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Organogel-assisted porous organic polymer embedding Cu NPs for selectivity control in the semi hydrogenation of alkynes

机译:Organogel-assisted多孔有机聚合物嵌入铜NPs的选择性控制半加氢的炔烃

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Heteroatom-rich porous-organic-polymers (POPs) comprising highly cross-linked robust skeletons with high physical and thermal stability, high surface area, and tunable pore size distribution have garnered significant research interest owing to their versatile functionalities in a wide range of applications. Here, we report a newly developed organogel-assisted porous-organic-polymer (POP) supported Cu catalyst (Cu@TpRb-POP). The organogel was synthesized via a temperature induced gelation strategy, employing Schiff-base coupling between 2,4,6-triformylphloroglucinol aldehyde (Tp) and pararosaniline base (Rb). The gel is subsequently transformed to hierarchical porous organic structures without the use of any additive, thereby offering advantageous features including extremely low density, high surface area, a highly cross-linked framework, and a heteroatom-enriched backbone of the polymer. During the semi-hydrogenation of terminal and internal alkynes, the Cu@TpRb-POP-B catalyst with Cu embedded in the TpRb-POP structure consistently demonstrated improved selectivity towards alkenes compared to Cu@TpRb-POP-A, which contains Cu NPs exposed at the exterior surfaces of the POP support. Additionally, Cu@TpRb-POP-B showed higher stability and reusability than Cu@TpRb-POP-A. The superior performance of the Cu@TpRb-POP-B catalyst is attributed to the steric hindrance effect, which controls the product selectivity, as well as the synergistic interaction between the heteroatom-rich POP framework and the embedded Cu NPs. Both the effects are corroborated by experimental characterization of the catalysts and density functional theory (DFT) calculations.
机译:Heteroatom-rich porous-organic-polymers (pop)由高度交联的强健的骨骼物理和热稳定性高、高表面积和孔隙大小分布可调获得显著的研究兴趣由于他们的多才多艺的功能在一个宽范围的应用程序。开发organogel-assisted铜porous-organic-polymer(流行)支持催化剂(Cu@TpRb-POP)。通过温度诱导凝胶合成策略,采用席夫碱之间的耦合2、4、6-triformylphloroglucinol醛(Tp)和副品红基地(Rb)。转化为层次多孔有机结构不使用任何添加剂,从而提供有利的功能,包括极低密度,高表面积,高度交联的框架,和一个heteroatom-enriched骨干的聚合物。在终端和semi-hydrogenation内部的炔烃,Cu@TpRb-POP-B催化剂铜嵌入TpRb-POP结构不断证明改进的选择性对烯烃Cu@TpRb-POP-A相比,哪个包含铜NPs暴露在外部表面流行的支持。显示更高的稳定性和可重用性Cu@TpRb-POP-A。Cu@TpRb-POP-B是归因于催化剂位阻效应,控制产品的选择性,以及协同heteroatom-rich流行之间的交互框架和嵌入式铜NPs。影响被实验证实催化剂的表征和密度泛函理论(DFT)计算。

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