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April 18, 2026Angewandte Chemie International Edition2 citations

Adaptive Brønsted Acidity From Heterolytic Dihydrogen Activation Enables Polyethylene Hydrogenolysis Over Pd‐Encapsulated Na‐Zeolites

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MEMalin EqiYYYi YangJZJiashuo Zheng

Key Points

  • To explore the catalytic activity of Na-ZSM-5 zeolites modified with palladium for polyethylene conversion.
  • Utilized encapsulated palladium nanoparticles in Na-ZSM-5 for polyethylene hydroconversion.
  • Conducted mechanistic studies to observe dihydrogen activation and acid site formation.
  • Assessed gas yield and coke formation during the reaction.
  • Achieved efficient conversion of polyethylene to C5-C9 alkanes.
  • Minimized gas yield and negligible coke formation observed.
  • Confirmed the presence of newly formed Brønsted acid sites during the reaction.

Abstract

Converting polyethylene to liquid fuels requires Brønsted acidity, yet conventional acidic zeolites suffer from rapid coking and excessive gas formation. Despite Na-exchanged zeolites are well-known to resist coking in many cracking reactions, they are generally considered catalytically inert for polyethylene cracking due to absent acidity. Here, we show that encapsulated palladium nanoparticles in Na-ZSM-5 catalyze efficient polyethylene hydroconversion to C5-C9 alkanes with minimal gas yield and negligible coke formation. Mechanistic studies reveal that dihydrogen undergoes heterolytic dissociation at the confined Pd-zeolite interface, concurrently generating PdH hydrides and bridging hydroxyl groups that function as Brønsted acid sites. These dynamically created acid centers drive selective C─C bond scission via classical β-scission pathways while circumventing the deleterious side reactions. This study establishes a general paradigm for adaptive catalysis wherein active sites are created in situ within otherwise non-acidic frameworks, offering new strategies for selective bond activation.

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Cite This Study

Eqi et al. (2026) studied this question.

synapsesocial.com/papers/69e3207940886becb653f967https://doi.org/10.1002/anie.6455894
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