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1.
应用EAM模型研究了氢在Ni(511)面的吸附和解离.首先计算了单个氢原子在Ni(511)面上的吸附能、吸附键长及吸附高度,发现氢在Ni(511)面上有三种相对稳定的吸附位,即台阶棱上的二重桥位B、台阶面上的三重洞位H3′以及平台面上的四重洞位H1和H2.与Ni(001)低指数面相比,明显的增加了台阶棱上的二重桥位B以及台阶面上的三重洞位H3′,并且H1位的吸附性也有所增强,说明台阶的存在影响了氢在Ni(511)表面的吸附性,使台阶附近的吸附位增多且吸附性增强;然后计算了氢分子在台阶表面上解离吸附时的活化势垒、吸附能、氢镍之间键长及氢氢之间的距离,计算结果表明台阶底部更易于使氢分子解离,台阶附近是氢吸附和解离的活性部位.  相似文献   

2.
以Ni和Cu原子中心替换的二十面体Al_(12)X(X=Ni、Cu)团簇为基体、采用密度泛函理论系统计算研究了H原子及H_2分子在团簇表面的吸附,并对比了纯Al_(13)团簇对H及H2的吸附,结果表明:相对于纯Al_(13)中H原子的桥位吸附、掺杂团簇Al_(12)X(X=Ni、Cu)中H原子均吸附于团簇顶位;无论是吸附H原子还是H_2分子,Al_(12)Ni的几何结构均发生大的畸变;相较H_2在纯Al_(13)团簇表面的解离吸附,H_2在掺杂团簇Al_(12)X(X=Ni、Cu)表面的解离反应过程中反应能均增大、势垒均降低,这表明掺杂团簇Al_(12)X(X=Ni、Cu)相较纯Al_(13)团簇更有利于H_2解离吸附的发生.  相似文献   

3.
李波  鲍世宁  曹培林 《物理学报》2005,54(12):5784-5790
采用平面波赝势方法,利用基于从头计算的软件包,对乙烯和乙炔基在Ni(110)表面上吸附的问题进行了计算. 在低覆盖度时,孤立的乙烯分子的吸附能比密集时高,乙烯分子的C-C 轴大致沿衬底的Ni原子链方向(即沿[110]晶向),C-C轴与衬底Ni(110)表面有12°的倾斜角,乙烯分子的C—C键的键长为 0.147nm. 乙烯分子中接近顶位的C原子与衬底中距离最近的Ni原子为0.199nm. 在高覆盖度时,乙烯分子在Ni(110)表面上形成c(2×4)再构,每个表面二维元胞中有两个乙烯分子,每个乙烯分子的吸附位置与低覆盖度时相似,而C—C键长比低覆盖度时要短. 乙炔基是乙烯在Ni(110)表面上分解的产物. 关于乙炔基的计算结果表明:乙炔基的两个C原子的间距为0.131nm,比乙烯分子中C原子的间距更短. 与乙烯分子相比,乙炔基的吸附位置更靠近顶位. H原子与吸附在顶位上的C原子相连接,C—H键也大致沿衬底的Ni原子链方向,与Ni表面呈45°的倾斜角. 关键词: 乙烯和乙炔基 平面波赝势方法 吸附几何结构  相似文献   

4.
以Ni和Cu原子中心替换的二十面体Al12X(X=Ni、Cu)团簇为基体、采用密度泛函理论系统计算研究了H原子及H2分子在团簇表面的吸附,并对比了纯Al13团簇对H及H2的吸附,结果表明:相对于纯Al13中H原子的桥位吸附、掺杂团簇Al12X(X=Ni、Cu)中H原子均吸附于团簇顶位;无论是吸附H原子还是H2分子,Al12Ni的几何结构均发生大的畸变;相较H2在纯Al13团簇表面的解离吸附,H2在掺杂团簇Al12X(X=Ni、Cu)表面的解离反应过程中反应能均增大、势垒均降低,这表明掺杂团簇Al12X(X=Ni、Cu)相较纯Al13团簇更有利于H2解离吸附的发生。  相似文献   

5.
二聚物在Cu表面上的扩散和解离研究   总被引:1,自引:0,他引:1       下载免费PDF全文
唐彦雨  李融武 《物理学报》2012,61(18):186802-186802
利用分子动力学模拟统计了几种不同温度下三种不同二聚物(Cu2, Ag2和Pd2)在铜衬底(100), (111)表面上的扩散和解离行为, 探讨同质和异质二聚物在Cu表面上扩散和解离的特点; 采用分子动力学中的静态计算方法计算了这三种二聚物在扩散和解离过程中的能量势垒, 并与动力学模拟、二聚物与衬底的结合能等结果进行了比较, 探讨二聚物扩散和解离过程与扩散势垒、结合能、表面性质和温度等的关系. 原子间相互作用采用半经验EAM势. 结果表明: 同质和异质二聚物在各个不同表面上的扩散势垒、解离势垒有一定的规律, 并和二聚物与衬底的结合性质有关; 二聚物是否易解离与衬底表面的结构以及二聚物与衬底的结合性质关系密切; 二聚物解离前协同扩散的快慢与二聚物和衬底的结合性质以及二聚物在表面的扩散和解离势垒密切相关.  相似文献   

6.
用理论计算的方法研究了不同覆盖度的乙烯在Ni(110)表面吸附的位置.乙烯的吸附几何结构在团簇计算中进行了局部优化.在低覆盖度下,单个乙烯分子占据了短桥位和顶位之间的中间位置.乙烯分子的C—C轴大致沿衬底的Ni原子链排列(即沿<110>晶向),C—C轴与衬底Ni(110)表面有10°的倾斜角.乙烯分子的C—C键的键长为0151nm.在高覆盖度下(05ML),乙烯在Ni (110)上形成了有序的c(2×4)相,在一个表面元胞内的两个乙烯分子的吸附位置类似于低覆盖度时的结果,但乙烯分子的C—C 键键长分别为0142和0143nm.  相似文献   

7.
利用分子动力学中的静态结构计算方法对Pd,Ag及Cu原子在面心立方铜的台阶表面扩散过程中的Ehrlich-Schwoebel(ES)势垒进行了模拟计算,研究了各种台阶表面情况下增原子扩散过程中的ES势垒;讨论了与衬底互溶的金属和与衬底不互溶的金属增原子扩散的ES势垒的异同,并将模拟结果与同质情况的研究结果进行了对比. 结果表明: 1)在同质和异质扩散过程中ES势垒随着台阶高度的变化关系是相似的,即随着台阶高度的增加,ES势垒逐渐增加;当台阶高度达到某一高度时ES势垒将趋于定值. 2)在跳跃机理下,与Cu互溶的金属(Pd)在Cu表面台阶上扩散的ES势垒最大,其次是Cu,最小的是与Cu不互溶的金属 (Ag);而在交换机理下,与Cu不互溶的金属(Ag)在Cu表面台阶上扩散的ES势垒最大,其次是Cu,最小的是与Cu互溶的金属(Pd). 3)对大多数台阶的情况,交换机理支配着原子在台阶边缘的扩散行为;且表面台阶高度对交换扩散过程影响较大.  相似文献   

8.
本文用密度泛函理论(DFT)的总能计算研究了一氧化碳和氢原子在Ni(111)表面上p(2×2)共吸附系统的原子结构和电子态,结果表明CO和H原子分别被吸附于两个对角p(1×1)元胞的hcp和fcc位置.以氢分子和CO分子作为能量参考点,总吸附能为2.81 eV,相应的共吸附表面功函数φ为6.28 eV.计算得到的C—O,C—Ni和H—Ni的键长分别是1.19?, 1.96?和 1.71?,并且CO分子以C原子处于hcp的谷位与金属衬底原子结合.衬底Ni(111)的最外两层的晶面间距在吸附后的相对变化分别是 关键词: Fisher-Tropsch反应 催化作用 Ni(111) p(2×2)/(CO+H) 共吸附  相似文献   

9.
本文采用基于密度泛函理论的第一性原理方法, 并同时考虑范德华力的作用, 计算并分析了CO在Cu(110)表面的吸附情况. 结果表明: 1) CO在两个表面Cu原子的短桥位位置吸附最强, 吸附能为1.28 eV. 第二稳定吸附位置为表面Cu原子的顶位, 吸附能为1.23 eV. CO在其他两个位置, 表面两个Cu的长桥位和表面四个Cu的中心位的吸附要弱一些, 约为0.86 eV 和 0.83 eV. 2) 在Cu表面吸附的CO的C-O键长有部分拉长, 这与较强的吸附能和电荷转移相应. 3) 电荷分析表明所有吸附的CO整体上从衬底上面获得部分电荷, 约为0.2 个电荷.  相似文献   

10.
利用密度泛函理论研究了0.25单层(ML),0.5ML,0.75ML和1ML吸附率下H2O在SrTiO3-(001)TiO2表面上的吸附行为.比较了不同吸附率下分子吸附和解离吸附的稳定性,利用微动弹性带(nudged elastic band)方法计算了H2O的解离势垒.结果表明:在低吸附率(0.25ML和0.5ML)时,H2O表现为解离吸附;在0.75ML吸附率下,分子吸附和解离吸附同时存在;而在全吸附(吸附率为1ML)时,分子吸附更稳定.基于对H2O分子与表面之间以及H2O分子之间的电荷转移和相互作用的分析,讨论了吸附率对H2O吸附和解离的影响.  相似文献   

11.
The thermal and electro impact behaviour of NO adsorbed on Pt(111) and Pt(110) have been studied by LEED, Auger spectroscopy, and thermal desorption. NO was found to adsorb non-dissociatively and with very similar low coverage adsorption enthalpies on the two surfaces at 300 K. In both cases, heating the adlayer resulted in partial dissociation and led to the appearance of N2 and O2 in the desorption spectra. The (111) surface was found to be significantly more active in inducing the thermal dissociation of NO, and on this surface the molecule was also rapidly desorbed and dissociated under electron impact. Cross sections for these processes were obtained, together with the desorption cross section for atomically bound N formed by dissociation of adsorbed NO. Electron impact effects were found to be much less important on the (110) surface. The results are considered in relation to those already obtained by Ertl et al. for NO adsorption on Ni(111) and Pd(111), and in particular, the unusual desorption kinetics of N2 production are considered explicitly. Where appropriate, comparisons are made with the behaviour of CO on Pt(111) and Pt(110), and the adsorption kinetics of NO on the (110) surface have been examined.  相似文献   

12.
The interaction between H adatoms on a surface is calculated within the embedded cluster model of chemisorption. The model is first applied to the case of two H atoms on a free electron surface. The interaction energy is found to be an oscillatory function of the H-H separation Rab. Application of the free electron model to the problem of chemisorption on transition metal surfaces leads to unphysical results with the prediction of formation of ordered H overlayers which are not observed in LEED experiments. We next include the l = 2 TM muffin tins. Results for H adsorption on the low index faces of Ni and Pd substrates are presented. Graphitic structures are predicted for the (111) faces of both Ni and Pd with the H atoms occupying both types of three-fold hollow sites on the surface. This agrees with the results of LEED experiments for H/Ni(111). Comparison with experiment is not possible in the case of H/Pd(111) owing to the lack of low temperature studies for that system. Zig-zag chains with the H atoms adsorbed in sites of three-fold coordination on alternate sides of the TM(110) rows are predicted for both Ni and Pd. This is in agreement with the results of He diffraction experiments for H/Ni(110). No structure determination has been done for H/Pd(110). Adsorption in the four-fold centre sites for H on the (100) faces of Ni and Pd is found to be unfavourable. The H atoms are expected to adsorb in sites of three-fold symmetry below the (100) surface for H on Pd with formation of a c(2 × 2) structure in agreement with the LEED observations. For H/Ni(100) the H atoms are believed to adsorb above the surface, away from the centre site and to bond to two surface Ni atoms. No short-range ordered structures are predicted in this case.  相似文献   

13.
Empirical potential parameters for H, C and Ni elements have been developed for the ReaxFF force field in order to study the decomposition of small hydrocarbon molecules on nickel using molecular dynamics simulations. These parameters were optimized using the geometrical and energetic information obtained from density functional (DFT) calculations on a subset of hydrogen and methane reactions with nickel (111) surfaces. The resulting force field was then used to obtain a molecular perspective of the dynamics of the methane dissociative adsorption on Ni(111) as well as two other small alkane molecules, ethane and n-butane. NVT simulations of dissociative adsorption of methane over a range of temperatures enabled the estimation of the sticking coefficient for the adsorption as well as the activation energy of the first C–H bond breaking. The rate constants of each elementary step (both forward and reverse) of CHx dissociation on Ni(111) were obtained by monitoring the surface species and a microkinetic model was constructed as a result. Qualitative analyses of the simulations of ethane and n-butane decompositions on Ni(111) demonstrate that such reactive MD technique can also be used to obtain useful information on complex reaction networks.  相似文献   

14.
When Langmuir is too simple: H2 dissociation on Pd(111) at high coverage   总被引:1,自引:0,他引:1  
Recent experiments of H2 adsorption on Pd(111) [Nature (London) 422, 705 (2003)]] have questioned the classical Langmuir picture of second order adsorption kinetics at high surface coverage requiring pairs of empty sites for the dissociative chemisorption. Experiments find that at least three empty sites are needed. Through density functional theory, we find that H2 dissociation is favored on ensembles of sites that involve a Pd atom with no direct interaction with adsorbed hydrogen. Such active sites are formed by aggregation of at least 3 H-free sites revealing the complex structure of the "active sites."  相似文献   

15.
Vibrational spectra of acetylene chemisorbed on Cu(111), Ni(110) and Pd(110) at 110–120 K were measured using electron energy loss spectroscopy. Loss peaks were assigned to vibrational modes of the non-dissociatively adsorbed molecules with the aid of the corresponding C2D2 spectra. The spectra show that the molecules undergo significant rehybridisation on adsorption. Comparisons are made with the spectra of acetylene adsorbed on a range of other transition metal surfaces at low temperature. Taking into account these and earlier literature results, two distinct patterns of spectra are observed (Type A and Type B) for specular spectra. The Cu(111) spectrum is classified as Type A while the Ni(110) and Pd(110) spectra are classified as Type B. Suggestions are made for the structures of the surface species corresponding to the two spectral types.  相似文献   

16.
Many fundamental questions are still unanswered regarding the very existence of precursor states and the microscopic mechanism of its population in the case of dissociative adsorption of light molecules on metal surfaces. We report results of classical trajectory calculations for H(2)/Pd(110) based on a six-dimensional potential energy surface obtained from ab initio calculations and a generalized Langevin oscillator model to account for energy exchange with the surface and dissipation. A quantitative characterization of the dynamic process is obtained which elucidates the respective roles played by direct dissociation, dynamic trapping, and precursor mediated adsorption. We predict the existence of H2 molecular chemisorption and provide the precise adsorption conditions for its experimental observation.  相似文献   

17.
本文基于密度泛函理论(DFT)的第一性原理研究了苯并三氮唑(BTA)分子吸附于铜表面的反应活性特征及其吸附在三种不同取向晶面时的电荷转移以及成键情况,结果表明:BTA分子的亲电和亲核活性中心为N(1)、N(2)和C(5),在铜表面垂直吸附时为化学吸附,Cu原子的最外层价电子转移到N(2)原子上,两者形成配位键;BTA分子在三种不同取向的铜表面吸附时的吸附能大小为:Cu(110)x>Cu(100)x>Cu(111)x(x=T、B、H),T表示顶位,B表示桥位,H表示空位;BTA吸附在Cu(111)面的转移电荷量:T(顶位)>B(桥位)>H(空位).  相似文献   

18.
The adsorption and thermal behavior of NO on ‘flat’ Pd(111) and ‘stepped’ Pd(112) surfaces has been investigated by temperature programmed desorption (TPD), high resolution electron energy loss spectroscopy (HREELS), and electron stimulated desorption ion angular distribution (ESDIAD) techniques. NO is shown to molecularly adsorb on both Pd(111) and Pd(112) in the temperature range 100–373 K. NO thermally desorbs predominantly molecularly from Pd(111) near 500 K with an activation energy and pre-exponential factor of desorption which strongly depend on the initial NO surface coverage. In contrast, NO decomposes substantially on Pd(112) upon heating, with relatively large amounts of N2 and N2O desorbing near 500 K, in addition to NO. The fractional amount of NO dissociation on Pd(112) during heating is observed to be a strong function of the initial NO surface coverage. HREELS results indicate that the thermal dissociation of NO on both Pd(111) and Pd(112) occurs upon annealing to 490 K, forming surface-bound O on both surfaces. Evidence for the formation of sub-surface O via NO thermal dissociation is found only on Pd(112), and is verified by dissociative O2 adsorption experiments. Both surface-bound O and sub-surface O dissolve into the Pd bulk upon annealing of both surfaces to 550 K. HREELS and ESDIAD data consistently indicate that NO preferentially adsorbs on the (111) terrace sites of Pd(112) at low coverages, filling the (001) step sites only at high coverage. This result was verified for adsorption temperatures in the range 100–373 K. In addition, the thermal dissociation of NO on Pd(112) is most prevalent at low coverages, where only terrace sites are occupied by NO. Thus, by direct comparison to NO/Pd(111), this study shows that the presence of steps on the Pd(112) surface enhances the thermal dissociation of NO, but that adsorption at the step sites is not the criterion for this decomposition.  相似文献   

19.
Room temperature adsorption of CO on bare and carbided (111), (100) and (110) nickel surfaces has been studied by vibrational electron energy loss spectroscopy (EELS) and thermal desorption. On the clean (100) and (110) surfaces two configurations of CO adsorbed species, namely “terminal” and bridge bonded CO, are observed simultaneously. On Ni(111), only two-fold sites are involved. The presence of superficial carbon lowers markedly the bond strength of CO on Ni(111)C and Ni(110)C surfaces, while no adsorption has been detected on the Ni(100)C surface. Moreover, on the carbided Ni(110)C surface, the adsorption mode for adsorbed CO is changed with respect to the clean surface; only “terminal” CO is then observed.  相似文献   

20.
徐永年  张开明 《物理学报》1983,32(7):911-916
本文用电荷自洽的EHT方法,研究了H原子在Al(111)和Ag(111)面上的吸附,结果指出:在Al(111)面上,H以原子状态吸附在某些对称位置上,它也能渗透到表面层中去,成为填隙原子;H2分子在表面处发生解离吸附。在Ag(111)表面上,H原子有可能以分子状态吸附,H—H键平行于表面,这与高分辨率电子能量损失谱所得到的实验结果一致;但H2分子在Ag(111)表面也可能发生解离吸附。 关键词:  相似文献   

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