首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 125 毫秒
1.
本文采用密度泛函理论,结合周期性平板模型,通过对原子H、N、O、S和C,分子CO、N2、NH3、NO,以及自由基CH3、CH、CH2、OH在Ni(100)表面吸附的研究,比较了它们的吸附能,稳定吸附位点,吸附结构及扩散能垒等信息. 这些吸附质与表面结合能力从小到大依次是N2相似文献   

2.
本文系统研究了H、N、O、C、S等原子,N2、NH3、NO、CO等分子和CH3、CH、CH2和OH等自由基在Pt(100)表面的吸附. 从能量上来看,吸附能力从小到大的顺序是N2相似文献   

3.
本文系统研究了H、N、O、C、S等原子,N2、NH3、NO、CO等分子和CH3、CH、CH2和OH等自由基在Pt(100)表面的吸附. 从能量上来看,吸附能力从小到大的顺序是N2相似文献   

4.
本文系统研究了H、N、O、C、S等原子,N_2、NH_3、NO、CO等分子和CH_3、CH、CH_2和OH等自由基在Pt(100)表面的吸附.从能量上来看,吸附能力从小到大的顺序是N_2NH_3COCH_3NOHOHNCH2OSCHC.原子类吸附物中H、N、O的最稳定吸附位均为桥位,而S、C则倾向于四重空位.所研究的分子吸附物(N_2、NH3、CO、NO),N_2和NH_3有且只有一种顶位吸附结构,CO和NO均优先吸附在空位.自由基吸附物(CH、CH_2、CH_3、OH)在Pt(100)表面上的吸附,CH_3优先吸附在顶位,CH_2、OH它们的最稳定吸附位均为桥位.原子、分子和自由基吸附后,会引起Pt(100)原子层间距的改变.  相似文献   

5.
C-H,C-N,C-O,N-N的键离解能和键长的计算   总被引:5,自引:3,他引:2       下载免费PDF全文
用B3LYP/6-311G**和CCSD/cc-pVDZ方法对CH4、CH3、CN、CO、N2、CH3NH2、CH3NO2、NH2NO2八个分子中的C-H、C-N、C-O、N-N键离解能进行计算,通过比较研究可知,计算CH3、CH3NH2、CH3NO2分子中的C-H键离解能和CN、CO、N2分子的键离解能用B3LYP/6-311G**方法可靠,而计算CH3-H、CH3-NH2、CH3-NO2和NH2-NO2分子的键离解能用CCSD/cc-pVDZ方法更可信;用以上二种方法对本文的八个分子的平衡几何结构进行优化求出所需的键长,通过比较可知,CH4、CH3、CN、CO、N2分子用B3LYP/6-311G**的方法进行平衡几何优化求得的键长更可靠,而CH3NO2、NH2NO2、CH3NH2分子则用CCSD/cc-pVDZ方法优化出的键长是更可信.  相似文献   

6.
基于密度泛函理论系统研究了碳化钛(TiC)和氮化钛(TiN)非极性(001)表面吸附气体分子和原子的性能。鉴于这些材料拥有不同的电子结构特征,发现受电子的CO分子或未饱和的O和H原子在TiC(001)和TiN(001)表面吸附于不同的活性位点,而供电子的NH3和H2O气体分子或完全饱和的O2和H2分子仅倾向与两个表面的金属原子位点结合。这些吸附特性可能与此类材料表面的电子结构有关。  相似文献   

7.
氯化物熔盐作为传热储热工质,在太阳能热发电系统中应用时会造成金属管道的腐蚀和失效,严重威胁系统的运行安全.本文采用第一性原理方法,构建了不同腐蚀介质(Cl原子、H原子、O原子、OH基团以及H2O分子)在γ-Fe(111)表面的吸附微观物理模型,并阐明了其吸附性能.结果发现:Cl原子和H原子在γ-Fe(111)表面最稳定的吸附点位为Fcc位,O原子和OH基团最稳定的吸附位点为Hcp位,H2O分子最稳定的吸附位点位Top位.另外,O原子在γ-Fe(111)表面的吸附能和得到的电荷数最大,分别为-8.073 eV和0.53.这为管道的腐蚀研究提供了理论支撑.  相似文献   

8.
采用密度泛函理论(DFT)中的广义梯度近似(GGA),对Be_nNO (n=2-12)团簇进行了构型优化,稳定性和电子性质分析.结果表明:从n=3开始,Be_nNO的基态均为NO分子平行吸附于主团簇Be_n某一表面时形成的,此时N-O键自然断裂(N-O键伸长量均超过了100%),而N端吸附于Be-Be桥位的结构仅是Be_nNO (n=2-12)团簇的一个亚稳态结构.成键性质分析表明,NO平行吸附时,N,O原子倾向于同时吸附于近邻的三个Be原子面位,相应的Be_n团簇表现出了很好的吸附能力.此时N, O原子的sp~3轨道杂化出现的孤对电子对N-O键的断裂产生了重要影响.  相似文献   

9.
在G2 (CC ,MP2 )理论水平上研究了C2 (a3 Πu)自由基与NO分子的反应 .计算了反应体系最低二重态势能面上各驻点的构型参数、振动频率和能量 ,揭示了此反应存在两种反应机理 :由NO中的O原子进攻C2 自由基形成CCON中间体的CCON机理和NO中的N进攻C2 自由基形成CCNO中间体的CCNO机理 ,分析了对应与这两种反应机理的五个可能的反应通道 ,得出了由NO中的N原子进攻3 C2 自由基 ,生成中间体CCNO自由基 ,最终得到产物CN +CO的通道是最有利的通道 .  相似文献   

10.
研究光学气敏材料吸附气体后的光学气敏特性是气敏传感研究的热点问题。研究了金红石相TiO2(110)面吸附NH3的微观机制和光学气敏特性。结果表明,NH3分子容易被含氧空位缺陷的金红石相TiO2(110)面所吸附,且提高表面氧空位的比例,有利于NH3稳定吸附。表面吸附NH3分子以负电荷中心向下为主,当氧空位比例为33%时,吸附能为1.7313eV。表面吸附NH3为化学吸附,NH3的H原子被还原而N原子被氧化。含氧空位的表面吸附NH3在可见光1.5~3.1eV范围内,表面氧空位比例越大,其对可见光吸收和反射能力越强,光学气敏性越灵敏。  相似文献   

11.
采用密度泛函理论,在slab模型下,研究了NH_x(x=1~3)在Ir(100)、Ir(111)和Ir(110)表面上的最稳定吸附位置、几何构型以及逐步脱氢分解过程,计算了相应的吸附能和活化能.计算结果表明,在Ir(100)、Ir(111)面上,NH_3是以C_3轴垂直吸附在顶位,在Ir(110)上,NH_3是以N-Ir键与表面成68.6°吸附在顶位,且吸附能依赖于表面的结构而不同,相比而言,NH_3更容易吸附在开放表面Ir(100)、Ir(110)面上,说明NH_3在这些表面的吸附具有结构敏感性.NH_(x(x=1~3))的分解,在Ir(100),NH_3的吸附与分解存在竞争,在Ir(110)面NH_3最容易分解,在Ir(111)面NH_3是分子性吸附,不能分解.NH_2、NH在三个表面均能够分解,在Ir(110)面活化能均较高.  相似文献   

12.
陈玉红  杜瑞  张致龙  王伟超  张材荣  康龙  罗永春 《物理学报》2011,60(8):86801-086801
采用第一性原理方法研究了H2分子在Li3N(110)晶面的表面吸附. 通过研究H2/Li3N(110)体系的吸附位置、吸附能和电子结构发现: H2分子吸附在N桥位要比吸附在其他位置稳定,此时在Li3N(110)面形成两个-NH基,其吸附能为1.909 eV,属于强化学吸附;H2与Li3N(110)面的相互作用主要是H 1s轨道与N 关键词: 第一性原理 3N(110)')" href="#">Li3N(110) 2')" href="#">H2 吸附和解离  相似文献   

13.
The adsorption of SH and OH radicals on Ni(111) is treated using an ab initio embedding theory. The Ni(111) surface is modeled as a three-layer, 28-atom cluster with the Ni atoms fixed at bulk lattice sites. The Ni(111) energy surface is very flat for SH adsorption if the H tilt angle is allowed to vary. At both atop and bridge sites, the S---H axis is tilted away from the surface normal by 70°, resulting in the sulfur atom being sp3-hybridized and the adsorption energy being 59 kcal mol−1. For SH at the three-fold site, the S---H axis is normal to the surface, the sulfur is sp-hybridized, and the adsorption energy is 58 kcal mol−1. OH is preferentially adsorbed at the three-fold site. The calculated adsorption energy is 90 kcal mol−1 and the O---H axis is perpendicular to the surface. OH adsorption at the atop and bridge sites is 16 and 5 kcal mol−1 less stable than at the three-fold site, respectively. Atomic H, O and S are preferentially adsorbed at the three-fold site. The calculated adsorption energies are 62, 92 and 87 kcal mol−1, for H, O and S, respectively. The calculated adsorbate---Ni bond distances of 1.86 Å for H, 1.86 Å for O and 2.29 Å for S are in good agreement with experimental data. SH and OH bonding to the surface involves a combination of ionic and covalent contributions and substantial mixing with the Ni 3d orbitals. Dipole-moment calculations indicate strong ionic bonding for the atomic O/Ni system and ionic plus covalent character for the atomic S/Ni interactions. Adsorption of S and O at the three-fold site blocks H adsorption at the nearby surface. Moving H away from the S or O adatom reduces the repulsion. The dissociation of SHad → Sad + Had is calculated to be exothermic by 5 kcal mol−1 and OHad → Oad + Had to be endothermic by 30 kcal mol−1 for infinite separation between S, O and H.  相似文献   

14.
The computational formalism of the full-potential all-electron linearized augmented plane wave plus local orbitals (FP-LAPW+lo) method has been employed to study the relaxation of the δ-Pu(1 1 1) surface and the consequent effects for atomic adsorption of C, N, and O atoms on this surface. The underlying theoretical principle is the generalized gradient approximation to density functional theory (GGA-DFT) and the surface was modeled by a five-layer slab with a (2×2) surface unit cell. Upon relaxation of the slab, the interlayer separation between the surface and the subsurface layers expanded by 7.1% with respect to the bulk interlayer separation, while the separation between the subsurface and central layers expanded by 0.4%. To study adsorption on the surface, the adatoms were allowed to approach the surface at four high symmetry adsorption sites, namely, the top, bridge, hollow FCC, and hollow HCP sites, the adlayer structure corresponding to a coverage of 0.25 of a monolayer in all cases. The hollow FCC adsorption site was found to be the most stable site for C and N with chemisorption energies of 6.420 and 6.549 eV, respectively, while the hollow HCP adsorption site was found to be the most stable site for O with a chemisorption energy of 7.858 eV. The respective distances of the C, N, and O adatoms from the surface were found to be 1.22, 1.09, and 1.22 Å. The work function and net magnetic moments, respectively, increased and decreased in all cases upon chemisorption compared with the bare δ-Pu(1 1 1) surface. The electronic structure of the interactions between the adsorbates and the substrate is discussed in detail.  相似文献   

15.
Periodic density functional theory (DFT) calculations using plane waves had been performed to systematically investigate the stable adsorption amine and its dehydrogenated reaction on Au(1 1 1) surface. The equilibrium configuration including on top, bridge, and hollow (fcc and hcp) sites had been determined by relaxation of the system. The adsorption both NH3 on top site and NH2 on bridge site is favorable on Au(1 1 1) surface, while the adsorption of NH on hollow (fcc) site is preferred. The adsorbates are adsorbed on the gold surface with the interaction between p orbital of adsorbate and the d orbital of gold atoms. The interaction between adsorbate and gold slab is more evident on the first layer than on any others. Furthermore, the dissociation reaction of NH3 on clean gold surface, as well as on the pre-covered oxygen atom and pre-covered hydroxyl group surface had been investigated. The results show that the dehydrogenated reaction energy barrier on the pre-covered oxygen gold surface is lower. The adsorbed O can promote the dehydrogenation of amine. Additionally, OH as the product of the NH3 dissociation reaction participates in continuous dehydrogenation reaction, and the reaction energy barrier is the lowest (22.77 kJ/mol). The results indicated that OHads play a key role in the dehydrogenated reaction on Au(1 1 1) surface.  相似文献   

16.
氧原子在X@Al12 (X=C,Si,P+ )团簇吸附性质的研究   总被引:1,自引:0,他引:1  
利用密度泛函理论了对X@Al12 (X=C, Si, P+)团簇吸附氧原子特性进行了研究,分别分析了氧原子在三个吸附位置(顶位置、桥位置和空位置)的氧原子吸附能,HOMO-LOMO能隙和电荷转移等性质。结果表明氧原子更倾向于吸附在空位位置。C@Al12和Si@Al12, P+@Al12 在对氧的吸附性质上比较接近。氧在X@Al12(X= C, Si, P+)的吸附性质与Al13−有显著不同。在Al13−O中O是倾向于以桥位形式吸附在Al13−上的。X@Al12(X=C, Si, P+)和Al13−的电子结构有着明显的差异,这导致了O在这些团簇表面不同的吸附形式,表明掺杂可以有效的改变团簇的性质。  相似文献   

17.
利用密度泛函理论了对X@Al12 (X=C, Si, P+)团簇吸附氧原子特性进行了研究,分别分析了氧原子在三个吸附位置(顶位置、桥位置和空位置)的氧原子吸附能,HOMO-LOMO能隙和电荷转移等性质。结果表明氧原子更倾向于吸附在空位位置。C@Al12和Si@Al12, P+@Al12 在对氧的吸附性质上比较接近。氧在X@Al12(X= C, Si, P+)的吸附性质与Al13−有显著不同。在Al13−O中O是倾向于以桥位形式吸附在Al13−上的。X@Al12(X=C, Si, P+)和Al13−的电子结构有着明显的差异,这导致了O在这些团簇表面不同的吸附形式,表明掺杂可以有效的改变团簇的性质。  相似文献   

18.
The adsorption properties of a variety of atomic species (H, O, N, S, and C), molecular species (N2, HCN, CO, NO, and NH3) and molecular fragments (CN, NH2, NH, CH3, CH2, CH, HNO, NOH, and OH) are calculated on the (111) facet of palladium using periodic self-consistent density functional theory (DFT–GGA) calculations at ¼ ML coverage. For each species, we determine the optimal binding geometry and corresponding binding energy. The vibrational frequencies of these adsorbed species are calculated and are found to be in good agreement with experimental values that have been reported in literature. From the binding energies, we calculate potential energy surfaces for the decomposition of NO, CO, N2, NH3, and CH4 on Pd(111), showing that only the decomposition of NO is thermochemically preferred to its molecular desorption.  相似文献   

19.
Appearance energies of [M-H](-) ions from carbonyl compounds R-CO-R' (R,R' = H, CH(3), NH(2), OH) have been measured by means of negative ion mass spectrometry in resonant electron capture mode. Values of electron affinity of the corresponding radicals, CH(2)&dbond;C(X)O, NH&dbond;C(X)O and O&dbond;C(X)O, have been determined. Copyright 1999 John Wiley & Sons, Ltd.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号