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Xiaoxin Chen

Researcher at Jilin University

Publications -  31
Citations -  1033

Xiaoxin Chen is an academic researcher from Jilin University. The author has contributed to research in topics: Catalysis & Zeolite. The author has an hindex of 13, co-authored 23 publications receiving 686 citations. Previous affiliations of Xiaoxin Chen include Hubei University & University of Caen Lower Normandy.

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Synthesis of tri-level hierarchical SAPO-34 zeolite with intracrystalline micro–meso–macroporosity showing superior MTO performance

TL;DR: In this article, a tri-level hierarchically porous SAPO-34 zeolite with intracrystalline micro-meso-macroporosity has been first synthesized by an Al-rich method coupled with the use of the polyethylene glycol 2000 polymer under hydrothermal conditions.
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Synthesis of anatase-free nano-sized hierarchical TS-1 zeolites and their excellent catalytic performance in alkene epoxidation

TL;DR: Nano-sized hierarchical titanosilicate TS-1 without extra-framework anatase TiO2 has been successfully synthesized by using Triton X-100 as a mesoporous template under rotational crystallization conditions as discussed by the authors.
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A non-chemically selective top-down approach towards the preparation of hierarchical TS-1 zeolites with improved oxidative desulfurization catalytic performance

TL;DR: Hierarchical TS-1 zeolites with secondary macropores have been successfully prepared by using two different fluoride-containing chemical etching post-treated routes and showed remarkably enhanced catalytic activity in oxidative desulfurization reaction.
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Seeding induced nano-sized hierarchical SAPO-34 zeolites: cost-effective synthesis and superior MTO performance

TL;DR: In this paper, a facile and cost-effective strategy was developed to synthesize nano-sized SAPO-34 zeolite catalysts with intracrystalline meso-macroporosity as well as high crystallinity and product yield via the seed-assisted method using triethylamine as the sole template.
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Synthesis of hierarchical TS-1 zeolites with abundant and uniform intracrystalline mesopores and their highly efficient catalytic performance for oxidation desulfurization

TL;DR: In this article, the textural parameters of the hierarchical TS-1 zeolites can be adjusted by changing the amount of PDADMAC in the synthesis system; in particular, a hierarchical TS 1C sample with abundant and uniform mesopores (around 10 nm) can be obtained by optimizing the amount.