Ultralow-Content Palladium Dispersed in Covalent Organic Framework for Highly Efficient and Selective Semihydrogenation of Alkynes.

Inorg Chem

State Key Laboratory of Nuclear Resources and Environment, School of Chemistry, Biology and Materials Science , East China University of Technology, Nanchang 330013 , P. R. China.

Published: August 2019

AI Article Synopsis

  • Researchers are working on creating highly efficient catalysts using very small amounts of noble metals for the selective hydrogenation of alkynes at mild conditions, which is challenging.
  • A new covalent organic framework (COF-SOH) was developed to support an ultralow amount of palladium (Pd) at 0.38 wt% through a wet-chemistry method.
  • The resulting catalyst demonstrated exceptional performance, achieving 97.06% conversion and 93.15% selectivity for phenylacetylene, and maintained high activity and stability over multiple cycles.

Article Abstract

Developing noble-metal-based catalysts with ultralow loading to achieve excellent performance for selective hydrogenation of alkynes under mild reaction conditions is highly desirable but still faces huge challenges. To this end, a SOH-anchored covalent organic framework (COF-SOH) as the support was deliberately designed, and then ultralow-content Pd (0.38 wt %) was loaded by a wet-chemistry immersion dispersion method. The resulting Pd/COF-SOH composite exhibits outstanding performance for the selective hydrogenation of phenylacetylene with 97.06% conversion and 93.15% selectivity to styrene under mild reaction conditions (1 bar of H, 25 °C). Noticeably, the turnover frequency value reaches as high as 3888 h, which outperforms most of reported catalysts for such use. Moreover, such a catalyst also exhibits excellent activity for a series of other alkynes and high stability without obvious loss of catalytic performance after five consecutive cycles.

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Source
http://dx.doi.org/10.1021/acs.inorgchem.9b01117DOI Listing

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