Synergistic Catalytic Performance of Pt–Au Bimetallic Catalysts on High-Crystallinity ZSM-23 Zeolite for Hexadecane Hydroisomerization: Metal–Acid Balance and Enhanced Isomerization Selectivity

Highly crystalline ZSM-23 zeolite, exhibiting a distinctive dumbbell morphology, was synthesized via a hydrothermal method. Bifunctional catalysts, comprising single metals (Pt or Au) and bimetals (Pt–Au), were successfully prepared by using a positional precipitation method. The hydroisomerization...

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Veröffentlicht in:Inorganic chemistry 2024-05, Vol.63 (20), p.9315-9325
Hauptverfasser: Lan, Kun, Zhou, Xuerong, Zhang, Mingming, Chen, Yujing, Chen, Xiaozhen, Sun, Libo, Yang, Kaixuan, Zhang, Miao
Format: Artikel
Sprache:eng
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Zusammenfassung:Highly crystalline ZSM-23 zeolite, exhibiting a distinctive dumbbell morphology, was synthesized via a hydrothermal method. Bifunctional catalysts, comprising single metals (Pt or Au) and bimetals (Pt–Au), were successfully prepared by using a positional precipitation method. The hydroisomerization of hexadecane served as a model reaction to assess the catalytic performance arising from the synergistic effects of bimetallic active sites. In comparison to single-metal catalysts, 0.3Au0.7Pt/ZSM-23 demonstrated increased n-C16 conversion, while 0.5Au0.5Pt/ZSM-23 exhibited enhanced i-C16 selectivity, achieving the highest i-C16 yield. The bimetallic catalyst not only finely tuned the metal site activity through bimetallic synergy but also achieved a superior balance between metal and acid catalysis, resulting in improved catalytic performance in the n-C16 hydroisomerization. The Pt–Au bimetallic catalyst approached the ideal requirements for a hydroisomerization catalyst, achieving a harmonious balance of metal and acid catalysis.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.4c01212