首页> 外文会议>Electrical, optical, and magnetic properties of organic solid-state materials IV >CONTROLLING MATERIALS ARCHITECTURE ON THE NANOMETER-SCALE: PPV NANOCOMPOSITES VIA POLYMERIZABLE LYOTROPIC LIQUID CRYSTALS
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CONTROLLING MATERIALS ARCHITECTURE ON THE NANOMETER-SCALE: PPV NANOCOMPOSITES VIA POLYMERIZABLE LYOTROPIC LIQUID CRYSTALS

机译:纳米尺度上的材料结构控制:PPV纳米复合材料通过可聚合的液溶液晶

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We have developed a general strategy for the construction of ordered nanocomposites with hexagonal symmetry, using polymerizable lyotropic (i.e., amphiphilic) liquid crystals. In this approach, self-organizing lyotropic liquid-crystalline monomers are used to form an ordered template matrix in the presence of a reactive hydrophilic solution. Subsequent photopolymerization to lock-in the matrix architecture, followed by initiation of chemistry within the ordered hydrophilic domains to afford solid-state fillers, yields the anisotropic nanocomposites. Composites have been synthesized that have a regular hexagonal arrangement of extended poly(p-phenylenevinylene) (PPV) domains, with a regular interchannel spacing of 4 nm. The photoluminescence of these materials is significantly altered from that of bulk PPV. The dimensions of these nanocomposites can be tuned by varying the size of the hydrophobic tails and/or the nature of the counterion associated with the hydrophilic headgroup of the monomer.
机译:我们已经开发了使用可聚合溶致(即两亲)液晶构造具有六边形对称性的有序纳米复合材料的一般策略。在这种方法中,在反应性亲水溶液的存在下,使用自组织溶致液晶单体形成有序的模板基质。随后的光聚合反应可锁定基质结构,然后在有序的亲水域内引发化学反应,以提供固态填料,从而得到各向异性的纳米复合材料。合成的复合材料具有规则的六边形排列,该六边形为扩展的聚对苯撑乙烯撑(PPV)域,规则的通道间距为4 nm。这些材料的光致发光与本体PPV的光致发光显着不同。这些纳米复合材料的尺寸可以通过改变疏水尾的尺寸和/或与单体的亲水头基相关的抗衡离子的性质来调节。

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