GEOMETRY OF (NH3)N AND (H2O)N AGGREGATES ADSORBED ON WELL CHARACTERIZED MGO(100) AND SI(111)-(1X1)H SUBSTRATES

被引:34
|
作者
PICAUD, S
HOANG, PNM
GIRARDET, C
机构
[1] Laboratoire de Physique Moléculaire, URA CNRS 772, Université de Franche Comté
关键词
D O I
10.1016/0039-6028(92)90670-2
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
On the basis of semi-empirical potentials used to determine the structure of small gas phase clusters, we calculate the geometry of molecular aggregates (M)n(n = 2-5) physisorbed on ideal and clean corrugated surfaces. The competition between intra-adsorbate and adsorbate-substrate interactions is studied for the cases of ammonia and water aggregates adsorbed on H-passivated Si(111) and MgO(100) surfaces. It is shown that the adsorbate-substrate interactions are dominant for ammonia on Si(111) and for water on MgO(100) leading to planar aggregate geometries. However, the lateral interactions tend to prevent NH3 aggregation on the ionic substrate as they are repulsive and to favor compact H2O aggregates on the semiconductor. These features are in qualitative agreement with recent experimental results.
引用
收藏
页码:339 / 352
页数:14
相关论文
共 50 条
  • [21] Theoretical investigation on the interactions between HRnCCH and X( X=N-2, O-2, H2O, NH3)
    Han, Yu-Hua
    Long, Zheng-Wen
    Long, Bo
    Long, Chao-Yun
    Cai, Shao-Hong
    Zhang, Wei-Jun
    JOURNAL OF ATOMIC AND MOLECULAR SCIENCES, 2012, 3 (03): : 227 - 235
  • [22] SOME 1-ELECTRON PROPERTIES OF H2O AND NH3
    HARRISON, JF
    JOURNAL OF CHEMICAL PHYSICS, 1967, 47 (08): : 2990 - +
  • [23] Comparison of ultrafast photoinduced processes in indole(NH3)n and indole(H2O)n clusters
    Lippert, H
    Stert, V
    Schutz, CP
    Hertel, IV
    Radloff, W
    FEMTOCHEMISTRY AND FEMTOBIOLOGY: ULTRAFAST EVENTS IN MOLECULAR SCIENCE, 2004, : 49 - 52
  • [24] Catalytic effect of (H2O)n (n=1-3) on the HO2 + NH2 → NH3 + 3O2 reaction under tropospheric conditions
    Zhang, Tianlei
    Wang, Kai
    Qiao, Zhangyu
    Zhang, Yongqi
    Geng, Lin
    Wang, Rui
    Wang, Zhiyin
    Zhao, Caibin
    Jin, Linxia
    RSC ADVANCES, 2018, 8 (65) : 37105 - 37116
  • [25] THERMODYNAMICS AND KINETICS OF THE GAS-PHASE REACTIONS - H3O+(H2O)N-1 + H2O = H3O+(H2O)N
    LAU, YK
    IKUTA, S
    KEBARLE, P
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1982, 104 (06) : 1462 - 1469
  • [26] (H2O)_n,(H2O)_n-,H(H2O)_n+(n=1~6)电子结构的理论研究
    郭绍福
    赵春红
    李晓艳
    孙政
    河北师范大学学报(自然科学版), 2022, 46 (05) : 474 - 481
  • [27] Equilibrium configuration of ( H2O)(n), for n = 1-3
    Lamsal, Chiranjivi
    Mishra, Devendra Raj
    Ravindra, Nuggehalli M.
    NANOMATERIALS AND ENERGY, 2014, 3 (04) : 129 - 138
  • [28] Density functional investigations on the (H2O)n • CCH and (H2O)n • HCC complexes (n=1-3)
    Qu, ZW
    Zhu, H
    Zhang, XK
    Zhang, QY
    CHEMICAL PHYSICS LETTERS, 2003, 367 (1-2) : 245 - 251
  • [29] CLUSTER CATALYZED CHEMISORPTION OF H-2 ON SI(111)(1X1) - EFFECTS OF COLLISION SPEED AND CLUSTER GEOMETRY
    BEAUREGARD, JN
    MAYNE, HR
    JOURNAL OF CHEMICAL PHYSICS, 1993, 99 (09): : 6667 - 6676
  • [30] Proton transfer reactions within water clusters:: A model study using X••• (H2O)n clusters (X=H2O, NH3, H2S, HCI)
    Novoa, JJ
    Planas, M
    RECENT THEORETICAL AND EXPERIMENTAL ADVANCES IN HYDROGEN BONDED CLUSTERS, 2000, 561 : 379 - 388