Theoretical study on the sequential hydroxylation of C82 fullerene based on Fukui function

被引:14
|
作者
Rodriguez-Zavala, J. G. [1 ]
Tenorio, F. J. [1 ]
Samaniego, Cuauhtemoc [1 ]
Mendez-Barrientos, C. I. [1 ]
Pena-Lecona, F. G. [1 ]
Munoz-Maciel, J. [1 ]
Flores-Moreno, R. [2 ]
机构
[1] Univ Guadalajara, Ctr Univ Los Lagos, Dept Ciencias Exactas & Tecnol, Guadalajara 47460, Jalisco, Mexico
[2] Univ Guadalajara, Ctr Univ Ciencias Exactas & Ingn, Dept Quim, Guadalajara 44430, Jalisco, Mexico
关键词
fullerene; hydroxylation; carbon system; MRI CONTRAST AGENTS; AIR-WATER-INTERFACE; ELECTRONIC-PROPERTIES; CHEMICAL-REACTIVITY; POLYHYDROXYLATED METALLOFULLERENE; FRONTIER ORBITALS; DENSITY; C-60; PERSPECTIVES; RELAXIVITY;
D O I
10.1080/00268976.2011.591743
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
In the present work semi-empirical PM3 method and ab initio density-functional theory calculations were performed in carbon systems. The condensed Fukui function was calculated and HOMO-LUMO were visualised in order to study the sequence of hydroxylation of two isomers of C-82 fullerene for the low coverage regime, with the formula C-82(OH)(x) where x = 0 - 12. It was found that there was a formation of dangling bonds on structures with an odd number of hydroxyl groups on the fullerene surface, which suggests an enhanced reactivity of these molecules. Nevertheless, the coverings with an even number of groups tend to the reconstruction of pi bonds, obtaining less reactive molecular structures. With the adsorption of the first group, a narrow HOMO-LUMO gap (1.28 eV) is observed in comparison with the C-82(OH)(2) system (1.70 eV), as is found in similar systems, such as C-60 fullerenol [E. E. Fileti et al., Nanotechnology 19, 365703 (2008); J.G. Rodriguez-Zavala and R. A. Guirado-Lopez, Phys. Rev. B 69, 075411 (2004)]. Through an analysis of the electronic structure to these coverings, a splitting of electronic energy levels in the structure with one hydroxyl group is observed, which could be one of the factors that causes the narrowing of the energy gap in this structure. On the other hand, with a coverage of 12 hydroxyl groups, the formation of an amphiphilic molecule, where the location of groups in one side of the C-82 surface provides an hydrophilic character, is observed, while the uncovered part has an hydrophobic character. This could be important in the formation of Langmuir monolayers. Finally, it is shown that the precise distribution of the OH groups on the fullerene surface plays a crucial role in the electronic structure of the polyhydroxylated fullerenes.
引用
收藏
页码:1771 / 1783
页数:13
相关论文
共 50 条
  • [21] Photoelectron spectra of thulium atoms encapsulated C82 fullerene, Tm2@C82 (III) and Tm2C2@C82 (III)
    Miyazaki, Takafumi
    Tokumoto, Youji
    Sumii, Ryohei
    Yagi, Hajime
    Izumi, Noriko
    Shinohara, Hisanori
    Hino, Shojun
    CHEMICAL PHYSICS, 2014, 431 : 47 - 50
  • [22] Unique Four-Electron Metal-to-Cage Charge Transfer of Th to a C82 Fullerene Cage: Complete Structural Characterization of Th@C3V(8)-C82
    Wang, Yaofeng
    Morales-Martinez, Roser
    Zhan, Xingxing
    Yang, Wei
    Wang, Yaxing
    Rodriguez-Fortea, Antonio
    Poblet, Josep M.
    Feng, Lai
    Wang, Shuao
    Chen, Ning
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (14) : 5110 - 5116
  • [23] An Improbable Monometallic Cluster Entrapped in a Popular Fullerene Cage: YCN@Cs(6)-C82
    Yang, Shangfeng
    Chen, Chuanbao
    Liu, Fupin
    Xie, Yunpeng
    Li, Fengyu
    Jiao, Mingzhi
    Suzuki, Mitsuaki
    Wei, Tao
    Wang, Song
    Chen, Zhongfang
    Lu, Xing
    Akasaka, Takeshi
    SCIENTIFIC REPORTS, 2013, 3
  • [24] A charged diatomic triple-bonded U≡N species trapped in C82 fullerene cages
    Meng, Qingyu
    Abella, Laura
    Yao, Yang-Rong
    Sergentu, Dumitru-Claudiu
    Yang, Wei
    Liu, Xinye
    Zhuang, Jiaxin
    Echegoyen, Luis
    Autschbach, Jochen
    Chen, Ning
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [25] Semiempirical Molecular Dynamics Study of Empty C2(3)-C82 Fullerene in Neutral and Charged Forms: Geometrical and Spectroscopic Characterization
    Solc, Roland
    Lukes, Vladimir
    Ilcin, Michal
    Rapta, Peter
    Zalibera, Michal
    Dunsch, Lothar
    JOURNAL OF PHYSICAL CHEMISTRY C, 2009, 113 (45): : 19658 - 19663
  • [26] A charged diatomic triple-bonded U≡N species trapped in C82 fullerene cages
    Qingyu Meng
    Laura Abella
    Yang-Rong Yao
    Dumitru-Claudiu Sergentu
    Wei Yang
    Xinye Liu
    Jiaxin Zhuang
    Luis Echegoyen
    Jochen Autschbach
    Ning Chen
    Nature Communications, 13
  • [27] An Improbable Monometallic Cluster Entrapped in a Popular Fullerene Cage: YCN@Cs(6)-C82
    Shangfeng Yang
    Chuanbao Chen
    Fupin Liu
    Yunpeng Xie
    Fengyu Li
    Mingzhi Jiao
    Mitsuaki Suzuki
    Tao Wei
    Song Wang
    Zhongfang Chen
    Xing Lu
    Takeshi Akasaka
    Scientific Reports, 3
  • [28] Laser flash photolysis study on photophysical and photochemical properties of C82
    Fujitsuka, M
    Watanabe, A
    Ito, O
    Yamamoto, K
    Funasaka, H
    Akasaka, T
    JOURNAL OF PHYSICAL CHEMISTRY B, 1999, 103 (44): : 9519 - 9523
  • [29] Relative stabilities and spectroscopic characterization of C82O3 based on C82 (C3v)
    Teng, Yifei
    Chen, Tanzhang
    Du, Jingshan
    Teng, Qiwen
    Wu, Shi
    INDIAN JOURNAL OF CHEMISTRY SECTION A-INORGANIC BIO-INORGANIC PHYSICAL THEORETICAL & ANALYTICAL CHEMISTRY, 2014, 53 (11): : 1371 - 1376
  • [30] Popular C82 Fullerene Cage Encapsulating a Divalent Metal Ion Sm2+: Structure and Electrochemistry
    Hu, Ziqi
    Hao, Yajuan
    Slanina, Zdenek
    Gu, Zhenggen
    Shi, Zujin
    Uhlik, Filip
    Zhao, Yunfeng
    Feng, Lai
    INORGANIC CHEMISTRY, 2015, 54 (05) : 2103 - 2108