首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembly, Optical, and Mechanical Properties of Surfactant-Directed Biphenyl-Bridged Periodic Mesostructured Organosilica Films with Molecular-Scale Periodicity in the Pore Walls
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Self-Assembly, Optical, and Mechanical Properties of Surfactant-Directed Biphenyl-Bridged Periodic Mesostructured Organosilica Films with Molecular-Scale Periodicity in the Pore Walls

机译:孔壁中具有分子尺度周期性的表面活性剂定向联苯桥联的周期性介观介孔有机硅膜的自组装,光学和机械性质

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Self-assembly, optical, and mechanical properties of surfactant-directed biphenyl-bridged periodic mesoporous organosilica thin films (PMOF-Bp's) with molecular-scale periodicity in the pore walls were successfully demonstrated for the first time. The biphenyl-bridged organosilica precursor, 4,4-bis(triethoxysilyl)biphenyl (Bp-TES) has been used as the sole precursor (100%) for preparing PMOF-Bp films with molecular-scale periodicity in the pore walls via the surfactant-mediated one-step mild acidic self-assembly process. High-resolution X-ray diffraction (HRXRD) patterns and transmission electron microscope (TEM) images of PMOF-Bp materials confirmed the formation of a biphenyl-bridged periodic mesophase with molecular-scale periodicity in the organosilica framework. Fourier transform infrared (FT-IR) and NMR spectroscopic data also strongly suggested that the biphenyl organic segment is covalently bonded with silicon atoms in the acidic ethanol-washed biphenyl-bridged mesoporous framework. The emission behavior is sensitive to synthesis and thermal treatment temperatures. The biphenyl-bridged PMO films show absorption and emission due to the presence of biphenyl segment in pore walls. Nanoindentation hardness of the PMOF-Bp films could be controlled by temperature, degree of pore ordering and molecular periodicity, and even thickness of films. For example, well-organized PMOF-Bp film with molecular-scale periodicity in the pore walls showed a higher hardness value (0.23 GPa) than that of less mesoordered PMOF-Bp film (0.13 GPa). For all solvent-extracted PMO samples, N-2 gas sorption experiments showed the surface area (from 714 to 688 m(2)/g), the pore volume (from 0.76 to 0.68 cm(3)/g), and pore size (2.81 to 3.1 nm). The solid-state NMR and FT-IR spectroscopic data were used to propose plausible interpretations of the formation of hydrogen-bonded molecular periodicity in the pore walls. The experimental periodicity value 1.40 nm was strongly supported by the periodicity obtained by the structural model (1.389 nm).
机译:首次成功地证明了在孔壁中具有分子尺度周期性的表面活性剂定向联苯桥联的周期性介孔有机硅薄膜(PMOF-Bp's)的自组装,光学和机械性能。联苯桥有机硅前体4,4-双(三乙氧基甲硅烷基)联苯(Bp-TES)已被用作唯一的前体(100%),用于通过表面活性剂在孔壁中制备具有分子尺度周期性的PMOF-Bp膜介导的一步温和酸性自组装过程。 PMOF-Bp材料的高分辨率X射线衍射(HRXRD)图谱和透射电子显微镜(TEM)图像证实了有机硅骨架中具有分子尺度周期性的联苯桥联的中间相的形成。傅立叶变换红外(FT-IR)和NMR光谱数据也强烈表明,联苯有机链段在酸性乙醇洗涤的联苯桥联介孔骨架中与硅原子共价键合。发射行为对合成和热处理温度敏感。联苯桥连的PMO膜由于孔壁中存在联苯链段而显示出吸收和发射。 PMOF-Bp薄膜的纳米压痕硬度可通过温度,孔的有序度和分子周期性以及薄膜的厚度来控制。例如,在孔壁中具有分子尺度周期性的组织良好的PMOF-Bp膜显示出较高的硬度值(0.23 GPa),而在较低介观度的PMOF-Bp膜中显示出较高的硬度值(0.13 GPa)。对于所有溶剂萃取的PMO样品,N-2气体吸附实验均显示出表面积(从714到688 m(2)/ g),孔体积(从0.76到0.68 cm(3)/ g)和孔径(2.81至3.1 nm)。固态NMR和FT-IR光谱数据被用来对孔壁中氢键分子周期性的形成提出合理的解释。结构模型获得的周期性(1.389 nm)强烈支持了实验周期性值1.40 nm。

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