Issue 25, 2020

Design of hollow spherical Co@hsZSM5@metal dual-layer nanocatalysts for tandem CO2 hydrogenation to increase C2+ hydrocarbon selectivity

Abstract

A thin hollow shell nanostructure can increase effectiveness of zeolites while allowing metal nanoparticles to be supported on both its inner and outer surfaces. Herein, nanoscale hollow spherical ZSM-5 (hsZSM5) shells were synthesized from sub-micron silica spheres through a dissolution–recrystallization mechanism with assistance of a positively charged polymer. The as-prepared hsZSM5 can function as a spacer: different metals (Mn) can be preferentially separated by the thin shell of hsZSM5, making the derived M1@hsZSM5@M2 suitable for tandem reactions. The dual-layer Co@hsZSM5@Pt shows higher resistance to metal sintering and alloying in tandem hydrogenation of CO2 (i.e.; reverse water gas shift reaction followed by Fischer–Trøpsch reaction) to short-chain hydrocarbons, which can be used as an alternate clean feedstock to produce chemicals such as olefins, aromatics and polymers. Hydrocarbon selectivity of C2+ can be increased up to 46% in Co@hsZSM5@Pt, which was not observed in co-impregnated Pt–Co catalyst.

Graphical abstract: Design of hollow spherical Co@hsZSM5@metal dual-layer nanocatalysts for tandem CO2 hydrogenation to increase C2+ hydrocarbon selectivity

Supplementary files

Article information

Article type
Paper
Submitted
03 May 2020
Accepted
15 Jun 2020
First published
15 Jun 2020

J. Mater. Chem. A, 2020,8, 12757-12766

Design of hollow spherical Co@hsZSM5@metal dual-layer nanocatalysts for tandem CO2 hydrogenation to increase C2+ hydrocarbon selectivity

K. M. Kwok, L. Chen and H. C. Zeng, J. Mater. Chem. A, 2020, 8, 12757 DOI: 10.1039/D0TA04608F

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