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首页> 外文期刊>Angewandte Chemie >Directional MaterialsNanoporous Organosilica Monoliths with Multiple Gradients Prepared Using Click Chemistry
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Directional MaterialsNanoporous Organosilica Monoliths with Multiple Gradients Prepared Using Click Chemistry

机译:定向材料使用单击化学制备具有多个梯度的纳米多孔有机硅整体材料

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摘要

The existence of more than one functional entity is fundamental for materials, which are desired of fulfilling complementary or succeeding tasks. Whereas it is feasible to make materials with a homogeneous distribution of two different, functional groups, cases are extremely rare exhibiting a smooth transition from one property to the next along a defined distance. We present a new approach leading to high-surface area solids with functional gradients at the microstructural level. Periodically ordered mesoporous organosilicas (PMOs) and aerogel-like monolithic bodies with a maximum density of azide groups were prepared from a novel sol-gel precursor. The controlled and fast conversion of the azide into numerous functions by click chemistry is the prerequisite for the implementation of manifold gradient profiles. Herein we discuss materials with chemical, optical and structural gradients, which are interesting for all applications requiring directionality, for example, chromatography.
机译:对于实现补充或后续任务所需的材料而言,存在多个功能实体是至关重要的。尽管可以使材料具有两个不同的官能团均匀分布,但这种情况极少出现,它沿定义的距离从一种特性平滑过渡到另一种特性。我们提出了一种新方法,可导致在微观结构级别具有功能梯度的高表面积固体。由新型的溶胶-凝胶前驱体制备具有最大叠氮化物基团密度的周期性有序介孔有机硅(PMO)和气凝胶状整体式体。通过点击化学将叠氮化物受控且快速地转化为多种功能是实现歧管梯度分布的前提。在这里,我们讨论具有化学,光学和结构梯度的材料,这对于要求方向性的所有应用(例如色谱法)都非常有趣。

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