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用于快速毛细辅助催化的梯度分层多孔结构。

Gradient Hierarchically Porous Structure for Rapid Capillary-Assisted Catalysis.

机构信息

Department of Chemistry, Laboratory of Advanced Materials, Shanghai Key Lab of Molecular Catalysis and Innovative Materials, State Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai 200433, P. R. China.

出版信息

J Am Chem Soc. 2022 Apr 6;144(13):6091-6099. doi: 10.1021/jacs.2c01444. Epub 2022 Mar 22.

DOI:10.1021/jacs.2c01444
PMID:35316600
Abstract

Synthesis of hierarchically porous structures with uniform spatial gradient and structure reinforcement effect still remains a great challenge. Herein, we report the synthesis of zeolite@mesoporous silica core-shell nanospheres (ZeoA@MesoS) with a gradient porous structure through a micellar dynamic assembly strategy. In this case, we find that the size of composite micelles can be dynamically changed with the increase of swelling agents, which act as the building blocks for the modular assembly of gradient mesostructures. The ZeoA@MesoS nanospheres are highly dispersed in solvents with uniform micropores in the inner core and a gradient tubular mesopore shell. As a nanoreactor, such hierarchically gradient porous structures enable the capillary-directed fast mass transfer from the solutions to inner active sites. As a result, the ZeoA@MesoS catalysts deliver a fabulous catalytic yield of ∼75% on the esterification of long-chain carboxylic palmitic acids and high stability even toward water interference, which can be well trapped by the ZeoA core, pushing forward the chemical equilibrium. Moreover, a very remarkable catalytic conversion on the C-H arylation reaction of large -methylindole is achieved (∼98%) by a Pd-immobilized ZeoA@MesoS catalyst. The water tolerance feature gives a notable enhancement of 26% in catalytic yield compared to the Pd-dendritic mesoporous silica without the zeolite core.

摘要

具有均匀空间梯度和结构增强效果的分级多孔结构的合成仍然是一个巨大的挑战。在此,我们通过胶束动态组装策略报道了沸石@介孔硅核壳纳米球(ZeoA@MesoS)具有梯度多孔结构的合成。在这种情况下,我们发现复合胶束的尺寸可以随着膨胀剂的增加而动态变化,膨胀剂充当了梯度介孔结构的模块化组装的构建块。ZeoA@MesoS 纳米球在溶剂中高度分散,具有均匀的微孔内核和梯度管状介孔壳。作为纳米反应器,这种分级梯度多孔结构使毛细管导向的快速传质从溶液到内部活性位。结果,ZeoA@MesoS 催化剂在长链羧酸棕榈酸的酯化反应中提供了约 75%的极好催化产率和高稳定性,甚至对水干扰也具有稳定性,水可以被 ZeoA 核很好地捕获,推动化学平衡。此外,通过负载钯的 ZeoA@MesoS 催化剂在大 -甲基吲哚的 C-H 芳基化反应中实现了非常显著的催化转化(约 98%)。水耐受性特征使催化产率显著提高了 26%,与没有沸石核的钯树枝状介孔硅相比。

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