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1.
煤焦水蒸汽气化过程中不同煤种的反应特性与碳结构变化   总被引:2,自引:1,他引:1  
为探讨各种因素对不同煤种气化反应速率的影响,在微分反应器中,于常压下,对20种煤焦进行了催化、非催化水蒸汽气化实验。得出了气化速率与煤的含碳量、比表面积和煤的碳结构的关系以及含碳量与催化效果的关系。  相似文献   

2.
张艳  冯柏年 《有机化学》2014,(12):2406-2411
C—C键的形成是药物合成过程中重要的研究内容之一.交叉脱氢偶联直接利用不同反应底物中的C—H键在氧化条件下进行交叉偶联反应形成C—C键,反应过程中避免了反应底物的预先官能化,是构建新的碳-碳键简洁、高效的合成路径,原子利用率高、环境友好,具有重大的理论意义和应用价值.综述了目前过渡金属催化的不对称交叉脱氢偶联反应,重点阐述过渡金属与配体在反应的立体选择性中的应用.  相似文献   

3.
江焕峰 《有机化学》2008,28(5):935-935
碳—碳叁键的氧化断裂反应是有机合成中的重要反应之一. 一般情况下, 进行炔键断裂反应使用的化学试剂有:高锰酸钾、碱性双氧水、臭氧、四氧化锇和四氧化钌, 而以环境友好的氧气(O2)作为氧化剂的炔键氧化断裂反应却未见报道. 华南理工大学江焕峰等使用O2作为氧化剂, 在Lewis酸的促进下, 实现了钯催化碳—碳叁键的氧化断裂反应. 炔化合物在不同的醇溶液中可以氧化断裂成不同的羧酸酯, 分离收率最高可达90%. 该催化反应体系为钯催化碳—碳叁键的断裂提供了重要的参考.  相似文献   

4.
钴原子催化活化乙烷的反应机理   总被引:1,自引:0,他引:1  
采用密度泛函理论B3LYP方法分别在两种不同基组水平上, 研究了Co原子催化乙烷反应的反应机理, 优化了反应过程中各反应物、中间体、过渡态和产物的构型, 并在同一水平上计算了反应中各驻点的振动频率, 运用自然键轨道理论(NBO)方法分析了各物质的成键情况和轨道间相互作用. 在两种不同基组水平上研究所得的反应历程及相应的能量变化趋势是一致的, 其活化过程可分为C—C键活化及C—H键活化, 分别释放出CH4和H2, 反应速控步骤的活化能后者较前者低, 因此, C—H键的活化较C—C 键活化容易进行.  相似文献   

5.
C—N键广泛存在于药物分子、天然产物及功能材料中,开发简洁高效的C—N键构建方法具有重要意义.近年来,无过渡金属体系下C(sp^2)—H键的自由基反应构建C—N键取得了诸多进展.该方法反应条件相对温和,反应活性较高,为C—N键构建提供了一条新途径.根据氮源类型的不同,对近年来C(sp^2)—H键的自由基反应构建C—N键的研究进展进行简要论述.  相似文献   

6.
《有机化学》2008,28(5):935
碳-碳叁键的氧化断裂反应是有机合成中的重要反应之一.一般情况下,进行炔键断裂反应使用的化学试剂有:高锰酸钾、碱性双氧水、臭氧、四氧化锇和四氧化钌,而以环境友好的氧气(O2)作为氧化剂的炔键氧化断裂反应却未见报道.华南理工大学江焕峰等使用O2作为氧化剂,在Lewis酸的促进下,实现了钯催化碳-碳叁键的氧化断裂反应.炔化合物在不同的醇溶液中可以氧化断裂成不同的羧酸酯,分离收率最高可达90%.该催化反应体系为钯催化碳-碳叁键的断裂提供了重要的参考.  相似文献   

7.
过渡金属催化的酰胺C-N键活化已成为有机化学和金属有机化学热门的研究领域之一。酰胺中羰基C-N键的切断可分为5种不同模式:1)氧化加成反应;2)形成季铵盐后的酰基转移反应;3)质子解反应;4)氢化反应;5)脱羧反应。而酰胺非羰基C-N键的切断可分为4种不同模式:1)氧化加成反应;2)亲核取代反应;3)形成亚胺或亚胺盐;4)β-氨基消除反应。本文综述了近年来过渡金属催化的酰胺中羰基C-N键和非羰基C-N键的不同切断模式。  相似文献   

8.
近年来,通过导向基团进行碳氢键活化构建C―C键及C―X键的方法得到了快速发展,已成为有机合成的重要手段之一。在碳氢键活化中,作为多功能导向基团之一的氧酰胺,由于其独特的性质,引起了科学家们的广泛关注。氧酰胺中O―N键的氧化性替代外部氧化剂,使反应处于氧化还原中性。加入化学计量的外部氧化剂,通常可以使O―N键得到保留。在不同的溶剂中,能够表现出不同的区域选择性和立体选择性;皆体现了氧酰胺作为导向基团的独特之处。本文综述了N-苯氧基酰胺作为底物进行碳氢键活化的研究进展,同时根据现有的实验和理论研究结果对不同反应的机理进行了探讨。  相似文献   

9.
张锋  周鹿  杨凯  宋秋玲 《有机化学》2022,(4):1013-1032
有机硼化合物是合成方法学中重要且通用的合成骨架.由于其独特的性质,它们在有机合成中表现出巨大的价值.有机硼化合物具有丰富的转化能力,近年来,由于其迁移反应高效、反应条件温和而受到了化学家们的广泛关注,用于快速构建各种碳碳键和碳杂键.本篇综述根据不同的反应条件和键的形成,系统总结了近年来基于四配位硼中间体的1,2-迁移反应.  相似文献   

10.
C-H键是有机化合物中最基本的化学键,C-H键的活化和直接转化避免了反应物的预先官能化,是最终实现烷烃类化合物转化为不同种类有机化合物最直接、高效的转换方式,通过C-H键构建C-X键(X=O、C、N)是非常重要和具有挑战性的研究. C-H键直接电氧化活化过程中以“电子”参与反应,不需要加入额外的催化剂,并可通过选择合适的电极材料、支持电解质、溶剂和反应温度,通过恒电流或者恒电位电解,进行具有特定的反应选择性和区域选择性的C-H键电氧化活化,从而获得含其他活性基团的目标产物.  相似文献   

11.
New high-level quantum chemical calculations have been undertaken to understand the rates and mechanisms of the reactive and associative channels for the reactants C2H2(+) + H2. The reactive channel, which produces C2H3(+) + H, has been shown to be slightly endothermic, confirming earlier calculations at a somewhat lower level and in agreement with some recent experimental work. The associative channel, leading to C2H4+, has been shown to proceed via a transition state with negative energy relative to the reactants, so that association is predicted to be efficient. This result is in conflict with an earlier theoretical study but in agreement with low-temperature experimental measurements.  相似文献   

12.
We present a three-dimensional quantum scattering model to treat reactions of the type H + C2H6 --> H2 + C2H5. The model allows the torsional and the stretching degrees of freedom to be treated explicitly. Zero-point energies of the remaining modes are taken into account in electronic structure calculations. An analytical potential-energy surface was developed from a minimal number of ab initio geometry evaluations using the CCSD(T,full)/cc-pVTZ//MP2(full)/cc-pVTZ level of theory. The reaction is endothermic by 1.5 kcal mol(-1) and exhibits a vibrationally adiabatic barrier of 12.0 kcal mol(-1). The results show that the torsional mode influences reactivity when coupled with the vibrational C-H stretching mode. We also found that ethyl radical products are formed internally excited in the torsional mode.  相似文献   

13.
Ab initio calculations at the post Hartree–Fock level were performed on complexes of acetylene with hydrogen, nitrogen, and argon. Total energies, optimum geometries, and binding energies were calculated, using the 6-311G** and the 6-31+G(2df,2pd) basis sets. Calculations showed the complexes to be more stable than the separate entities, with the exception of the acetylene–hydrogen complex.  相似文献   

14.
This paper examines the unimolecular dissociation of propargyl (HCCCH2) radicals over a range of internal energies to probe the CH+HCCH and C+C2H3 bimolecular reactions from the radical intermediate to products. The propargyl radical was produced by 157 nm photolysis of propargyl chloride in crossed laser-molecular beam scattering experiments. The H-loss and H2 elimination channels of the nascent propargyl radicals were observed. Detection of stable propargyl radicals gave an experimental determination of 71.5 (+5-10) kcal/mol as the lowest barrier to dissociation of the radical. This barrier is significantly lower than predictions for the lowest barrier to the radical's dissociation and also lower than calculated overall reaction enthalpies. Products from both H2+HCCC and H+C3H2 channels were detected at energies lower than what has been theoretically predicted. An HCl elimination channel and a minor C-H fission channel were also observed in the photolysis of propargyl chloride.  相似文献   

15.
Porous sorbents are materials that are used for various applications, including storage and separation. Typically, the uptake of a single gas by a sorbent decreases with temperature, but the relative affinity for two similar gases does not change. However, in this study, we report a rare example of “crossover sorption,” in which the uptake capacity and apparent affinity for two similar gases reverse at different temperatures. We synthesized two soft porous coordination polymers (PCPs), [Zn2(L1)(L2)2]n (PCP-1) and [Zn2(L1)(L3)2]n (PCP-2) (L1= 1,4-bis(4-pyridyl)benzene, L2=5-methyl-1,3-di(4-carboxyphenyl)benzene, and L3=5-methoxy-1,3-di(4-carboxyphenyl)benzene). These PCPs exhibits structural changes upon gas sorption and show the crossover sorption for both C2H2/CO2 and C2H6/C2H4, in which the apparent affinity reverse with temperature. We used in situ gas-loading single-crystal X-ray diffraction (SCXRD) analysis to reveal the guest inclusion structures of PCP-1 for C2H2, CO2, C2H6, and C2H4 gases at various temperatures. Interestingly, we observed three-step single-crystal to single-crystal (sc-sc) transformations with the different loading phases under these gases, providing insight into guest binding positions, nature of host–guest or guest-guest interactions, and their phase transformations upon exposure to these gases. Combining with theoretical investigation, we have fully elucidated the crossover sorption in the flexible coordination networks, which involves a reversal of apparent affinity and uptake of similar gases at different temperatures. We discovered that this behaviour can be explained by the delicate balance between guest binding and host–guest and guest-guest interactions.  相似文献   

16.
A study of the pyrolysis of two hydrocarbons, C2H2 and C2H4, at different temperatures has been carried out in order to compare their behaviour in terms of soot and gas yields and gas composition. Pyrolysis experiments have been performed in the same conditions for both hydrocarbons: an inlet hydrocarbon concentration of 15,000 ppmv and a temperature range of 1000–1200 °C. For C2H2 and C2H4 pyrolysis tests, the results present the same trend when increasing the temperature: an increase in soot yield, a decrease in gas yield and a similar evolution of the outlet gases. Comparatively, it can be observed that acetylene is a more sooting hydrocarbon than ethylene for a given temperature. Additionally, the study of soot reactivity with O2 and NO shows that the soot samples obtained from ethylene show a slightly higher reactivity towards O2 and NO than the soot samples formed from acetylene.  相似文献   

17.
We have functions expressed as antisymmetrized products of strongly orthogonal geminals have been evaluated for some three membered ring molecules. GF results are compared with previously computed SCF-MO results, obtained employing the same atomic basis. Transferability features of bonds and inner shells are shown.  相似文献   

18.
采用控电位电解、循环伏安法和交流阻抗法研究了FeCl2-K2MoS4体系对乙炔在石墨电极上还原为乙烯的电催化活性及反应机理。实验结果表明,当石墨阴极的电位控制在-1.50V(vs.SCE)时,FeCl2+K2MoS4的DMF溶液对C2H2还原为C2H4表现出明显的电催化活性和高的选择性。在-0.5~-1.0V时Mo(Ⅵ)还原为Mo(Ⅴ);在按连串的电子传递机理进行的Mo(Ⅴ)→Mo(Ⅲ)反应的电位区间(-1.0~-1.50V)溶液中所形成的络合品种传递电子的能力更强。Mo(Ⅲ)可能是络合物的电活性成分。  相似文献   

19.
The kinetics and H atom channel yield at both 298 and 195 K have been determined for reactions of CN radicals with C2H2 (1.00+/-0.21, 0.97+/-0.20), C2H4 (0.96+/-0.032, 1.04+/-0.042), C3H6 (pressure dependent), iso-C4H8 (pressure dependent), and trans-2-C4H8 (0.039+/-0.019, 0.029+/-0.047) where the first figure in each bracket is the H atom yield at 298 K and the second is that at 195 K. The kinetics of all reactions were studied by monitoring both CN decay and H atom growth by laser-induced fluorescence at 357.7 and 121.6 nm, respectively. The results are in good agreement with previous studies where available. The rate coefficients for the reaction of CN with trans-2-butene and iso-butene have been measured at 298 and 195 K for the first time, and the rate coefficients are as follows: k298K=(2.93+/-0.23)x10(-10) cm3 molecule(-1) s(-1), k195K=(3.58+/-0.43)x10(-10) cm3 molecule(-1) s(-1) and k298K=(3.17+/-0.10)x10(-10) cm3 molecule(-1) s(-1), k195K=(4.32+/-0.35)x10(-10) cm3 molecule(-1) s(-1), respectively, where the errors represent a combination of statistical uncertainty (2sigma) and an estimate of possible systematic errors. A potential energy surface for the CN+C3H6 reaction has been constructed using G3X//UB3LYP electronic structure calculations identifying a number of reaction channels leading to either H, CH3, or HCN elimination following the formation of initial addition complexes. Results from the potential energy surface calculations have been used to run master equation calculations with the ratio of primary:secondary addition, the average amount of downward energy transferred in a collision DeltaEd, and the difference in barrier heights between H atom elimination and an H atom 1, 2 migration as variable parameters. Excellent agreement is obtained with the experimental 298 K H atom yields with the following parameter values: secondary addition complex formation equal to 80%, DeltaEd=145 cm(-1), and the barrier height for H atom elimination set 5 kJ mol(-1) lower than the barrier for migration. Finally, very low temperature master equation simulations using the best fit parameters have been carried out in an increased precision environment utilizing quad-double and double-double arithmetic to predict H and CH3 yields for the CN+C3H6 reaction at temperatures and pressures relevant to Titan. The H and CH3 yields predicted by the master equation have been parametrized in a simple equation for use in modeling.  相似文献   

20.
A model complex optical potential (composed of static, exchange, polarization and absorption terms) is employed to calculate the total (elastic and inelastic) electron-atom scattering cross sections from the corresponding atomic wave function at the Hartree-Fock level. The total cross sections (TCS) for electron scattering by their corresponding molecules (C2H2, C2H4, C2H6, C3H6, C3H8 and C4H8) are firstly obtained by the use of the additivity rule over an incident energy range of 10–1000 eV. The qualitative molecular results are compared with experimental data and other calculations wherever available, good agreement is obtained in intermediate-and high-energy region.  相似文献   

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