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Molecular elucidating of an unusual growth mechanism for polycyclic aromatic hydrocarbons in confined space.


ABSTRACT: Extension and clustering of polycyclic aromatic hydrocarbons (PAHs) are key mechanistic steps for coking and deactivation in catalysis reactions. However, no unambiguous mechanistic picture exists on molecule-resolved PAHs speciation and evolution, due to the immense experimental challenges in deciphering the complex PAHs structures. Herein, we report an effective strategy through integrating a high resolution MALDI FT-ICR mass spectrometry with isotope labeling technique. With this strategy, a complete route for aromatic hydrocarbon evolution is unveiled for SAPO-34-catalyzed, industrially relevant methanol-to-olefins (MTO) as a model reaction. Notable is the elucidation of an unusual, previously unrecognized mechanistic step: cage-passing growth forming cross-linked multi-core PAHs with graphene-like structure. This mechanistic concept proves general on other cage-based molecule sieves. This preliminary work would provide a versatile means to decipher the key mechanistic step of molecular mass growth for PAHs involved in catalysis and combustion chemistry.

SUBMITTER: Wang N 

PROVIDER: S-EPMC7044299 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Molecular elucidating of an unusual growth mechanism for polycyclic aromatic hydrocarbons in confined space.

Wang Nan N   Zhi Yuchun Y   Wei Yingxu Y   Zhang Wenna W   Liu Zhiqiang Z   Huang Jindou J   Sun Tantan T   Xu Shutao S   Lin Shanfan S   He Yanli Y   Zheng Anmin A   Liu Zhongmin Z  

Nature communications 20200226 1


Extension and clustering of polycyclic aromatic hydrocarbons (PAHs) are key mechanistic steps for coking and deactivation in catalysis reactions. However, no unambiguous mechanistic picture exists on molecule-resolved PAHs speciation and evolution, due to the immense experimental challenges in deciphering the complex PAHs structures. Herein, we report an effective strategy through integrating a high resolution MALDI FT-ICR mass spectrometry with isotope labeling technique. With this strategy, a  ...[more]

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