Molecular Dynamics Simulation of Fullerene C60 in Ethanol Solution

被引:38
|
作者
Cao, Zhen [2 ]
Peng, Yuxing [2 ]
Li, Shu [2 ]
Liu, Lei [2 ]
Yan, Tianying [1 ]
机构
[1] Nankai Univ, Inst Comp Sci, Tianjin 300071, Peoples R China
[2] Nankai Univ, Inst New Energy Mat Chem, Dept Chem Mat, Tianjin 300071, Peoples R China
来源
JOURNAL OF PHYSICAL CHEMISTRY C | 2009年 / 113卷 / 08期
关键词
HYDROGEN-BOND KINETICS; CARBON NANOTUBES; HYDROPHOBIC SOLUTES; LIQUID ETHANOL; SOLVATION SHELLS; HYDRATION SHELLS; AQUEOUS-SOLUTION; WATER-STRUCTURE; FORCE-FIELD; CLUSTERS;
D O I
10.1021/jp805894g
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
An ethanol solution containing one or two fullerene C-60 molecules was studied via molecular dynamics simulation. We found that the ethanol molecules form several solvation shells around the central fullerene molecule. Radial distribution functions (RDFs) and hydrogen-bond analyses were employed to detect the structure of the ethanol molecules in the solvation shells. The ethanol molecules in the first solvation shell tend to have their nonpolar alkyl groups exposed to the C-60 surface while the polar hydroxyl groups point outward to maintain a hydrogen-bond network with a clathrate-like structure. Such orientation of the ethanol molecules in the first solvation shell modulates the orientation of the ethanol molecules in the second solvation shell to have the hydroxyl groups pointing inward. The potential of mean force (PMF) between two C-60 molecules in ethanol solution showed that C-60 molecules tend to aggregate in the ethanol solution. There is no ethanol molecule in the intersolute area if the distance between the centers of mass of two C-60 molecules is shorter than 10.2 angstrom. The ethanol molecules near the intersolute area tend to have their methyl groups penetrating into the intersolute region if the distance between two C-60 molecules is short, although the hydroxyl,groups have smaller volume. We analyzed the dynamic properties of the ethanol molecules in different solvation shells and found that the relaxation is much slower than that of water solution of C-60 molecules. In addition, the relaxation of the first solvation shell is slower than that in other solvation shells. The lifetime of the hydrogen-bond in the first solvation shell is also longer than that in other solvation shells while the reorientation of the hydrogen-bonded ethanol pair contributes little to break the hydrogen-bonds.
引用
收藏
页码:3096 / 3104
页数:9
相关论文
共 50 条
  • [1] Molecular Dynamics Simulation of Fullerene C60 in Ethanol Solution (vol 113C, pg 3096, 2009)
    Cao, Zhen
    Peng, Yuxing
    Li, Shu
    Liu, Lei
    Yan, Tianying
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (12): : 5025 - 5025
  • [2] Molecular dynamics simulation of amorphization of carbon and thermal destruction of fullerene C60
    Polukhin, VA
    Kibanova, EA
    [J]. ZHURNAL FIZICHESKOI KHIMII, 1999, 73 (03): : 494 - 499
  • [3] Molecular dynamics simulation study of the influence of cluster geometry on formation of C60 fullerene clusters in aqueous solution
    Kim, Hojin
    Bedrov, Dmitry
    Smith, Grant D.
    [J]. JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2008, 4 (02) : 335 - 340
  • [4] A molecular dynamics simulation investigation into the structure of fullerene C60 grown on a diamond substrate
    Chang, JG
    Hwang, CC
    Ju, SP
    Huang, SH
    [J]. CARBON, 2004, 42 (12-13) : 2609 - 2616
  • [5] The model of the fullerene C60 and its ions C60+, C60− pseudopotentials for molecular dynamics purposes
    Kirill B. Agapev
    Ivan I. Vrubel
    Roman G. Polozkov
    Vadim K. Ivanov
    [J]. The European Physical Journal D, 2018, 72
  • [6] Molecular recognition of fullerene C60
    Raston, CL
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1999, 217 : U926 - U926
  • [7] Molecular dynamics simulations of noble gases encapsulated in C60 Fullerene
    Event, W
    Smith, J
    Roth, MW
    [J]. MOLECULAR SIMULATION, 2005, 31 (04) : 207 - 213
  • [8] Structure of fullerene C60 in aqueous solution
    Bulavin, L
    Adamenko, I
    Prylutskyy, Y
    Durov, S
    Graja, A
    Bogucki, A
    Scharff, P
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2000, 2 (08) : 1627 - 1629
  • [9] C60 fullerene aggregation in aqueous solution
    Prylutskyy, Yuriy I.
    Buchelnikov, Anatoly S.
    Voronin, Dmitry P.
    Kostjukov, Viktor V.
    Ritter, Uwe
    Parkinson, John A.
    Evstigneev, Maxim P.
    [J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2013, 15 (23) : 9351 - 9360
  • [10] Simulation of the thermal fragmentation of fullerene C60
    L. A. Openov
    A. I. Podlivaev
    [J]. JETP Letters, 2006, 84 : 68 - 72