phar- macology and photographic technology, and they play significant roles in the science and technology as well as national defence[1]. In the past, the res- earches were focused on the molecular geometries, electronic structures, IR, thermodynamic properties, tautomerization, pyrogenation and sensitivity of tetrazole compounds[1~5]. However, study of tetra- zole dimers ha…  相似文献   

17.
The ground-state properties of the monomer and the dimer of formic acid, acetic acid, and benzoic acid have been investigated using Hartree-Fock (HF) and density functional theory (DFT) methods using the 6-311++G(d,p) basis set. Some of the low-lying excited states have been studied using the time-dependent density functional theory (TDDFT) with LDA and B3LYP functionals and also employing complete-active-space-self-consistent-field (CASSCF) and multireference configuration interaction (MRCI) methodologies. DFT calculations predict the ground-state geometries in quantitative agreement with the available experimental results. The computed binding energies for the three carboxylic acid dimers are also in accord with the known thermodynamic data. The TDDFT predicted wavelengths corresponding to the lowest energy n-pi* transition in formic acid (214 nm) and acetic acid (214 nm) and the pi-pi* transition in benzoic acid (255 nm) are comparable to the experimentally observed absorption maxima. In addition, TDDFT calculations predict qualitatively correctly the blue shift (4-5 nm) in the excitation energy for the pi-pi* transition in going from the monomer to the dimer of formic acid and acetic acid and the red shift (approximately 19 nm) in pi-pi* transition in going from benzoic acid monomer to dimer. This also indicates that the electronic interaction arising from the hydrogen bonds between the monomers is marginal in all three carboxylic acids investigated.  相似文献   

18.
The gas-phase basicities of monomeric and dimeric deprotonated ferulic and sinapic acids, common matrix-assisted laser desorption/ionization (MALDI) matrices, were determined. A new bracketing method based on structure-reactivity correlations was developed for deriving gas-phase basicities from reaction efficiencies. The matrix dimer anions were found to be significantly less basic than the monomer anions, by about 115 kJ/mol. The low basicity of the dimer anion can qualitatively be explained by resonance stabilization. The energies for proton transfer from dimers to monomers are therefore about 1.2 eV lower than for proton transfer between monomers. For the MALDI process, proton transfer reactions involving matrix dimers provide a low energy pathway for matrix and analyte ion formation.  相似文献   

19.
采用密度泛函理论(DFT)中的B3LYP方法对CuCl2催化的(2-甲基辛烷-2,3-二烯-4-基)磷酸乙酯氯代环化反应机理进行了理论研究.在6-31+G(d)基组水平上对反应机理中所有反应物、过渡态、中间体和产物进行了优化,通过能量和振动频率分析以及IRC计算证实了中间体和过渡态的合理性.在相同基组水平上应用自然键轨道(NBO)理论和分子中的原子(AIM)理论分析了复合物的成键特征和轨道间相互作用.反应物R和催化剂CuCl2可通过IA和IB两条可行反应通道生成中间体IM9,控制步骤活化能分别是129.61和142.10kJ/m01.中间体IM9到产物P也有两条反应路径PA和PB,控制步骤活化能分别是179.55和9.83kJ/m01.整个反应机理中IA—PB和IB—PB反应通道可能同时发生,反应控制步骤活化能最低反应通道为IA→PB.  相似文献   

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