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1.
利用量子化学密度泛函理论的B3LYP方法,在6-311G的水平上,对锗烯X2Ge(X=H、CH3、F、Cl、Br)与C2H4的环加成反应进行了计算研究.结果表明,锗烯的基态是单重态,取代基的电负性越强,单-三态的能量差越大;控制反应的因素是电子效应,而不是立体效应;取代基的电负性越强,反应的活化能越高,放热越少;该反应由两步组成,第一步生成中间配合物,是一个无势垒的放热过程,第二步经过渡态生成产物.  相似文献   

2.
锗烯X2Ge与环硫乙烷硫转移反应的密度泛函研究   总被引:1,自引:0,他引:1  
利用量子化学密度泛函理论(DFT)的B3LYP方法, 在6-311++G(d, p)的水平上对锗烯X2Ge(X=H、CH3、F、Cl、Br、OH、OCH3)与SC2H4的硫转移反应进行了计算研究. 结果表明, 锗烯的基态是单重态, 取代基的电负性越强, 单-三态的能量差越大; 反应的活化能越高, 放热越少; 控制反应的因素是电子效应, 而不是立体效应; 该硫转移反应由两步组成, 第一步生成中间配合物, 是一个无势垒的放热过程, 第二步经过渡态生成产物. 并用组态混合模型对反应机理和势垒进行了解释. 同时讨论了该反应中环硫乙烷的C—S键解离过程.  相似文献   

3.
耿志远  王永成  赵存元 《化学学报》2001,59(12):2050-2055
用量子化学的密度泛函理论(DFT)在6-311G水平上对硅烯及其取代物与甲烷的C-H键进行插入反应的势能面进行了系统地研究。用IRC方法对过渡态进行了验证。并用组态混合模型讨论了反应势垒(△E^≠)和反应热(△H)与SiXY的单-三态激发能△Est的关系。我们发现,硅烯SiXY的△Est是控制反应的主要因素,取代基的电负性越大,取代基越多,π电子给予越强,SiXY的△Est就越大,插入反应的活化能就越大,放热就越小。  相似文献   

4.
用密度泛函理论(DFT), 在B3LYP/6-31+G(d, p)水平上研究了取代基对二取代锗烯R2Ge=CH2和R2C=GeH2 [R=H, OH, NH2, SH, PH2, F, Cl, Br, (NHCH)2, CH3, (CH)2]的影响. 研究发现π供电子取代基在碳上时更能引起分子结构在锗端的锥型化. 碳原子上的π电子给予取代基的给电子效应越强, R2C的单-三态能量差越大, π电子的反极化效应就越强, 使得化合物的结构在锗端发生的弯曲越明显, 从而使得弯曲结构更稳定. 和前人的计算相比, 碳上的给电子取代基对GeH2结构影响大于它对SiH2的影响.  相似文献   

5.
R2C=GeH2和R2Ge=CH2结构与成键特征的理论研究   总被引:2,自引:0,他引:2  
耿志远  贾宝丽  王永成  姚琨  方冉  张兴辉 《化学学报》2006,64(19):1974-1980
用密度泛函理论(DFT), 在B3LYP/6-31+G(d, p)水平上研究了取代基对二取代锗烯R2Ge=CH2和R2C=GeH2 [R=H, OH, NH2, SH, PH2, F, Cl, Br, (NHCH)2, CH3, (CH)2]的影响. 研究发现π供电子取代基在碳上时更能引起分子结构在锗端的锥型化. 碳原子上的π电子给予取代基的给电子效应越强, R2C的单-三态能量差越大, π电子的反极化效应就越强, 使得化合物的结构在锗端发生的弯曲越明显, 从而使得弯曲结构更稳定. 和前人的计算相比, 碳上的给电子取代基对GeH2结构影响大于它对SiH2的影响.  相似文献   

6.
李来才  邹勤  田安民 《化学学报》2003,61(10):1524-1527
用量化学UMP2方法,在6-311++G**基组水平上研究了CH_2X(X=H,FCI)与臭氧反 应机理,全参数优化了反应过程中反应物、中间体、过渡态和产物的内何构型,在 UQCISD(T)/6-311++G**水平上计算了它们的能量,并对它们进行了振动分析,以 确定中间体和过渡态的直实性。从CH_2X(X=H,FCI)与O_3的反应机理的研究结果看 ,它们与O_3反应的活性都比较强,相对而言,活性大小顺序为CH_2F>CH_3> CH_2CI,也就是说,CH_2F自由基与臭氧间的反应活性最强,对大气臭氧的损耗将 是最大的。同时研究还发现CH_2X(X=H,FCI)系列自由基与O_3的反应都是强放热反 应。  相似文献   

7.
用量化学UMP2方法,在6-311++G**基组水平上研究了CH_2X(X=H,FCI)与臭氧反 应机理,全参数优化了反应过程中反应物、中间体、过渡态和产物的内何构型,在 UQCISD(T)/6-311++G**水平上计算了它们的能量,并对它们进行了振动分析,以 确定中间体和过渡态的直实性。从CH_2X(X=H,FCI)与O_3的反应机理的研究结果看 ,它们与O_3反应的活性都比较强,相对而言,活性大小顺序为CH_2F>CH_3> CH_2CI,也就是说,CH_2F自由基与臭氧间的反应活性最强,对大气臭氧的损耗将 是最大的。同时研究还发现CH_2X(X=H,FCI)系列自由基与O_3的反应都是强放热反 应。  相似文献   

8.
采用密度泛函理论方法在B3LYP/6-311G(d,p)水平上研究了锗苯与一些亲二烯体的Diels-Alder反应的微观机理和势能剖面, 考察了取代基和苯溶剂对反应势能剖面的影响, 探讨了杂Diels-Alder反应中区域选择性的起源. 计算结果表明, 所研究反应均以协同的方式进行. 亲二烯体分子碳原子上的苯基取代基对杂Diels-Alder反应中2个新键形成的非同步性和活化能垒的影响与最终产物中苯基和锗原子间的相对位置有关, 锗苯分子中锗原子上的CCl3取代基在热力学和动力学上均有利于反应的进行. 苯溶剂对所研究反应的势能剖面影响较小. 实验观察到的杂Diels-Alder反应的区域选择性由动力学因素所控制.  相似文献   

9.
取代苯甲醛经缩合、催化氢化、环氧化和开环反应合成了9种2,2-二甲基-5-取代苯基-3-(1,2,4-三唑-1-基甲基)-3-戊醇类化合物和2种2,2-二甲基-5-取代苯基-3-(1,2,4-三唑-4-基甲基)-3-戊醇类新化合物. 并对1,2,4-三唑-1-基衍生物和1,2,4-三唑-4-基衍生物的选择性合成进行了研究; 新化合物结构经质谱, 1H NMR, 元素分析等确证, 并用单晶X射线衍射测定了化合物1a的晶体结构. 生物活性测试结果表明, 部分化合物具有强杀菌活性.  相似文献   

10.
硅苯和锗苯与2,3-二甲基丁二烯杂Diels-Alder反应的理论研究   总被引:1,自引:0,他引:1  
王岩  曾小兰  方德彩 《化学学报》2010,68(10):941-947
采用密度泛函理论(DFT)方法在B3LYP/6-311G(d,p)水平上研究了硅苯和锗苯与2,3-二甲基丁二烯的两类杂Diels-Alder反应的微观机理、势能剖面、取代基效应和溶剂效应.计算结果表明,所研究反应均以协同非同步的方式进行,且C—Si或C—Ge键总是先于C—C键形成.在硅苯或锗苯分子作为杂亲二烯体的[2+4]反应中,endo进攻方式的非同步性比exo进攻稍大一些,而后者比前者一般要稍稍有利一些.在硅苯或锗苯分子作为杂二烯烃的[4+2]反应中,反应非同步性的大小与产物中不对称的亲二烯体上的取代基与硅或锗原子之间的相对位置有关,且在动力学上总是非同步性较大的反应更容易进行一些.硅或锗原子上的CCl3或NH2取代基在热力学和动力学上一般有利于反应的进行,而C(CH3)3取代基的影响则相反.[2+4]反应在热力学和动力学上均远比相应的[4+2]反应容易进行,这与实验完全一致.苯和甲醇溶剂对所研究反应的势能剖面影响较小.  相似文献   

11.
The H2Ge=Ge:, as well as and its derivatives (X2Ge=Ge:, X=H, Me, F, Cl, Br, Ph, Ar, : : :) is a kind of new species. Its cycloaddition reactions is a new area for the study of germy-lene chemistry. The mechanism of the cycloaddition reaction between singlet Me2Ge=Ge: and acetaldehyde was investigated with the B3LYP/6-31G* method in this work. From the potential energy profile, it could be predicted that the reaction has one dominant re-action pathway. The reaction rule is that the two reactants firstly form a four-membered Ge-heterocyclic ring germylene through the [2+2] cycloaddition reaction. Because of the 4p unoccupied orbital of Ge: atom in the four-membered Ge-heterocyclic ring germylene and the π orbital of acetaldehyde forming a π→p donor-acceptor bond, the four-membered Ge-heterocyclic ring germylene further combines with acetaldehyde to form an intermedi-ate. Because the Ge atom in intermediate happens sp3 hybridization after transition state, then, intermediate isomerizes to a spiro-Ge-heterocyclic ring compound via a transition state. The research result indicates the laws of cycloaddition reaction between Me2Ge=Ge: and ac-etaldehyde, and lays the theory foundation of the cycloaddition reaction between H2Ge=Ge: and its derivatives (X2Ge=Ge:, X=H, Me, F, Cl, Br, Ph, Ar, : : :) and asymmetric π-bonded compounds, which are significant for the synthesis of small-ring and spiro-Ge-heterocyclic ring compounds.  相似文献   

12.
锗烯与乙烯环加成反应的理论研究   总被引:8,自引:0,他引:8  
卢秀慧  王沂轩  刘成卜 《化学学报》1999,57(12):1343-1347
用RHF/6-31G^*解析梯度方法研究了单重态锗烯与乙烯环加成反应的机理,用二级微扰方法对各构型的能量进行了相关能校正,并用统计热力学方法和过渡态理论计算了该反应在不同温度下的热力学函数的变化和动力学性质。结果表明,此反应历程由两步组成:1)锗烯与乙烯生成了一中间配合物,是一无势垒的放热反应,2)中间配合物异构化为产物锗杂环丙烷,此步势垒经零点能校正后为26.9kJ.mol^-^1(MP2/6-31G^*//6-31G^*);从热力学和动力学的综合角度考虑,该反应在200-300K温度下进行为宜,如此,反应既有较大的自发趋势和平衡常数,又具有较快的反应速率。  相似文献   

13.
The mechanism of the sulfur extraction reaction between singlet germylene carbene and its derivatives [X2Ge?C: (X = H, F, Cl, CH3)] and thiirane has been investigated with density functional theory, including geometry optimization and vibrational analyses for the involved stationary points on the potential energy surface. The energies of the different conformations are calculated by B3LYP/6‐311G(d,p) method. From the potential energy profile, it can be predicted that the reaction pathway of this kind consists two steps: (1) the two reactants firstly form an intermediate (INT) through a barrier‐free exothermic reaction; (2) the INT then isomerizes to a product via a transition state (TS). This kind reaction has similar mechanism, when the germylene carbene and its derivatives [X2Ge?C: (X = H, F, Cl, CH3)] and thiirane get close to each other, the shift of 3p lone electron pair of S in thiirane to the 2p unoccupied orbital of C in X2Ge = C: gives a pp donor–acceptor bond, leading to the formation of INT. As the pp donor–acceptor bond continues to strengthen (that is the C? S bond continues to shorten), the INT generates product (P + C2H4) via TS. It is the substituent electronegativity that mainly affects the extraction reactions. When the substituent electronegativity is greater, the energy barrier is lower, and the reaction rate is greater. © 2010 Wiley Periodicals, Inc. Int J Quantum Chem, 2011  相似文献   

14.
卢秀慧  徐曰华  于海彬  林璜 《中国化学》2005,24(10):1339-1342
The mechanism of a cycloaddition reaction between singlet dichloromethylene germylene and ethylene has been investigated with B3LYP/6-31G* method, including geometry optimization and vibrational analysis for the involved stationary points on the potential energy surface. Energies for the involved conformations were calculated by CCSD(T)//B3LYP/6-31G* method. On the basis of the surface energy profile obtained with CCSD(T)// B3LYP/6-31G* method for the cycloaddition reaction between singlet dichloromethylene germylene and ethylene, it can be predicted that the dominant reaction pathway is that an intermediate INT1 is firstly formed between the two reactants through a barrier-free exothermic reaction of 61.7 kJ/mol, and the intermediate INT1 then isomerizes to an active four-membered ring product P2.1 via a transition state TS2, an intermediate INT2 and a transition state TS2.1, in which energy barriers are 57.7 and 42.2 kJ/mol, respectively.  相似文献   

15.
The B3LYP/6-311++G** study of the mechanism of the cycloaddition of singlet 2,2-dimethyl-1,2-digermavinylidene (Me2Ge=Ge:) to ethylene was performed. [2+2] Cycloaddition of the reactants first produced four-membered cyclic germylene, then the interaction of unoccupied 4p orbital of the Ge atom with the π orbital of another ethylene molecule yielded intermediate with the π → p donor-acceptor bond. Isomerization of this intermediate via low-laying transition state resulted in spirocyclic compound with the sp3 hybridized Ge spiroatom.  相似文献   

16.
The mechanism of the cycloaddition reaction between singlet dichlorosilylene germylidene (Cl2Si?Ge:) and formaldehyde has been investigated with the CCSD(T)//MP2/6‐31G* method. From the potential energy profile, it could be predicted that the reaction has one dominant reaction pathway. The reaction rule presented is that the two reactants first form a four‐membered Si‐heterocyclic ring germylene through the [2 + 2] cycloaddition reaction. Because of the 4p unoccupied orbital of Ge atom in the four‐membered Si‐heterocyclic ring germylene and the π orbital of formaldehyde forming a π→p donor–acceptor bond, the four‐membered Si‐heterocyclic ring germylene further combines with formaldehyde to form an intermediate. Because the Ge atom in intermediate undergoes sp3 hybridization after transition state, then, the intermediate isomerizes to a spiro‐heterocyclic ring compound involving Si and Ge via a transition state. © 2012 Wiley Periodicals, Inc.  相似文献   

17.
The mechanism of the cycloaddition reaction between singlet state silylene germylene (H2Si=Ge:) and formaldehyde has been investigated with the CCSD(T)//MP2/cc-pvtz method, from the potential energy profile, it could be predicted that the reaction has one dominant reaction pathway. The reaction rules presented is that [2?+?2] cycloaddition reaction between two reactants firstly generates a Si-heterocyclic four-membered ring germylene. Because of the 4p unoccupied orbital of the Ge atom in (the) Si-heterocyclic four-membered ring germylene and the ?? orbital of formaldehyde forming a ??????p donor?Cacceptor bond, the Si-heterocyclic four-membered ring germylene further combines with formaldehyde to form an intermediate. Because the Ge atom in intermediate happens sp 3 hybridization after transition state, then, intermediate isomerizes to a bis-heterocyclic compound with Si and Ge via a transition state.  相似文献   

18.
锗烯与甲醛环加成反应的理论研究   总被引:4,自引:0,他引:4  
用从头算方法研究了单重态锗烯与甲醛环加成反应的机理,找到了反应的中间配合物和过渡态,并讨论了反应机理.在从头算的基础上,用统计热力学方法和过渡态理论计算了该反应在不同温度下的热力学函数的变化和动力学性质.结果表明,此反应由两步组成:(1)锗烯与甲醛反应生成了一中间配合物,是一无势垒的放热反应;(2)中间配合物异构化得到产物锗杂环氧甲烷,此步势垒经零点能校正后只有69.6kJ/mol(MP2/3-21G//3-21G).从热力学和动力学角度综合考虑,该反应在400~500K温度下进行为宜,此时,反应既有较大的自发趋势和平衡常数,又具有较快的反应速率.  相似文献   

19.
二氯硅烯与乙烯和甲醛环加成反应机理的理论研究   总被引:1,自引:0,他引:1  
用RHF/6-31G*解析梯度方法研究了单重态二氯硅烯与乙烯和甲醛环加成反应的机理,并用二级微扰方法对各构型能量进行了相关能校正.结果表明,两反应历程均由两步组成:(1)二氯硅烯与乙烯和甲醛分别生成了中间配合物,是无势垒的放热反应;(2)中间配合物异构化成产物二氯硅杂环丙烷和二氯硅杂环氧甲烷,其势垒经零点能校正分别为97.43和103.29kJ/mol(MP2/6-31G*//6-31G*).  相似文献   

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