Bantignies Jean-Louis, Vellutini Luc, Maurin David, Hermet Patrick, Dieudonné Philippe, Wong Chi Man Michel, Bartlett John R, Bied Catherine, Sauvajol Jean-Louis, Moreau Joël J E
Laboratoire des Colloïdes, Verres et Nanomatériaux (UMR CNRS 5587), Université Montpellier II, 34095 Montpellier Cedex 5, France.
J Phys Chem B. 2006 Aug 17;110(32):15797-802. doi: 10.1021/jp060975r.
Fourier transform infrared (FTIR) spectroscopy has been used to probe the organization of the organic fragments in lamellar bridged silsesquioxanes with organic substructures based on alkylene chains of various lengths and urea groups [O1.5Si(CH2)3NHCONH(CH2)nNHCONH(CH2)3SiO1.5] (n = 6, 8-12). The structure and intermolecular interactions (hydrophobic and H-bonding) of these well-defined self-structured hybrid silicas are discussed in relation to their powder X-ray diffraction patterns. The degree of structural order is determined by the length and parity of the alkylene spacer. A concomitant enhancement in the degree of condensation of the inorganic component and a decrease in the strength of the hydrophobic interactions between the organic components are demonstrated. The strength and directionality of the H-bonding are directly correlated to the crystalllinity of the organic-inorganic hybrid materials.
傅里叶变换红外(FTIR)光谱已被用于探测具有基于不同长度亚烷基链和脲基的有机亚结构的层状桥连倍半硅氧烷[O1.5Si(CH2)3NHCONH(CH2)nNHCONH(CH2)3SiO1.5](n = 6, 8 - 12)中有机片段的组织情况。这些定义明确的自组装杂化二氧化硅的结构和分子间相互作用(疏水和氢键)与其粉末X射线衍射图谱相关联进行了讨论。结构有序度由亚烷基间隔基的长度和奇偶性决定。结果表明,无机组分的缩合程度同时增强,而有机组分之间疏水相互作用的强度降低。氢键的强度和方向性与有机-无机杂化材料的结晶度直接相关。