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1.
通过加入NaBH4作为诱导剂, 可在室温下引发肼与Co2+在水-乙醇体系中的还原反应, 制得高纯度纳米金属钴粉. 机理研究表明, 该反应分二段进行: 第一段主要发生Co2+被N2H4还原的反应(2Co2++N2H4+4OH=2Co¯+N2­+4H2O), 第二段主要为金属Co催化的肼分解反应(N2H4=N2­+2H2­)和歧化反应(3N2H4=N2­+4NH3­). Co2+被N2H4还原是典型的自催化过程, 因此, 加入少量NaBH4即可在288 K下启动反应. 通过测量气体产物的生成速率, 获得了Co2+还原的反应动力学方程, 发现Co2+, N2H4和产物Co的反应级数分别为1, 0和1, 反应活化能约为89 kJ/mol. 调节Co2+的浓度, 纳米金属钴的表面积可从11增加到25 m2/g.  相似文献   

2.
合成了高氯酸镨和咪唑(C3H4N2), DL-α-丙氨酸(C3H7NO2)混配配合物晶体. 经傅立叶变换红外光谱、化学分析和元素分析确定其组成为[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3. 使用具有恒温环境的溶解-反应量热计, 以2.0 mol•L-1 HCl为量热溶剂, 在T=(298.150±0.001) K时测定出化学反应PrCl3•6H2O(s)+2C3H7NO2(s)+C3H4N2(s)+3NaClO4(s)=[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3(s)+3NaCl(s)+5H2O(1)的标准摩尔反应焓为ΔrHmө=(39.26±0.11) kJ•mol-1. 根据盖斯定律, 计算出配合物的标准摩尔生成焓为ΔfHmө{[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3(s), 298.150 K}=(-2424.2±3.3) kJ•mol-1. 采用TG-DTG技术研究了配合物在流动高纯氮气(99.99%)气氛中的非等温热分解动力学, 运用微分法(Achar-Brindley-sharp和Kissinger法)和积分法(Satava-Sestak和Coats-Redfern法)对非等温动力学数据进行分析, 求得分解反应的表观活化能E=108.9 kJ•mol-1, 动力学方程式为dα/dt=2(5.90×108/3)(1-α)[-ln(1-α)]-1exp(-108.9×103/RT).  相似文献   

3.
合成了高氯酸镨和咪唑(C3H4N2), DL-α-丙氨酸(C3H7NO2)混配配合物晶体. 经傅立叶变换红外光谱、化学分析和元素分析确定其组成为[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3. 使用具有恒温环境的溶解-反应量热计, 以2.0 mol•L-1 HCl为量热溶剂, 在T=(298.150±0.001) K时测定出化学反应PrCl3•6H2O(s)+2C3H7NO2(s)+C3H4N2(s)+3NaClO4(s)=[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3(s)+3NaCl(s)+5H2O(1)的标准摩尔反应焓为ΔrHmө=(39.26±0.11) kJ•mol-1. 根据盖斯定律, 计算出配合物的标准摩尔生成焓为ΔfHmө{[Pr(C3H7NO2)2(C3H4N2)(H2O)](ClO4)3(s), 298.150 K}=(-2424.2±3.3) kJ•mol-1. 采用TG-DTG技术研究了配合物在流动高纯氮气(99.99%)气氛中的非等温热分解动力学, 运用微分法(Achar-Brindley-sharp和Kissinger法)和积分法(Satava-Sestak和Coats-Redfern法)对非等温动力学数据进行分析, 求得分解反应的表观活化能E=108.9 kJ•mol-1, 动力学方程式为dα/dt=2(5.90×108/3)(1-α)[-ln(1-α)]-1exp(-108.9×103/RT).  相似文献   

4.
采用密度泛函理论中的UB3LYP方法,对Ta采用相对论校正赝势基组(SDD),C,O采用6-311+G(3d)基组,计算研究了气相中不同自旋态下Ta+活化CO2分解反应的微观机理.计算结果表明,Ta+活化CO2分解反应是典型的自旋禁阻反应,以五重态进入反应通道,经过五重态势能面到三重态势能面的系间窜越(ISC),最终产物TaO+,CO以三重态离开反应通道.运用Harvey方法优化出最低能量交叉点(MECP),并计算了MECP处的自旋-轨道耦合(SOC)常数(204.94cm-1),较大的SOC值说明了在MECP处的自旋-轨道耦合作用较强,势能面的交叉降低了自旋禁阻反应能垒,为反应提供了一条低能反应路径.运用Landau-Zener跃迁几率公式计算了MECP处系间窜越几率,较大的系间窜越几率说明了该自旋禁阻反应速率较快.  相似文献   

5.
以Y, Zr, Nb与CO2反应作为第二前过渡金属离子与CO2反应的范例体系. 采用密度泛函UB3LYP方法, 对于Y, Zr, Nb采用Stuttgart赝势基组, 对于CO2采用6-311+G(2d)基组, 计算研究了三种金属离子在基态和激发态时与CO2气相反应的机理. 结果表明三种金属离子与CO2反应以高自旋进入反应通道, 在反应过程中发生系间窜越, 以低自旋中间体和最终产物离开反应通道. 用内禀坐标单点垂直激发计算的方法找到了势能面交叉点, 并作了相应的讨论. 因为有金属离子的参与, 使单分子CO2的强吸热分解反应变为生成CO和MO的放热过程.  相似文献   

6.
以Y, Zr, Nb与CO2反应作为第二前过渡金属离子与CO2反应的范例体系. 采用密度泛函UB3LYP方法, 对于Y, Zr, Nb采用Stuttgart赝势基组, 对于CO2采用6-311+G(2d)基组, 计算研究了三种金属离子在基态和激发态时与CO2气相反应的机理. 结果表明三种金属离子与CO2反应以高自旋进入反应通道, 在反应过程中发生系间窜越, 以低自旋中间体和最终产物离开反应通道. 用内禀坐标单点垂直激发计算的方法找到了势能面交叉点, 并作了相应的讨论. 因为有金属离子的参与, 使单分子CO2的强吸热分解反应变为生成CO和MO的放热过程.  相似文献   

7.
在水-乙醇混合体系中, 以2-羰基丙酸水杨酰腙(C10H10N2O4)、2,2-联吡啶(C10H8N2, 简写bipy)与Eu(NO3)3•4H2O反应, 首次培养出黄色单晶[Eu(C10H9N2O4)(C10H8N2O4)(H2O)3]•0.5bipy•3H2O. 该晶体属三斜晶系, 空间群为P-1, 晶胞参数a=0.93392(16) nm, b=1.3100(2) nm, c=1.3895(2) nm, α=97.205(3)°, β=105.411(2)°, γ=106.364(2)°, V=15.35(2) nm3, Z=2, μ=2.118 mm-1, Dc=1.686 Mg/m3, F(000)=786, R=0.0116, wR=0.0507, GOF=0.995. 晶体测试结果表明, 该单晶结构为铕的9配位配合物, 两个2-羰基丙酸水杨酰腙分别以负一价和负二价酮式和三个水分子同时参与配位; 每个2-羰基丙酸水杨酰腙中的羧基氧、酰胺基中的羰基氧和C=N中的氮与Eu3+配位, 形成两个共边的稳定五元环, 另三个配位原子则分别来自三个水分子中的氧原子, 该配合物在空间呈扭曲的单帽四方反棱柱, 而在不对称单位中还有游离的一个2,2-联吡啶分子和三个水分子, 这些游离分子与配位分子之间存在大量分子内和分子间氢键, 整个分子在空间呈三维网状结构. 发光性能测试表明该配合物具有很好的荧光性质.  相似文献   

8.
基于密度泛函理论(DFT) M06L方法对一系列单锰取代的Keggin型POM吸附大气小分子X(X=H2O,N2,O2,NO,N2O,CO和CO2)配合物的分子几何,电子结构和成键性质进行了系统研究。由于POM的多阴离子性质,铯盐Cs4[PW11O39MnH2O]被用来考虑抗衡离子效应。DFT-M06L计算表明,当改变4个Cs抗衡阳离子的位置时,多酸阴离子的几何结构和电子结构参数几乎没有变化。当不考虑抗衡离子效应,在气相和溶液中单独优化多酸阴离子([PW11O39MnH2O]4-)时,其主要几何和电子参数没有显著变化。比较不同自旋态的能量表明[PW11O39MnX]4-(X=H2O、N2、N2O、CO和CO2)的最低能量态是高自旋五重态,[PW11O39MnO2]4-为三重态,而[PW11O39MnNO]4-则为双重态。这些大气小分子在类卟啉POM配体上的吸附能量按照以下顺序增加:N2 < N2O < CO≈CO2 < O2 < H2O < NO。POM-Mn-NO配合物具有较大的吸附能。Mulliken布居分析表明,NO配体与多酸中Mn中心的相互作用主要来自于中间自旋态的Mn中心与NO·分子之间的反铁磁性耦合相互作用。  相似文献   

9.
武望婷  胡怀明  王尧宇  史启祯 《化学学报》2005,63(22):2032-2036
在水-乙醇混合体系中, 以2-羰基丙酸水杨酰腙(C10H10N2O4)、2,2-联吡啶(C10H8N2, 简写bipy)与Eu(NO3)3•4H2O反应, 首次培养出黄色单晶[Eu(C10H9N2O4)(C10H8N2O4)(H2O)3]•0.5bipy•3H2O. 该晶体属三斜晶系, 空间群为P-1, 晶胞参数a=0.93392(16) nm, b=1.3100(2) nm, c=1.3895(2) nm, α=97.205(3)°, β=105.411(2)°, γ=106.364(2)°, V=15.35(2) nm3, Z=2, μ=2.118 mm-1, Dc=1.686 Mg/m3, F(000)=786, R=0.0116, wR=0.0507, GOF=0.995. 晶体测试结果表明, 该单晶结构为铕的9配位配合物, 两个2-羰基丙酸水杨酰腙分别以负一价和负二价酮式和三个水分子同时参与配位; 每个2-羰基丙酸水杨酰腙中的羧基氧、酰胺基中的羰基氧和C=N中的氮与Eu3+配位, 形成两个共边的稳定五元环, 另三个配位原子则分别来自三个水分子中的氧原子, 该配合物在空间呈扭曲的单帽四方反棱柱, 而在不对称单位中还有游离的一个2,2-联吡啶分子和三个水分子, 这些游离分子与配位分子之间存在大量分子内和分子间氢键, 整个分子在空间呈三维网状结构. 发光性能测试表明该配合物具有很好的荧光性质.  相似文献   

10.
在超声分子束条件下,利用360.50 nm的电离激光使N2O分子经由[3+1]共振增强多光子电离(REMPI)产生纯净的N2O+(X2Π(000))分子离子,用另一束解离激光在230-275 nm范围扫描获得N2O+经由B2Пi←X2Π跃迁产生的光解碎片(NO+和N2+)激发(PHOFEX)谱. 获得的光解碎片激发谱可以归属为B2Пi(00n)←X2Π(000)序列跃迁. 我们分别将线性三原子分子离子N2O+中N―N伸缩振动简化成NO和N之间的简谐振动,N―O伸缩振动简化成N2和O之间的简谐振动,用谐振子的简谐势能曲线和波函数对N2O+分子离子X2Π和B2Пi电子态振动能级间跃迁的Franck-Condon因子进行计算,和实验得到的碎片离子增强谱实验强度进行比较,对前人给出的分子数据(分子平衡核间距)进行验证,讨论了N2O+经由B2Пi(00n)←X2Π(000)电子态跃迁的光解离机理和碎片离子的分支比.  相似文献   

11.
采用密度泛函理论(DFT)UB3LYP方法对Ru在单重态、三重态及五重态势能面上催化N_2与H_2反应合成氨的两态反应机理进行理论研究,发现该反应为典型的两态反应。计算得到最低能量交叉点(MECP)处自旋-轨道耦合常数(H_(soc))及双程系间窜越几率(P~(ISC)),MECP1:H_(soc)=508.34 cm~(-1),P_2~(ISC)=0.85,MECP9:H_(soc)=269.21 cm~(-1),P_2~(ISC)=0.27。运用能量跨度模型(energetic span model)确定Ru催化合成氨反应的转化频率(TOF)决速过渡态(TDTS)为~3TS2-3,TOF决速中间体(TDI)为~3IM9。  相似文献   

12.
The potential energy surface for the CF3O2 + OH reaction has been theoretically investigated using the DFT (B3LYP/6-311G(d,p)) level of theory. Both singlet and triplet potential energy surfaces are investigated. The reaction mechanism on the triplet surface is simple. However, the reaction mechanism on the singlet surface is more complicated. It is revealed that the formation of CF3O + HO2 is the dominant channel on the triplet surface. The potential energy surface (PES) for this reaction has been given according to the relative energies calculated at the DFT/B3LYP/6-311G(d,p) level. Because this reaction involves both triplet and singlet states, triplet–singlet intersystem crossing (ISC) crossing also have been investigated in this paper.  相似文献   

13.
New anisotropic ESR spectra of Co2+ doped sapphire, different from hitherto known, are reported. The new spectra which are observed, beside the well-known spectra of α-Al2O3:Co2+, are shown to form two sets, each one consisting of six spectra (1–6) and (7–12). The spectra of both sets are proven to be interrelated by B3a symmetry. g and A tensors for each set will be given. Evidence is given that the two sets are to be assigned to the defects α-Al2O3:Co2+,H+ and α-Al2O3:Co2+,X+. The former is concluded to consists of a Co2+ ion at the substitutional site (c) and a proton located in a potential minimum along a straight line between O2- ions situated in O2+ triangles above and below the CO2+ ion. The potential function for the proton has been calculated by quantum-chemical calculations to clucidate the geometrical structure of the paramagnetic center. The α-Al2O3:Co2+,X+ could not be fully analyzed but some evidence is presented, that X+ might be alkali ions.  相似文献   

14.
The mechanism of reaction Cl2+2HBr=2HCl+Br2 has been carefully investigated with density functional theory (DFT) at B3LYP/6-311G** level. A series of three-centred and four-centred transition states have been obtained. The activation energy (138.96 and 147.24 kJ/mol, respectively) of two bimolecular elementary reactions Cl2+HBr→HCl+BrCl and BrCl+HBr→HCl+Br2 is smaller than the dissociation energy of Cl2, HBr and BrCl, indicating that it is favorable for the title reaction occurring in the bimolecular form. The reaction has been applied to the chemical engineering process of recycling Br2 from HBr. Gaseous Cl2 directly reacts with HBr gas, which produces gaseous mixtures containing Br2, and liquid Br2 and HCl are obtained by cooling the mixtures and further separated by absorption with CCl4. The recovery percentage of Br2 is more than 96%, and the Cl2 remaining in liquid Br2 is less than 3.0%. The paper provides a good example of solving the difficult problem in chemical engineering with basic theory.  相似文献   

15.
Electrolysis of suspensions of Co3O4 particles in Pb2+-containing electrolytes has been used for depositing PbO2 + Co3O4 composite layers on Ni rotating dise anodes. A sufficiently high angular speed of the electrode is necessary to obtain layers of homogeneous thickness and Co3O4 concentration. The volume fraction of Co3O4 particles in the deposit α reaches a limiting value of ca. 0.1 when the volume fraction of particles in suspension C exceeds 0.008. The current density j has little effect on α as long as it is in the range 1 to 20 mA cm−2; if j increases further, α decreases.PbO2 + Co3O4 composite layers have been studied as electrode materials for the oxygen evolution reaction (mainly in NaOH solution). The overpotential and Tafel slope decrease upon increasing α. At a fixed potential, j is roughly proportional to OH concentration. The PbO2 + Co3O4 electrode performance is fairly stable at 25°C but declines with time at higher temperature.  相似文献   

16.
在aug-cc-pVTZ基组下采用CCSD(T)和B3LYP方法,研究了H2O2+Cl反应,并考虑在大气中单个水分子对该反应的影响.结果表明,H2O2+Cl反应只存在一条生成产物为HO2+HCl的通道,其表观活化能为10.21kJ·mol-1.加入一分子水后,H2O2+Cl反应的产物并没有发生改变,但是所得势能面却比裸反应复杂得多,经历了RW1、RW2和RW3三条通道.水分子在通道RW1和RW2中对产物生成能垒的降低起显著的负催化作用,而在通道RW3中则起明显的正催化作用.利用经典过渡态理论(TST)并结合Wigner矫正模型计算了216.7-298.2 K温度范围内标题反应的速率常数.结果显示,298.2 K时通道R1的速率常数为1.60×10-13cm3·molecule-1·s-1,与所测实验值非常接近.此外,尽管通道RW3的速率常数kRW3比对应裸反应的速率常数kR1大了46.6-131倍,但该通道的有效速率常数k'RW3却比kR1小了10-14个数量级,表明在实际大气环境中水分子对H2O2+Cl反应几乎没有影响.  相似文献   

17.
The reaction of Ar+ with H2O has been investigated at near-thermal energy. The product ions H2O+ and ArH+ account for 90 and 10% of the total reaction rate, respectively. Kinetic energy measurements and emission spectroscopy of the H2O+ product ions are reported. It is concluded that at least 60% of H2O+ ions are in the X? state with ≈2.4 eV vibrational energy while up to 40% are in the à state with a mean vibrational energy of 1.4 eV; the à state vibrational distribution has been determined. It is shown that both H2O+ states are populated via an energetically “non-resonant” charge transfer process.  相似文献   

18.
The rate constant and the product distribution for the reaction of D3+ with H2 has been measured as a function of the D3+ vibrational energy. In these experiments a mass analyzed beam of D3+ ions is decelerated to less than 0.1 eV and is subsequently injected into an ion cyclotron resonance (ICR) cell where reaction with H2 may occur. Ion detection is achieved using a conventional oscillator-detector. The number of D3+-D2 coliisions was varied from 0 to 10 by changing the D2 pressure in the source of the first stage of the instrument.  相似文献   

19.
通过简易的两步法制备一系列Co_3O_4/CeO_2异质结。其结构、形貌和微结构分别通过X射线衍射(XRD)、扫描电镜(SEM)和高分辨透射电镜(HRTEM)表征。在碱性介质中,其电催化析氧性能随着Co_3O_4/CeO_2质量比的变化而变化,并有一最佳值。当Co_3O_4和CeO_2质量比为58.5%时,在1.0 mol·L~(-1)KOH溶液中,10 mA·cm~(-2)的电流密度下,过电位为347 mV,Tafel斜率为72.7mV·dec~(-1),并且稳定性良好。此时的过电位低于Co_3O_4(440 mV)、商用RuO_2(359 mV)和CeO_2(570 mV)。X射线光电子能谱(XPS)显示Co_3O_4的部分电子向CeO_2转移。这导致复合材料的导电性提高,CeO_2表面的氧空位浓度和活性氧物种增加。  相似文献   

20.
Ab initio UMP2 and UQCISD(T) calculations, with 6-311G** basis sets, were performed for the titled reactions. The results show that the reactions have two product channels: NH2+ HNCO?NH3+NCO (1) and NH2+HNCO?N2H3+CO (2), where reaction (1) is a hydrogen abstraction reaction via an H-bonded complex (HBC), lowering the energy by 32.48 kJ/mol relative to reactants. The calculated QCISD(T)//MP2(full) energy barrier is 29.04 kJ/mol, which is in excellent accordance with the experimental value of 29.09 kJ/mol. In the range of reaction temperature 2300–2700 K, transition theory rate constant for reaction (1) is 1.68×1011–3.29×1011 mL·mol-1·s-1, which is close to the experimental one of 5.0×1011mL·mol-1·s-1or less. However, reaction (2) is a stepwise reaction proceeding via two orientation modes,cis andtrans, and the energy barriers for the rate-control step at our best calculations are 92.79 kJ/mol (forcis-mode) and 147.43 kJ/mol (fortrans-mode), respectively, which is much higher than reaction (1). So reaction (1) is the main channel for the titled reaction.  相似文献   

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