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Vapor-Phase Synthesis of ZIF-8 MOF Thick Film by Conversion of ZnO Nanorod Array. | LitMetric

AI Article Synopsis

  • ZIF-8 films were created from a ZnO precursor through vapor-phase synthesis, utilizing 2-methylimidazole (Hmim) for crystal transformation.
  • The efficiency of the transformation was influenced by the specific plane orientation of ZnO crystals, with the m-plane (10-10) showing the highest conversion rate to ZIF-8.
  • The study highlighted how highly oriented ZnO nanorod arrays facilitated easier mass transfer and provided the necessary space for effective nucleation and intergrowth during the conversion process.

Article Abstract

ZIF-8 metal organic framework "micrometer-thick" films were constructed from ZnO precursor by a vapor-phase synthesis. The ZnO-to-ZIF-8 crystal transformation proceeded in the presence of 2-methylimidazole (Hmim) vapor. Continuous coatings of intergrown ZIF-8 crystals require control of a nucleation density. The dependence of ZnO crystal plane on the ZnO-to-ZIF-8 crystal transformation was investigated using four bulk ZnO single crystals: a-plane (11-20), c-plane (0001), m-plane (10-10), and r-plane (10-11). It was revealed that the m-plane (10-10) of ZnO is more effectively transformed into ZIF-8. In this work, highly oriented ZnO nanorod array film was used to provide the transport pathway of Hmim molecules and volume expansion space of ZnO-to-ZIF-8 crystal transformation for nucleation and crystal intergrowth. The high conversion of ZnO nanorod array into ZIF-8 in a short time could be achieved because (1) such mass transfer is easy due to the uniform internanorod distance being maintained during reaction and (2) the surface of the nanorod array is dominated by the highly reactive m-plane (10-10).

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Source
http://dx.doi.org/10.1021/acs.langmuir.8b00948DOI Listing

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