Gunawidjaja Ray, Huang Feifei, Gumenna Maryana, Klimenko Nina, Nunnery Grady A, Shevchenko Valery, Tannenbaum Rina, Tsukruk Vladimir V
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0245, USA.
Langmuir. 2009 Jan 20;25(2):1196-209. doi: 10.1021/la803182n.
This study probes the behavior of two series of organic-functionalized core-shell silsesquioxane (POSS-M)p-(x/y) derivatives with various hydrophobic-hydrophilic terminal group compositions in the bulk state and within mono- and multilayered films at the air-water interface and on solid surface. POSS-M refers to mixed silsesquioxane cores, in contrast to the geometrically specific POSS compounds. It is composed of polyhedra, incompletely condensed polyhedra, ladder-type structures, linear structures, and all the possible combinations thereof and attracts great interest because of its facile preparation, low polydispersity, high yield, and low cost. The two series of (POSS-M)p-(x/y) molecules are different in hydrophobic-hydrophilic balance of their terminal groups, with x and y respectively referring to the molar percent of -OCONH-C(18)H(37) tails and -OH for p = 1 and the percent of -OCONH-C(18)H(37) tails and -OCO-C(6)H(4)COOH terminal groups for p = 2. In the bulk state, the presence of aromatic rings in (POSS-M)2-(x/y) series resulted in a lower symmetry crystal structure than the (POSS-M)1-(x/y) series. Moreover, the (POSS-M)p-(x/y) molecules that contain a sufficient amount of -OCONH-C(18)H(37) tails exhibit double endothermic transition, which attributed to the melting of alkyl chains followed by the melting of the unit cells of (POSS-M) cores. The surface morphologies for the various hydrophobic-hydrophilic combinations at surface pressure p = 0.5 mN/m are similar to that observed for the classical amphiphilic star polymers. However, at higher surface pressure (p > or = 5 mN/m), the POSS-M compounds with lower content of hydrophilic groups form a uniform monolayer.
本研究探究了具有不同疏水 - 亲水性端基组成的两系列有机官能化核壳倍半硅氧烷(POSS - M)p-(x/y)衍生物在本体状态下以及在气 - 水界面和固体表面的单分子层与多层膜中的行为。与几何结构特定的POSS化合物不同,POSS - M指的是混合倍半硅氧烷核。它由多面体、不完全缩合的多面体、梯型结构、线性结构及其所有可能的组合构成,因其制备简便、多分散性低、产率高且成本低而备受关注。这两系列(POSS - M)p-(x/y)分子的端基疏水 - 亲水平衡不同,当p = 1时,x和y分别指 - OCONH - C₁₈H₃₇链尾和 - OH的摩尔百分比;当p = 2时,x和y分别指 - OCONH - C₁₈H₃₇链尾和 - OCO - C₆H₄COOH端基的百分比。在本体状态下,(POSS - M)₂-(x/y)系列中芳香环的存在导致其晶体结构对称性低于(POSS - M)₁-(x/y)系列。此外,含有足够量 - OCONH - C₁₈H₃₇链尾的(POSS - M)p-(x/y)分子呈现双吸热转变,这归因于烷基链的熔化,随后是(POSS - M)核的晶胞熔化。在表面压力p = 0.5 mN/m时,各种疏水 - 亲水性组合的表面形态与经典两亲性星形聚合物的相似。然而,在较高表面压力(p≥5 mN/m)下,亲水性基团含量较低的POSS - M化合物形成均匀的单分子层。