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通过吸附质诱导控制钯单原子催化剂的局部电子结构

Control of Local Electronic Structure of Pd Single Atom Catalyst by Adsorbate Induction.

作者信息

Ru Wei, Liu Yanan, Fu Baoai, Fu Fengzhi, Feng Junting, Li Dianqing

机构信息

State Key Laboratory of Chemical Engineering, Beijing Engineering Center for Hierarchical Catalysts, Beijing University of Chemical Technology, Beijing, 100029, China.

出版信息

Small. 2022 Jan;18(1):e2103852. doi: 10.1002/smll.202103852. Epub 2021 Nov 12.

Abstract

Aiming at regulating and controlling the localized electronic states while maintaining the metal atoms in the isolation form, an in situ adsorbate induced strategy is proposed at a programmed temperature to activate Zr-based metal-organic framework (MOF) supported single Pd atom catalyst. It is discovered that in situ treatment environments trigger the change of lattice parameters in MOF materials by reaction heat effect, observed by in situ X-ray diffraction, spherical aberration-corrected electron microscope, and X-ray adsorption fine structure (XAFS). The as-obtained electron-deficient Pd single atoms are critical to the high intrinsic activity (turnover frequency of 0.132 s ) and selectivity of 93% with the long-term stability in the semihydrogenation of acetylene, which can be comparable to the state-of-the-art Pd catalysts. This superior catalytic behavior correlates with the reduced C H desorption energy and the activation barriers for the hydrogenation, confirmed by density functional theory calculation.

摘要

为了在保持金属原子处于孤立状态的同时调控局部电子态,提出了一种在程序控制温度下的原位吸附质诱导策略,以活化基于锆的金属有机框架(MOF)负载的单钯原子催化剂。通过原位X射线衍射、球差校正电子显微镜和X射线吸收精细结构(XAFS)观察发现,原位处理环境通过反应热效应引发MOF材料晶格参数的变化。所获得的缺电子钯单原子对于乙炔半加氢中高本征活性(周转频率为0.132 s⁻¹)和93%的选择性以及长期稳定性至关重要,这可与最先进的钯催化剂相媲美。密度泛函理论计算证实,这种优异的催化行为与降低的C-H脱附能和氢化活化能垒相关。

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