Silylation and surface properties of chemically grafted hydrophobic silica

被引:95
|
作者
Capel-Sanchez, MC [1 ]
Barrio, L [1 ]
Campos-Martin, JM [1 ]
Fierro, JLG [1 ]
机构
[1] CSIC, Inst Catalisis & Petroleoquim, E-28049 Madrid, Spain
关键词
silylated silica; hydrophobic silica surface; DRIFTS; Si-29; MAS-NMR; XPS;
D O I
10.1016/j.jcis.2004.04.055
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
A commercial mesoporous silica (Grace Davison) was chemically grafted with trimethylsilyl chloride (TMSCI) and hexamethyldisilanaze (HMDS). The silylation process brought about some reduction in the specific BET area, the pore volume, and the pore sizes of the samples. Thermogravimetric studies of the silylated samples revealed that the grafting process is kinetically controlled at short reaction times. In the kinetic regime, increasing concentrations of the silylant agent up to 2 wt% in the solvent led to an increase of the extent of the silylated surface, although this limitation disappeared at higher concentrations. Silylation was confirmed by diffuse reflectance infrared Fourier transform (DRIFTS), Si-29 CP-MAS NMR, and photoelectron (XPS) spectroscopic techniques. Solid-state Si-29 MAS-NMR spectra of the silylated samples revealed the presence of -SiCH3 groups (9.5 ppm) together with two resonances, Q3 (approximate to -104 ppm) and Q4 (approximate to -114 ppm), coming from siloxane [Qn similar to Si(OSi)(n) (OH)(4-n), n similar to 2-4] groups, the Q3 signal decreasing upon silylation. The DRIFT spectra of the silylated samples exhibited two well defined bands at 2970 and 2907 cm(-1), due to stretching vibration modes of the C-H bonds in surface -CH3 groups formed during the silylation process, and also the disappearance of the band at 3740 cm(-1). This observation indicates the complete removal of terminal and geminal hydroxyl groups by grafting with the silylating agent. Similarly, high-resolution photoelectron spectra of the Si2p core levels showed a high binding-energy component (103.5 eV) in all the samples, coming from the Si coordinated with oxide anions in SiO2, together with a second component at 102.1 eV, which is the fingerprint of Si coordinated by oxide anions and an organic group. Finally, the samples were ranked according to their hydrophobicity, as determined from the temperature-programmed desorption profiles of adsorbed water and 2-methylbutane. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:146 / 153
页数:8
相关论文
共 50 条
  • [21] Structural, thermal and surface properties of sticky hydrophobic silica films: Effect of hydrophilic and hydrophobic precursor compositions
    Darmawan, Adi
    Saputra, Riza Eka
    Astuti, Yayuk
    CHEMICAL PHYSICS LETTERS, 2020, 761 (761)
  • [22] Surface Chemistry of Hydrophobic Silica Aerogels
    Malfait, Wim. J.
    Zhao, Shanyu
    Verel, Rene
    Iswar, Subramaniam
    Rentsch, Daniel
    Fener, Resul
    Zhang, Yucheng
    Milow, Barbara
    Koebel, Matthias M.
    CHEMISTRY OF MATERIALS, 2015, 27 (19) : 6737 - 6745
  • [23] Preparation of Antibacterial Polymer-Grafted Silica Nanoparticle and Surface Properties of Composites Filled with the Silica (2)
    Kawahara, Takashi
    Takeuchi, Yoko
    Wei, Gang
    Shirai, Kumi
    Yamauchi, Takeshi
    Tsubokawa, Norio
    POLYMER JOURNAL, 2009, 41 (09) : 744 - 751
  • [24] Chemically Grafted Carbon Nanotube Surface Coverage Gradients
    Shearer, Cameron J.
    Ellis, Amanda V.
    Shapter, Joseph G.
    Voelcker, Nicolas H.
    LANGMUIR, 2010, 26 (23) : 18468 - 18475
  • [25] Preparation and Activity of Ionic Liquid Catalysts Grafted on Hydrophobic Silica Gel
    Zhang, Xuelan
    Wang, Dengfeng
    NEW MATERIALS AND PROCESSES, PTS 1-3, 2012, 476-478 : 2621 - 2624
  • [26] Nitroxide radicals grafted in activated silica surface
    Pergushov, V.I.
    Osokina, N.Yu.
    Naumenko, P.I.
    Mel'nikov, M.Ya.
    Doklady Akademii Nauk, 2001, 376 (01) : 66 - 69
  • [27] DYNAMICAL CHARACTERISTICS OF MOLECULES GRAFTED TO THE SILICA SURFACE
    GOLUBEV, VB
    MATVEEV, VV
    STAROVEROV, SM
    LISICHKIN, GV
    TEORETICHESKAYA I EKSPERIMENTALNAYA KHIMIYA, 1988, 24 (06): : 701 - 707
  • [28] Characterization of hydrophobic silica aerogels properties
    School of Chemistry and Environmental Engineering, Changchun University of Science and Technology, Changchun 130022, China
    不详
    Cailiao Kexue yu Gongyi, 2007, 3 (358-361+365):
  • [29] Hydrophilic and hydrophobic silica-based nanocomposites of chemically recyclable thermoset
    de Souza, Eduarda C.
    Bello, Roger H.
    Coelho, Luiz A. F.
    POLYMER INTERNATIONAL, 2022, 71 (07) : 884 - 896
  • [30] Lateral Drop Rebound on a Hydrophobic and Chemically Heterogeneous Surface
    Ji, Tingting
    Pan, Yongcai
    Shao, Yufu
    He, Bing
    Wen, Binghai
    LANGMUIR, 2021, 37 (23) : 6905 - 6914