首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Site specific supramolecular heterogeneous catalysis by optically patterned soft oxometalate-porous organic framework (SOM-POF) hybrid on a chip
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Site specific supramolecular heterogeneous catalysis by optically patterned soft oxometalate-porous organic framework (SOM-POF) hybrid on a chip

机译:在芯片上通过光学构图的软金属氧酸盐-多孔有机骨架(SOM-POF)杂化体实现位点特定的超分子非均相催化

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摘要

We have designed a supramolecularly bound multi-component catalytic material based on a soft oxometalate (SOM) and a porous organic framework (POF) material, which shows high catalytic conversion efficiency. We have also used this material for site directed supramolecular heterogeneous catalysis with a yield even higher than in the bulk, and with micron-level precision by controllably depositing the material on a glass substrate, making a reactor chip, using a thermo-optical tweezers. Various SOM-POF composites have been prepared in dispersion phase and patterned using thermooptic tweezers and their catalytic activities have been compared with a benchmark molecular catalyst [PMo12]. This work can lead to further explorations for hybrid materials that are formed out of well-defined molecular level precursors which can be controllably micro-patterned to simultaneously catalyze targeted reactions.
机译:我们设计了一种基于分子的超分子结合的多组分催化材料,该材料基于软金属氧酸盐(SOM)和多孔有机骨架(POF)材料,具有很高的催化转化效率。我们还将这种材料用于定点超分子多相催化,其收率甚至高于整体催化,并通过使用热光镊子将材料可控地沉积在玻璃基板上,制成反应堆芯片,从而达到微米级的精度。已经在分散相中制备了各种SOM-POF复合材料,并使用热光镊子对其进行了图案化,并将其催化活性与基准分子催化剂[PMo12]进行了比较。这项工作可以导致对由明确定义的分子水平前驱物形成的杂化材料的进一步探索,这些杂化材料可以进行可控的微模式化以同时催化目标反应。

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